Showing posts with label TMC435. Show all posts
Showing posts with label TMC435. Show all posts

August 20, 2013

TMC435, Janssen HCV Program

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Janssen Submits New Drug Application to U.S. FDA for Simeprevir (TMC435) for Combination Treatment of Adult Patients with Genotype 1 Chronic Hepatitis C http://www.natap.org/2013/HCV/033013_01.htm

Janssen HCV Drug Research & Development - (07/30/13)

Janssen HCV Drug Research & Development 2 - (08/19/13)

The Pharmacokinetic Interactions of HCV Protease Inhibitor TMC435 with Rilpivirine, Tenofovir, Efavirenz or Raltegravir in Healthy Volunteers http://www.natap.org/2012/CROI/croi_05.htm

CROI: Simeprevir (TMC435) with peginterferon/ribavirin in patients co-infected with chronic genotype-1 HCV and HIV-1: Week-24 interim analysis of the TMC435-C212 study - (03/07/13)

COSMOS Study SVR4 results of a once daily regimen of simeprevir (TMC435) plus sofosbuvir (GS-7977) with or without ribavirin in HCV genotype 1 null responders - (03/06/13)

CROI: First interim results from a phase IIa study evaluating an all-oral regimen of Simeprevir and Sofosbuvir in prior null responder Hepatitis C patients - press release - (03/04/13) press announcement

Primary Efficacy and Safety Findings from Four Phase 3 Japanese Studies of Simeprevir Administered Once Daily Demonstrate Sustained Virologic Response in Genotype 1 Chronic Hepatitis C Adult Patients http://www.natap.org/2013/HCV/062313_04.htm

Rapid HCV-RNA Decline With Once Daily TMC435: A Phase I Study in Healthy Volunteers and Hepatitis C Patients http://www.natap.org/2010/HCV/031110_01.htm

Pharmacokinetics of simeprevir (TMC435) in volunteers with moderate or severe hepatic impairment http://www.natap.org/2013/EASL/EASL_65.htm

Virologic analysis of genotype-1-infected patients treated with once-daily TMC435 during the Optimal Protease inhibitor Enhancement of Response to TherApy (OPERA)-1 study http://www.natap.org/2010/AASLD/AASLD_45.htm

Medivir announces TMC435 in an expanded clinical collaboration: TMC435+BMS NS5A, TMC435+INX189 http://www.natap.org/2012/HCV/053012_01.htm

BMS/Medivir Announces TMC435 in an Expanded Clinical Collaboration - press release http://www.natap.org/2012/HCV/041812_01.htm

The Pharmacokinetic Interactions of the HCV Protease Inhibitor Simeprevir (TMC435) With HIV Antiretroviral Agents in Healthy Volunteers http://www.natap.org/2012/IDSA/IDSA_04.htm

No clinically significant interaction between the investigational HCV protease inhibitor simeprevir (TMC435) and the immunosuppressive agents cyclosporine and tacrolimus http://www.natap.org/2012/AASLD/AASLD_61.htm

TMC435 & Drug Interactions: Evaluation of metabolic interactions for TMC435 via cytochrome P450 (CYP) enzymes in healthy volunteers http://www.natap.org/2010/EASL/EASL_37.htm

TMC435+GS7977 (Rbv) New Study in Advanced Hepatic Fibrosis- Null Responders & Naives http://www.natap.org/2013/HCV/012213_03.htm

TMC435 in patients infected with HCV genotype 1 who have failed previous pegylated interferon / ribavirin treatment: Virologic analyses of the ASPIRE trial http://www.natap.org/2012/EASL/EASL_25.htm

Treatment outcome and resistance analysis in HCV genotype 1 patients previously exposed to TMC435 monotherapy and re-treated with TMC435 in combination with PegIFNa-2a/ribavirin http://www.natap.org/2011/EASL/EASL_75.htm

Pharmacokinetic-pharmacodynamic (PK-PD) analyses of TMC435 in treatment-na•ve hepatitis C (HCV)-infected patients in the OPERA-1 study http://www.natap.org/2010/EASL/EASL_33.htm

Pharmacokinetics of TMC435 in subjects with moderate hepatic impairment http://www.natap.org/2011/EASL/EASL_115.htm

Phase II all-oral combination studies of Simeprevir (TMC435), TMC647055 (non nuc polymerase inhibitor) and IDX719 (NS5A) for the treatment of Hepatitis C to be initiated shortly - 4 articles below http://www.natap.org/2013/HCV/013113_02.htm

No pharmacokinetic interaction between the investigational HCV protease inhibitor simeprevir (TMC435) and an oral contraceptive containing ethinylestradiol and norethindrone http://www.natap.org/2012/AASLD/AASLD_60.htm

Antiviral activity of TMC435 monotherapy in patients infected with HCV genotypes 2 to 6: TMC435-C202, a phase IIa, open-label study - Article in Press http://www.natap.org/2012/HCV/021312_02.htm

Samples from HCV Genotype-1 Patients Treated for 5 Days with TMC435 Monotherapy and Subsequently Re-treated with TMC435 in Combination with PegIFNα-2a/Ribavirin - slide talk http://www.natap.org/2010/HCV/061410_01.htm

October 16, 2012

Simeprevir (TMC435) Data In Hepatitis C To Be Presented At The Annual Meeting of the American Association for the Study of Liver Diseases

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BOSTON, Oct. 16, 2012 /PRNewswire/ -- Janssen Research & Development Ireland (Janssen) will present new data on simeprevir (TMC435), an investigational protease inhibitor, in hepatitis C (HCV) patients at the Annual Meeting of the American Association for the Study of Liver Diseases (AASLD), which takes place November 9 to 13 in Boston.

"We are pleased that these data have been selected for presentation at the AASLD annual meeting," said Wim Parys , Head of Infectious Diseases, Janssen. "The data represent an important step forward in Janssen's efforts to understand the potential utility of simeprevir in a number of different treatment combinations and hepatitis C patient populations."

Simeprevir is being studied in Phase III trials as a once-daily oral treatment in combination with pegylated interferon (IFN) and ribavirin (RBV) for genotype 1 HCV patients. It is also being studied in separate Phase II studies with other direct-acting antiviral (DAA) agents as part of IFN-free regimens, with and without RBV.

The data to be presented at the 2012 annual meeting of the AASLD include:

Oral Presentation: Parallel Session 12, HCV New Agents: Hard to Treat Patients, Hynes Ballroom B & C, November 11, 4:45 - 6:15 p.m. (ET)

  • Efficacy and tolerability of TMC435 150 mg once daily with peginterferon alfa-2a and ribavirin for treatment of HCV genotype 1 infection in patients with Metavir score F3 and F4 (PILLAR and ASPIRE trials)
    • Lead Author: Fred Poordad, M.D., Alamo Medical Research Center, San Antonio, TX
  • No clinically significant interaction between the investigational HCV protease inhibitor TMC435 and the immunosuppressives cyclosporine and tacrolimus
    • Lead Author: Sivi Ouwerkerk-Mahadevan , M.D., Janssen Research & Development

Poster Presentations: Clinical HCV 1, Poster Hall, November 11, 8:00 a.m. - 5:30 p.m. (ET)

  • Safety and tolerability of TMC435 in combination with peginterferon alfa-2a and ribavirin for treatment of HCV genotype 1 infection in treatment-naive and -experienced patients (Phase IIb PILLAR and ASPIRE trials)
    • Lead Author: Michael W. Fried , M.D., University of North Carolina at Chapel Hill, Chapel Hill, NC
  • No pharmacokinetic interaction between the investigational HCV protease inhibitor TMC435 and an oral contraceptive containing ethinylestradiol and norethindrone
    • Lead Author: Sivi Ouwerkerk-Mahadevan , M.D., Janssen Research & Development

About Simeprevir
Simeprevir (TMC435) is an NS3/4A protease inhibitor jointly developed by Janssen and Medivir AB to treat chronic hepatitis C (HCV). Simeprevir is being studied in combination with pegylated interferon (IFN) and ribavirin (RBV), and in combination with direct-acting antiviral (DAA) agents in all oral IFN- free regimens, with and without RBV.

Global Phase III studies of simeprevir include QUEST-1 and QUEST-2 in treatment-naive patients, PROMISE in patients who have relapsed after prior IFN-based treatment and ATTAIN in treatment-experienced patients. In parallel to these trials, Phase III studies for simeprevir are ongoing in both treatment-naive and treatment-experienced HIV-HCV co-infected patients, HCV genotype 4 infected patients and in Japanese HCV genotype 1 patients.

Simeprevir is also being studied in Phase II IFN-free trials with or without RBV in combination with:

  • Janssen's TMC647055 and ritonavir in treatment-naive, relapser or null responder HCV genotype 1 patients;
  • Gilead Sciences, Inc.'s sofosbuvir (GS-7977) in null responder HCV genotype 1 patients; and
  • Bristol- Myers Squibb 's daclatasvir in treatment-naive or previous null responder HCV genotype 1 patients.

For additional information about simeprevir, please visit www.clinicaltrials.gov.

About Hepatitis C
Hepatitis C (HCV), a blood-borne infectious disease of the liver and a leading cause of chronic liver disease and liver transplants, is a rapidly evolving treatment area with a clear need for innovative treatments. Approximately 170 to 210 million people are infected with HCV worldwide, with three to four million people newly infected each year.

About Janssen
At Janssen, we are dedicated to addressing and solving some of the most important unmet medical needs of our time in oncology, immunology, neuroscience, infectious diseases and vaccines, and cardiovascular and metabolic diseases. Driven by our commitment to patients, we develop innovative products, services and healthcare solutions to help people throughout the world. Janssen Research & Development is part of the Janssen Pharmaceutical Companies of Johnson & Johnson. Please visit http://www.janssenrnd.com for more information.

(This press release contains "forward-looking statements" as defined in the Private Securities Litigation Reform Act of 1995. The reader is cautioned not to rely on these forward-looking statements. These statements are based on current expectations of future events. If underlying assumptions prove inaccurate or unknown risks or uncertainties materialize, actual results could vary materially from the expectations and projections of Janssen Pharmaceuticals, Inc. and/or Johnson & Johnson. Risks and uncertainties include, but are not limited to, general industry conditions and competition; economic factors, such as interest rate and currency exchange rate fluctuations; technological advances, new products and patents attained by competitors; challenges inherent in new product development, including obtaining regulatory approvals; challenges to patents; significant adverse litigation or government action; impact of business combinations; financial distress and bankruptcies experienced by significant customers and suppliers; changes to governmental laws and regulations and domestic and foreign health care reforms; trends toward health care cost containment; increased scrutiny of the health care industry by government agencies; changes in behavior and spending patterns of purchasers of health care products and services; financial instability of international economies and sovereign risk; disruptions due to natural disasters; manufacturing difficulties or delays; and product efficacy or safety concerns resulting in product recalls or regulatory action. A further list and description of these risks, uncertainties and other factors can be found in Exhibit 99 of Johnson & Johnson's Annual Report on Form 10-K for the fiscal year ended January 1, 2012. Copies of this Form 10-K, as well as subsequent filings, are available online at www.sec.gov, www.jnj.com or on request from Johnson & Johnson. Neither Janssen Pharmaceuticals, Inc. nor Johnson & Johnson undertake to update any forward-looking statements as a result of new information or future events or developments.)

SOURCE Janssen Research & Development Ireland (Janssen)

PR Newswire (http://s.tt/1qb0J)

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September 20, 2012

A Phase IIa Interferon Free Combination Hepatitis C Trial of Simeprevir (TMC435) and TMC647055 Will Commence Shortly

Published: September 20, 2012

STOCKHOLM, September 20, 2012 - /PRNewswire/ --
Medivir AB (OMX: MVIR), announced today that simeprevir (TMC435) and TMC647055, a non-nucleoside inhibitor (NNI) will enter a phase IIa interferon free combination trial.

Simeprevir is a once daily potent HCV NS3/4A protease inhibitor in phase III clinical development for the treatment of chronic hepatitis C jointly developed by Medivir and Janssen Research & Development Ireland (Janssen). TMC647055 is a potent NNI (non-nucleoside inhibitor) of the HCV NS5B polymerase and is being developed by Janssen R&D.

"This study is in line with Medivir's and Janssen's strategy to evaluate different combination possibilities with simeprevir for interferon-free HCV treatments. This will broaden our understanding of simeprevir, which we believe has the necessary characteristics to potentially become a key component of future hepatitis C treatment regimens, including combination with interferon and ribavirin as well as interferon-free therapies," comments Charlotte Edenius, Medivir's EVP of Research and Development.

Study design

This will be an open label study in patients who are chronically infected with HCV genotype-1a or 1b to assess the efficacy, safety and tolerability of the combination. The primary endpoint in the study will be SVR12 (sustained virologic response 12 weeks after end of treatment). Simeprevir, TMC647055 and low-dose ritonavir will be co-administered once daily, with and without ribavirin.

Approximately 40 patients will be enrolled in this study, which is divided in two parts. The first part will include patients chronically infected with HCV genotype-1, who are either treatment-naive or have relapsed after prior pegylated interferon (PegIFN)/ribavirin treatment. The treatment will consist of simeprevir, TMC647055 and low-dose ritonavir, with and without ribavirin for 12 weeks.

The second part of the trial will investigate the same regimen in prior null responder patients chronically infected with HCV genotype 1a.

Recruiting: TMC435HPC3001 - An Efficacy, Safety and Tolerability Study for TMC435 vs Telaprevir in Combination With PegINFα-2a and Ribavirin in Chronic Hepatitis C Patients Who Were Null or Partial Responders to Prior PegINFα-2a and Ribavirin Therapy

Not yet recruiting: Study of Daclatasvir and TMC435 for Subjects With Genotype 1 Chronic Hepatitis C

Completed: TMC647055HPC1001 - First-in-human Trial to Examine Safety, Tolerability and Pharmacokinetics (How the Drug is Absorbed Into the Bloodstream) of Increasing Single Oral Doses and of Increasing Repeated Oral Doses of TMC647055 in Healthy Volunteers and in Hepatitis C Virus Infected Patients

Medivir acquires preclinical antiviral programs including hepatitis C and prodrug technologies - press release

05-Sep-12 Stockholm, Sweden-

Medivir announced today that it has acquired preclinical research stage assets from Novadex Pharmaceuticals AB.

The acquisition includes intellectual property and prodrug technologies in order to further strengthen Medivir's hepatitis C platform and know how.

The acquired portfolio of research stage antiviral programs includes novel nucleotide polymerase inhibitors that have been identified and developed. It also includes prodrug technologies which could be applied to both protease inhibitors and nucleoside analogues to enhance their overall pharmacokinetic properties.

"We are very pleased to be able to make these additions to the Medivir R&D portfolio, which will further strengthen our pipeline and capabilities in the antiviral disease area. There are several synergies with the Medivir anti-viral projects and prodrug approaches which we aim to explore" comments Charlotte Edenius, Medivir's EVP of Research and Development .

The transaction value, which consists of up-front payment as well as future potential milestone payments, is not disclosed.

Source

September 10, 2012

On HCV, These Questions Three

bridge-of-death-monty-python
Paul Sax • August 25th, 2012
Categories: Infectious Diseases, Patient Care, Research

In the fastest-moving area of ID drug development, answers are eagerly sought to the following questions three:

  1. What does the bad news on BMS-986094 — formerly INX-189 — mean for other investigational HCV nucleotides? Severe cardiotoxicity, fatal in one case, has ended the drug’s development. Importantly, nothing similar has thus far been observed with the structurally-similar IDX184, but that drug has been placed on “clinical hold” by the FDA. By contrast, the nucleotide GS-7977 is apparently different enough chemically that studies are for now continuing. One take-home message: drug development is risky business.
  2. When will the alphabet soup of terms used to describe HCV treatment response be abandoned? HCV treatment either works, and you’re cured, or it doesn’t. But because the treatment is so cumbersome and so long, there’s a whole slew of ways to describe how things are going before you get to that point. Let’s see, there’s RVR (rapid virologic response, or no virus detected at 4 weeks); eRVR (extended rapid virologic response, or no virus detected at weeks 4 and 12 — used in this study of daclatasvir); EVR (early virologic response, which really isn’t that early, because it’s week 12, and it can be either pEVR — for “partial” — which means HCV RNA drops by more than 2 log but is still detected, or cEVR — for “complete”, which means it’s undetectable); ETR (end of treatment response, or no virus detectable at end of treatment); and of course SVR (sustained virologic response, now available in many flavors, depending on the week after stopping treatment you want to measure it — 2, 4, 8, 12, 16, 24,etc). For now, with IF/RBV +/- telaprevir/boceprevir and “response-guided” therapy still ruling the day, we’re stuck with this mish-mosh of terms, but I suspect most of this stuff will be irrelevant pretty soon, except for the bottom line — how many are cured? Doesn’t that sound better than “How many are SVR-12′d?”
  3. So when precisely will these new drugs become available? Seems pretty obvious right now that if you’ve got HCV and can wait for better treatments, you should. Treatment became more effective with telaprevir and boceprevir, but it also got more complicated, toxic, and expensive. Things have to get better, and they will — especially with interferon-free options. Regardless, no one knows exactly when these new drugs will be available for use outside of clinical trials — 2013-2014 a broad estimate — and all kinds of things could hold up their approval (see #1 above). Plus, some patients can’t and shouldn’t wait for better options because they have advanced liver disease. Just this last week, two such individuals came in for evaluation — both with HIV, both with prior treatment failure on IF/RBV, both with Stage 3/4 fibrosis on liver biopsy. Should they wait for daclatasvir, GS-7977, TMC-435, ABT-450/r + ABT-333, etc? Probably not.

For the record … what is the airspeed velocity of an unladen swallow?

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April 24, 2012

New Protease Inhibitor TMC435 Cures Most HCV Patients

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From Medscape Medical News

Daniel M. Keller, PhD

April 24, 2012 (Barcelona, Spain) — In patients infected with hepatitis C virus (HCV) genotype 1 for whom previous treatment with pegylated interferon plus ribavirin (PR) failed to eliminate the virus, treatment with TMC435 plus PR was significantly more effective than PR plus placebo. TMC435 is a once-daily oral therapy that inhibits HCV NS3/4A protease.

Stefan Zeuzem, MD, professor of medicine and chief of the Department of Medicine I at the J.W. Goethe University Hospital in Frankfurt, Germany, presented the results of the international, double-blind, placebo-controlled phase 2b ASPIRE clinical trial here at The International Liver Congress 2012.

The 462 patients in this trial were assigned to 48 weeks of active therapy with 1 of 4 treatment regimens: TMC435 + PR for 12 weeks, followed by PR + placebo weeks for 36 weeks; TMC435 + PR for 24 weeks, followed by PR + placebo for 24 weeks; TMC435 + PR for 48 weeks; or PR + placebo for 48 weeks (control group).

In patients receiving TMC435, the dose was 100 or 150 mg daily. All patients were followed for 24 weeks after the 48-week treatment period.

Eligible men and women were 18 to 70 years of age, had a body weight of 40 to 125 kg, were chronically infected with HCV genotype 1 HCV, and had plasma HCV RNA greater than 10,000 IU/mL. They had to have received at least 1 previous course of PR for at least 12 consecutive weeks.

Patients were ineligible for the trial if they had decompensated liver disease or liver disease from any cause other than HCV; if they had hepatocellular carcinoma; if they were infected with HIV, hepatitis B virus, or any HCV that was not genotype 1; or if they had any laboratory or hematologic abnormalities.

At baseline, about two thirds of the patients were men, median age was about 50 years, body weight ranged from 80.0 to 84.8 kg, and 83% to 89% had HCV RNA greater than 800,000 IU/mL. Previously in each group, about 40% had relapsed, 35% had partially responded, and 25% had not responded.

In the 3 TMC435 groups (both the 100 and 150 mg doses), 53% to 68% of patients achieved rapid viral responses, compared with 2% in the control group (P < .001 for all groups vs control group). Rapid viral response meant there was undetectable virus in the blood at week 4.

The sustained viral response rates at 24 weeks (SVR24) ranged from 61% to 80% for the TMC435 groups, compared with 23% in the control group.

In the TMC435 groups, compared with the control group, previous responders had the highest SVR24 rates (85% vs 37%), followed by previous partial responders (57% to 75% vs 9%), followed by previous nonresponders (46% to 51% vs 19%).

No patients with advanced liver fibrosis achieved a virologic cure in the control group, whereas with TMC435, "there was a substantial chance for the patients to achieve sustained virologic response rates," Dr. Zeuzem reported.

TMC435 Well Tolerated

Discontinuation of treatment because of viral breakthrough was 9% to 17% in the TMC435 groups and 53% in the control group. Viral relapse occurred in 6% to 18% of the TMC435 group and 44% of the control group.

The incidence and severity of adverse events were similar in the TMC435 and control groups. Serious adverse events affected 6% to 10% of patients in the TMC435 groups and 6% in the control group. Grade 3/4 adverse events occurred in 28% to 36% of the TMC435 groups and in 26% of the control group. The most frequently reported adverse events in patients receiving TMC435 were headache, fatigue, and influenza-like illness, but these events were present at equivalent levels in the control group.

However, pruritus was more common in the TMC435 groups than in the control group (35% VS17%). Similarly, more rash of any type occurred in the TMC435 groups than in the control group (23% to 30% vs 18%). However, less than 1% of patients receiving TMC435 experienced rash of grade 3 or lower.

The incidence of adverse events leading to treatment discontinuation and serious adverse events was similar in all groups. Decreases in and recovery of hemoglobin values and neutrophil counts were equivalent in all groups. However, the TMC435 groups showed mild and reversible increases in bilirubin not accompanied by changes in any other liver parameters.

For patients receiving 150 mg of TMC435, 85% of previous relapsers achieved SVR24, 75% of previous partial responders achieved SVR24, 51% of previous nonresponders achieved SVR24, and 31% to 82% of patients with cirrhosis achieved SVR24.

Dr. Zeuzem and colleagues conclude that in patients with HCV genotype 1 who failed previous PR therapy, once-daily TMC435 plus PR was significantly more effective in producing a sustained viral response than PR plus placebo.

In comparing the different durations of administration of TMC435, Dr. Zeuzem explained that "TMC435 for 12 weeks in combination with pegylated interferon and ribavirin for 48 weeks achieves optimal biologic response rates." Longer treatment with TMC435 did not produce any better virologic responses.

The drug is now entering phase 3 trials for both treatment-naive and treatment-experienced patients.

Session moderator Mark Thursz, MBBS, MD, secretary general of the European Association for the Study of the Liver and professor of hepatology in the Department of Medicine at Imperial College, London, United Kingdom, asked Dr. Zeuzem if hepatologists need to continue to use SVR24 as the end point of a trial or if the follow-up period can be shortened by using sustained viral response at 12 weeks (SVR12) as the end point.

Dr. Zeuzem explained that current trials "typically use an SVR at week 12 of the follow-up period, and the concordance rates are extremely high [with SVR24]; therefore, SVR12 is the new standard."

He does not think there is a major difference between SVR12 and SVR24 for treatment-naive patients, nonresponders, or relapsers with an interferon-containing protocol such as this one. "I'm a little bit more conservative in trials using completely new drugs, [such as]...interferon-free regimens and all-oral regimens," Dr. Zeuzem said. He would like to see trials demonstrating the equivalence of SVR12 and SVR24 in those cases before adopting SVR12 for those drug regimens.

Dr. Thursz told Medscape Medical News that he, too, believes that SVR12 will be the new end point and will replace SVR24 as new drugs enter trials. "The only proviso is for people who've previously been treated and have been classified as null responders — that's a group of people with hepatitis C [in whom] the virus has not dropped by 2 logs [after 12 weeks of treatment]," he said. "These people are going to be really difficult to treat and very resistant to pretty much any kind of medication. I have some reservation about that group; otherwise, SVR12 is undoubtedly going to be, as it were, the standard."

Another group of particular concern is patients with advanced fibrosis or cirrhosis. "We know, certainly with interferon-based therapies, that response rates are much lower in that group. Then there is some concern in cirrhotics, particularly cirrhotics who've decompensated, that the metabolism of the drugs is going to be slightly different and may cause some problems," Dr. Thursz cautioned.

Dr. Zeuzem reports being a consultant for Abbott, Achillion, AstraZeneca, Bristol-Myers Squibb, Boehringer Ingelheim, Gilead, Idenix, Inhibitex, iTherX, Janssen, Merck, Novartis, Presidio Pharmaceuticals, Roche, Santaris, and Vertx Pharmaceuticals. Dr. Thursz has disclosed no relevant financial relationships.

The International Liver Congress 2012: Abstract 2. Presented April 19, 2012.

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April 19, 2012

EASL 2012: Once-daily TMC435 Demonstrates Statistically Higher Viral Cure Rates (SVR24) Compared to Placebo in HCV Patients Who Had Failed Prior Treatment

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-- Janssen R&D Presents Final Safety and Efficacy Results from Phase 2b ASPIRE Study of Once-daily TMC435 at EASL --

BARCELONA, Spain, April 19, 2012 /PRNewswire/ -- Janssen R&D Ireland today will present final results from ASPIRE, a phase 2b study of TMC435, a once daily investigational hepatitis C virus (HCV) NS3/4A protease inhibitor. Results show that the medication was effective and well-tolerated when given in combination with pegylated-interferon and ribavirin (PegIFN/RBV) in the treatment of chronically-infected genotype 1 HCV patients who had failed previous treatment. The data are featured in an oral presentation at the 47th Annual Meeting of the European Association for the Study of the Liver (EASL) in Barcelona, Spain, April 18-22, 2012.

Results from the final ASPIRE analysis show that TMC435 administered in combination with PegIFN/RBV resulted in significantly higher sustained virologic response (SVR24) rates compared to placebo plus PegIFN/RBV. The ASPIRE study evaluated chronically-infected genotype 1 HCV patients who had relapsed, showed partial response, or no response after a prior course of PegIFN/RBV. In the TMC435 arms, 53 to 68 percent of patients achieved rapid virologic response [RVR; HCV RNA<25 (undetectable)], compared to 2 percent of the placebo group. For patients in the TMC435 treatment groups dosed with TMC435 100 mg and 150mg, 61-70 percent of patients and 67-80 percent of patients achieved SVR24, respectively, compared to 23 percent of patients achieving SVR24 in the placebo arm. For null-responders to prior HCV therapy dosed with TMC435 150 mg, 51 percent of patients in the TMC435 treatment groups achieved SVR24, compared to 19 percent in placebo group. When treated with TMC435 150 mg, 75 percent of prior partial responders and 85 percent of patients who previously relapsed reached SVR24, versus 9 and 37 percent taking placebo, respectively. Once-daily TMC435 was well tolerated in this population with comparable incidence of adverse events between TMC435 and placebo groups except for influenza-like illness, pruritus, and rash (any type). Results showed comparable on treatment changes in hemoglobin levels and neutrophil counts between groups and mild, isolated and reversible increases in bilirubin amongst TMC435 treated subjects.

TMC435 150 mg administered once daily (q.d.) is being investigated in phase 3 trials in various patient populations. Two global randomized trials investigate adults with chronic genotype 1 hepatitis C infection – QUEST-1 (TMC435-C208) and QUEST-2 (TMC435-C216) compare TMC435 in combination with PegIFN/RBV against a placebo among treatment-naive adults, and PROMISE (TMC435-C3007) compares TMC435 combined with PegIFN/RBV versus PegIFN/RBV alone in patients who have experienced a viral relapse following previous interferon-based treatment. The recently-launched global phase 3 study HPC3001 assesses TMC435 versus telaprevir, both in combination with PegIFN/RBV, in treatment-experienced patients. Additionally, the global phase 3 trial HPC3011 tests the safety and efficacy of TMC435 in treatment-naive or treatment-experienced HCV genotype 4 infected patients. The phase 3 program in Japan evaluates the efficacy and safety of TMC435 in treatment-naive, relapsed patients, partial and null responders.

"Chronic hepatitis C is a devastating disease for millions of patients infected worldwide and while considered curable, some patient populations remain almost unresponsive to current antiviral therapy, including those with advanced cirrhosis," said Stefan Zeuzem, M.D., lead clinical investigator and Professor of Medicine and Chief of the Department of Medicine, at the Goethe University Hospital, Frankfurt, Germany. "We are encouraged by the results of once-daily TMC435 in combination with peginterferon alfa and ribavirin in achieving significantly higher sustained virologic response rates compared with peginterferon alfa and ribavirin alone in patients who have not had success with previous antiviral treatments. This analysis reinforces the superior viral cure rates to placebo and promising safety profile seen in the phase 2b PILLAR study in treatment-naive patients."

TMC435 is being developed by Janssen Research & Development in partnership with Medivir.

"Janssen is pleased to present the final analysis of the phase 2b ASPIRE study at EASL. The continued development of TMC435, which is currently being investigated in registrational phase 3 studies in both treatment-naive and treatment-experienced patients, reinforces our strong commitment to the development of new therapies that will improve the lives of those impacted by HCV, including patients whose disease is particularly difficult to treat," said Maria Beumont, M.D., Global Medical Leader TMC435 at Janssen.

About the ASPIRE Study

The ASPIRE study (TMC435-C206) was a seven-arm, global phase 2b randomized, double-blind, placebo controlled study that evaluated the effect of TMC435 in combination with pegylated-interferon and ribavirin (PegIFN/RBV). The study was comprised of 462 patients infected with genotype-1 hepatitis C virus who had failed prior treatment with PegIFN/RBV, meaning patients that had relapsed, achieved partial response, or achieved no response (null responders) to PegIFN/RBV treatment.

Patients were equally randomized to one of seven different treatment arms, six groups taking TMC435 and one placebo arm. TMC435 was administered once daily at a dose of either 100 mg or 150 mg given for either 12, 24, or 48 weeks in combination with PegIFN/RBV. PegIFN/RBV treatment was continued in the groups that received TMC435 for 12 or 24 weeks. Total treatment duration was 48 weeks in all patients.

For all patients treated in the TMC435 groups dosed with 100 mg and 150 mg, the most common adverse events were headache (31, 40 percent and 36 percent for TMC435 100mg, TMC435 150 mg and placebo, respectively), fatigue (47, 41 and 44 percent, respectively), influenza-like illness (35, 24 and 20 percent, respectively), pruritis (34, 35 and 17 percent) and neutropenia (23, 28 and 17 percent, respectively). Most adverse events were mild to moderate in severity. Adverse events leading to treatment discontinuation of TMC435/placebo were reported in 7 to 9 percent of patients in TMC435 arms and 5 percent in placebo arm.

Other Janssen R&D Presentations at EASL

In conjunction with the final sustained virologic response (SVR24) results from ASPIRE, Janssen R&D is presenting virology analysis data from ASPIRE, a comparison of two quantitative HCV RNA assays and a study evaluating potential photosensitivity associated with TMC435:

  • "TMC435 in patients infected with HCV genotype 1 who have failed previous pegylated interferon/ribavirin treatment: virologic analysis of the ASPIRE study." O. Lenz. (Oral)
  • "Comparison of two quantitative HCV RNA assays in samples from patients treated with a protease inhibitor-based therapy: implications for response guided therapy." B. Fevery. (Oral)
  • "Absence of photosensitivity potential of TMC435 in healthy volunteers." A. Simion. (Poster)

About HCV

HCV is a blood-borne infectious disease that affects the liver. With an estimated 210 million people infected worldwide and three to four million people newly infected each year, HCV puts a significant burden on patients and society. Chronic infection with HCV can lead to liver cancer and other serious and fatal liver diseases, and is the most common cause of liver transplant worldwide. Pegylated interferon combined with ribavirin can cause serious side effects and only leads to sustained viral clearance in 40 to 50 percent of genotype 1 patients. The development of new therapies, particularly direct antivirals with different modes of action, may allow HCV patients to undergo a shorter and more effective treatment regimen.

About Janssen R&D Ireland

Janssen R&D Ireland, one of the Janssen Pharmaceutical Companies of Johnson & Johnson, is a global pharmaceutical and research development company. The Company's main research and development facilities are in Beerse, Belgium with offices in Titusville, New Jersey and Cork, Ireland. The Company is dedicated to the discovery and development of innovative HIV/AIDS and hepatitis C drugs, and anti-infectives for diseases of high unmet medical need.

Contact:
Media
Hans Vanavermaete: Cell + 32 (478) 44 72 78

Distributed by PR Newswire on behalf of Janssen R&D

Source

April 18, 2012

Medivir announces TMC435 in an expanded clinical collaboration

Medivir

PRESS RELEASE

18-Apr-12

· Expanded clinical study program evaluating a combination of TMC435 and daclatasvir (BMS-790052)

· TMC435 and BMS-986094 (formerly INX-189), two direct-acting antivirals in combination, will be evaluated in clinical trial

Stockholm, Sweden - Medivir AB (OMX:MVIR), the research-based speciality pharmaceutical company focused on the development of high-value treatments for infectious diseases, announces that its development partner, Janssen R&D Ireland has broadened its clinical collaboration agreement with Bristol-Myers Squibb Company (NYSE:BMY).

· This announcement concerns an expansion of the clinical collaboration agreement between Tibotec Pharmaceuticals (now Janssen R&D Ireland) and Bristol-Myers Squibb (NYSE:BMY) announced by Bristol-Myers Squibb on 2nd December 2011

· Bristol-Myers Squibb and Janssen have agreed, pending the outcome of the upcoming phase II study, to further study daclatasvir (BMS-790052) and TMC435 in a phase III trial.

· Bristol-Myers Squibb and Janssen have agreed to conduct a drug-drug interaction study with TMC435 and BMS-986094. Results from the DDI study will guide the further evaluation of the use of TMC435 and BMS-986094 in HCV patients.

TMC435 and daclatasvir (BMS-790052)

In the agreement announced on 2ndDecember 2011, TMC435, a once daily potent NS3/4A protease inhibitor (PI) in phase III development for the treatment of genotype-1 chronic hepatitis C virus (HCV) infection will be investigated in a combination in a phase II trial with Bristol-Myers Squibb´s investigational NS5A replication complex inhibitor, daclatasvir (BMS-790052), also in phase III development.

In the upcoming phase II study the companies will evaluate the potential to achieve sustained viral response 12 and 24 weeks post treatment in null responder and interferon intolerant patients with HCV genotype 1. This study is planned to start later in 2012.

TMC435 and BMS-986094 (INX-189)

The expanded clinical agreement also includes clinical evaluation of a combination of TMC435 and the nucleotide polymerase NS5B inhibitor BMS-986094, formerly known as INX-189. A drug-drug interaction (DDI) study with TMC435 and BMS-986094 will be conducted. Results from the DDI study will guide the further evaluation of the use of TMC435 and BMS-986094 in HCV patients.

Charlotte Edenius, Executive VP Research & Development, of Medivir commented: “We are very excited to see this expanded collaboration between Janssen and Bristol-Myers Squibb and to be investigating TMC435 with the nucleotide BMS-986094 and to expand the clinical collaboration evaluating TMC435 with daclatasvir. This represents one of several strategies to explore TMC435 in interferon free regimens; a development we believe will be an important advancement in the HCV field for patients.”

About TMC435

TMC435 is a highly potent once-daily (q.d.) investigational drug that is being jointly developed by Janssen R&D Ireland and Medivir to treat chronic hepatitis C virus infections in genotype 1 patients.

TMC435 - On-going global phase III program in brief:

· TMC435-C208 or QUEST-1 in 375 treatment-naïve genotype-1 patients

· TMC435-C216 or QUEST-2 in 375 treatment-naïve genotype-1 patients

· TMC435-C3007 or PROMISE in 375 genotype-1 patients who have relapsed after prior interferon-based treatment

· Phase III program in Japan, includes 417 genotype-1 treatment naïve and treatment experienced patients

· TMC435-C3001 is a phase III efficacy, safety and tolerability study comparing TMC435 versus telaprevir, each in combination with Pegylated Interferon α-2a (PegINF) and ribavirin (RBV), in hepatitis C genotype-1 infected patients who were null or partial responders to prior PegINF/RBV therapy

· TMC435-C3011 is an open label, single arm phase III trial to explore the efficacy, safety and tolerability of TMC435 150 mg once daily, in combination with PegIFN/RBV in 100 treatment naïve or treatment experienced, hepatitis C genotype-4 infected patients

For additional information from these studies, please see www.medivir.com and www.clinicaltrials.gov

About Hepatitis C

Hepatitis C is a blood-borne infectious disease of the liver and is a leading cause of chronic liver disease and liver transplants. The World Health Organization estimates that nearly 180 million people worldwide, or approximately 3% of the world's population, are infected with hepatitis C virus (HCV). The CDC has reported that almost three million people in the United States are chronically infected with HCV.

For more information about Medivir, please contact:

Medivir Mobile: +46 708 537 292 Rein Piir, EVP Corporate Affairs & IR
M:Communications medivir@mcomgroup.com
Europe: Mary-Jane Elliott, Amber Bielecka, Hollie Vile +44(0)20 7920 2330

About Medivir

Medivir is an emerging research-based specialty pharmaceutical company focused on the development of high-value treatments for infectious diseases. Medivir has world class expertise in polymerase and protease drug targets and drug development which has resulted in a strong infectious disease R&D portfolio. The Company’s key pipeline asset is TMC435, a novel protease inhibitor in phase III clinical development for hepatitis C that is being developed in collaboration with Janssen Pharmaceuticals.
In June 2011, Medivir acquired the specialty pharmaceutical company BioPhausia to ensure timely commercialisation of TMC435 in the Nordic markets, once approved.

Medivir’s first product, the unique cold sore product Xerese®/Xerclear®, was launched on the US market in 2011. Xerese®/Xerclear®, which has been approved in both the US and Europe, is being launched in collaboration with GlaxoSmithKline to be sold OTC in Europe, Japan and Russia. Rights in North America, Canada and Mexico were sold to Meda AB in June 2011. Medivir has retained the Rx rights for Xerclear® in Sweden and Finland.

For more information about Medivir, please visit the Company’s website: www.medivir.com

Source

April 13, 2012

GS-7977 Phase 3 in Genotype 2/3 Started, in Gt1 Soon waiting for QUANTUM results, nucleotides & Other HCV Drugs

Provided by NATAP

CORRECTION: The analysts reporting online is wrong regarding the BMS' NS5A+ GS7977 with or without ribavirin study. The presentation at EASL will report on the 24 week study, so the analysts report from the leaked abstract that the 12-week data is End Of Treatment is not correct. The 97% reported in the online leaked abstract is after 12 weeks on treatment that is of 24 weeks duration. There is a lagging cohort of this study that looks at 12 weeks total therapy, but this part of the study started later so results will be reported later.

From jules: Nucleotides are considered an important component of an HCV therapy regimen because they are potent & are not associated with developing drug resistance easily at all. Its worth repeating that the recent Gilead announcement that in a small study of null responders patients had undetectable viral load at the end of 12 weeks treatment with GS7977+RBV but virologically failed after stopping therapy has been misinterpreted in that observers think this is a bad commentary on this class of drugs. NOT, this is not the case. First, the patients were all undetectable after 12 weeks treatment, at the end of therapy, this is a great sign. Second, the therapy was ONLY 7977+RBV, essentially 1 drug in the hardest to treat patient population. HELLO, although 100% were cured in genotype 2/3 with the same therapy, this is the hardest to treat patients. Three, add more drugs to the regimen and/or longer duration of therapy to 24 weeks & I anticipate we will see very good results. This is in the context that at EASL next week Abbott is presenting 95% SVR rates in gt1 with 2 oral drugs, interferon-free ABT450 (a protease) plus a NNRTI (either ABT072 or ABT333, 2 studies), and at the end of 12 weeks treatment we heard preliminarily, a leak, that the 2 oral drug interferon-free regimen of BMS' NS5A+ GS7977 produced 97% undetectable viral load at the end of treatment. We are also poised to see soon results from the combination of TMC435+GS7977, TMC435 is the potent Tibotec protease. Bot these these NS5A+protease combinations are being studied with & without ribavirin & are interferon-free. Interestingly the Abbott protease ABT450 is boosted with low dose ritonavir & so is the Roche protease danoprevir which also appears to be very potent, so does boosting with low dose ritonavir provide a special significance related to potency & a barrier to resistance as it does in HIV? I suspect it does, lets wait for more info on this. There will be oral presentations on ATOMIC, PROTON, ELECTRON at EASL. QUANTUM study results expected soon after EASL. GS7977 is a nucleotide, it is the furthest along in development (phase 3 in gt2/3 & about to enter phase 3 in gt1), showed an average 4.5 to 5 log reduction in viral load with monotherapy over 7-14 days, while INX189 the Inhibitex nucleotide acquired by BMS showed an average viral load reduction of 4.25 logs after 7 days monotherapy and this nucleotide is further back in clinical development. Alios' 2 nucleotides were acquired by Vertex & we expect the first early clinical data this Spring, very soon. So, put this information together. Several years ago I predicted we would see 100% cure rates. NS5A inhibitors are an important class of drugs because they also are very potent with BMS' showing up to over 5 logs viral load reduction in monotherapy in gt1b and 3.3 logs in gt1a, this NS5A is in phase 3 clinical development now, there are additional NS5A inhibitors in earlier stages in development by other companies including Abbott, Achillion, Gilead, Presidio, Idenix & Merck. There are numerous potent new HCV protease inhibitors in development for which we will see updates at EASL next week including from Roche, Boerhinger Ingelheim, Abbott, Tibotec, Merck with BI & Tibotec in phase 3 now & Merck in 2b & Abbott & Roche about to enter phase 3, in addition to the 2 protease inhibitors that were approved last year boceprevir & telaprevir. There are numerous NNRTIs in development; there is a potent cyclophillin inhibitor from Novartis in phase 3 with updates in gt1 and gt2/3 at EASL.

BMS-790052, a First-in-Class Potent Hepatitis C Virus NS5A ... www.natap.org/2010/AASLD/AASLD_58.htm Nov 3, 2010 - Background: NS5A plays a central role in hepatitis C virus (HCV) replication. BMS-790052 is a first-in-class and potent NS5A inhibitor

PSI-938 and PSI-7977 as monotherapy and in combination & INX189 Monotherapy

ONCE DAILY DUAL-NUCLEOTIDE COMBINATION OF PSI-938 ... www.natap.org/2011/EASL/EASL_07.htm Apr 3, 2011 - PSI-938 and PSI-7977 as monotherapy and in combination were ... Of note, PSI-7977 monotherapy produced HCV RNA reductions over 7 days

INX189 Monotherapy at Higher Dose 200mg

AASLD: Antiviral Activity and Safety of INX-08189, a Nucleotide Polymerase Inhibitor, Following 7-Days of Oral Therapy in Na•ve Genotype-1 HCV Patients - (11/07/11)

Pharmasset Announces the Initiation of an Interferon-Free Phase 3 ... www.natap.org/2011/HCV/110111_02.htm Nov 1, 2011 - The final design of the trial will be based on emerging data from ongoing studies, including ELECTRON and QUANTUM

Pharmasset Initiates QUANTUM, a Phase 2b Interferon-Free Trial of ... www.natap.org/2011/HCV/091611_02.htm Sep 13, 2011 - The QUANTUM trial will evaluate interferon-free regimens of PSI-7977 400mg QD and PSI-938 300mg QD with and without ribavirin over 12 or

Pharmasset Announces Intent to Amend QUANTUM Trial - PSI938 ... www.natap.org/2011/HCV/121611_02.htm Dec 16, 2011 - 16, 2011 /PRNewswire/ -- Pharmasset, Inc. (Nasdaq: VRUS) announced today that the company will amend the design of the QUANTUM

(dec 2011) PSI7977 stays intact; PSI7977+R up for testing in GT 1 patients with data out late first quarter 2012. To date, over 400 patients have been exposed to PSI-7977 for 12 weeks or longer, and no notable safety signals have been identified. The goal of the QUANTUM study is to test whether the PSI-7977+R regimen for 12 weeks could also achieve the same near-100% SVR in genotype 1 (GT 1) patients as it did in GT 2/3 patients, and if 12 weeks of PSI-7977+R treatment is not sufficient, whether 24 weeks will be. The SVR data will be available during late first quarter or early second quarter 2012, by our estimation. We believe this will be the decisive data for Gilead and Pharmasset to have a pan-genotypic, all-oral regimen in hand to take into full blown Phase III studies.

Pharmasset Initiates Phase 2b ATOMIC Trial of PSI-7977 for Multiple HCV Genotypes - (03/31/11)

PSI-7977 400 mg with PEG/RBV Provides 93% SVR Across HCV GT ... www.natap.org/2011/hepDART/hepDART_02.htm Dec 4, 2011 - Pharmasset Initiates Phase 2b ATOMIC Trial of PSI-7977 for Multiple HCV Genotypes - (03/31/11) Gilead Sciences to Acquire Pharmasset,

Pharmasset Announces Further Expansion of ELECTRON Trial in ... www.natap.org/2011/HCV/101011_01.htm Oct 10, 2011 - "We look forward to reporting SVR12 results from Part 1 and interim data from the PSI-7977 monotherapy arm of ELECTRON on Sunday,

PSI-7977: ELECTRON Interferon is not required for Sustained ... www.natap.org/2011/AASLD/AASLD_07.htm - Translate this page PSI-7977: ELECTRON Interferon is not required for Sustained Virologic Response in Treatment-Na•ve Patients with HCV GT2 or GT3. Reported by jules Levin

April 11, 2012

Medivir Announces Final Results from TMC435 Phase IIb ASPIRE (C206) Study

Provided by NATAP

at EASL next week there will be a presentation on TMC435 from this ASPIRE Study

STOCKHOLM, November 2, 2011 /PRNewswire/ --

ICAAC: TMC435 in combination with peginterferon and ribavirin for treatment of HCV genotype 1 infection: Week 24 interim analyses of Phase IIPILLAR and ASPIRE trials - (09/30/11)

TMC435-Based Therapy Significantly Improved Viral Cure Rates in Patients Who Failed Prior Treatment for Hepatitis C

- ASPIRE: All TMC435 subgroups achieved substantially higher viral cure rates (SVR24) compared with control group (pegylated interferon and ribavirin alone): 85% vs. 37% in prior relapsers, 75% vs. 9% in prior partial responders and 51% vs. 19% in prior null responders -

- Once daily TMC435 was generally safe and well tolerated at all doses and treatment durations -

Medivir AB (OMX: MVIR), a research-based speciality pharmaceutical company focused on infectious diseases, today announces final results from the ASPIRE study. This phase IIb study evaluated TMC435 once daily in addition to pegylated interferon (PegIFN) and ribavirin (RBV) in patients with genotype-1 chronic hepatitis C whose prior treatment with PegIFN and RBV was unsuccessful either because they relapsed, had a partial response or had a null response. Data from the ASPIRE study showed that patients in each of these subgroups who were treated with TMC435-based combination therapy achieved superior rates of sustained virologic response (viral cure) compared with those retreated with PegIFN and RBV alone.

Charlotte Edenius, Executive VP Research and Development, of Medivir commented, "We are extremely pleased with the final results from the ASPIRE study showing high viral cure rates and a favourable safety and tolerability profile in these difficult to treat genotype-1 hepatitis C patients whose prior treatment was unsuccessful. These results may provide new optimism for people who have failed on previous therapy, including those with advanced liver disease. We are highly committed to the broad and rapid development of TMC435 and global pivotal phase III clinical trials are currently well underway."

ASPIRE (C206) – Design

TMC435, a potent, once-daily, oral hepatitis C virus protease inhibitor, is being developed by Tibotec jointly with Medivir. The randomized, placebo-controlled, double-blind ASPIRE study evaluates the effect of TMC435 in combination with pegylated-interferon and ribavirin in 462 patients infected with genotype-1 hepatitis C virus who have failed prior treatment with PegIFN/RBV. The primary endpoint was proportion of patients with undetectable HCV RNA 24 weeks after the planned end of treatment (SVR24).

The study includes patients who have relapsed, achieved partial response, or achieved no response (null responders) to PegIFN/RBV treatment. 62 percent (287/462) of patients had advanced liver disease, periportal or septal fibrosis or cirrhosis (scarring of the liver) upon study entry (Metavir score F2-F4). Patients were equally randomized to one of seven different treatment arms, six TMC435 treatment arms and one placebo arm. TMC435 was administered once daily at a dose of either 100 mg or 150 mg given for either 12, 24, or 48 weeks in combination with 48 weeks of PegIFN/RBV. The results are based on the intent-to-treat (ITT), population which included all randomized patients who took at least one dose of the study medication.

Results – Efficacy

In this final analysis, all subgroups of treatment-experienced patients who failed previous PegIFN and RBV treatment, achieved substantially higher virologic response rates following treatment with TMC435-containing regimen at all doses and durations, compared with PegIFN and RBV alone.

Regardless of treatment duration all TMC435 treatment arms showed significantly improved effect on SVR24 versus PegIFN/RBV alone.

sus

q.d.: once daily; PR: pegIFNalpha-2A and ribavirin; EoT: End of Treatment, SVR24: patients with undetectable HCV RNA (<25 IU/mL Undetectable) 24 weeks after planned EoT. All TMC435 groups: p<0.001 vs placebo. Prior Relapser: undetectable HCV RNA at EoT and detectable within 24 weeks of follow-up Prior Partial Responders: more than 2 log reduction in HCV RNA at W12 but not achieving undetectable at EoT

Prior Null Responders: less than 2 log reduction in HCV RNA at W12 Results - Safety and Tolerability

TMC435 was generally safe and well tolerated and overall incidence of adverse events (AEs) was similar across treatment groups. Most of the AEs were grade 1 or 2 in severity. Serious AEs (SAEs) were reported in 6.1% subjects in the placebo and in 7.8% of the patients treated with TMC435. AEs leading to treatment discontinuation were reported in 4.5% of the placebo patients and in 7.8% of the TMC435 treated patients. Patients in the TMC435 ASPIRE treatment groups had overall longer treatment duration than patients in the placebo group due to a higher frequency of early discontinuation in the placebo group due to treatment failures (i.e. reaching viral stopping rules). The most common AEs during the treatment period were headache, fatigue, pruritus and influenza-like illness. Incidence was similar across treatment groups and the level of AEs and frequency were consistent with the prior phase IIb (PILLAR) study in treatment-naïve hepatitis C patients of TMC435.

In the safety analyses, special attention was given to the following AEs of interest: hepatobiliary AEs, pruritus, rash and anemia. Most AEs of interest were grade 1 or 2 in severity and infrequently led to treatment discontinuation. For each category of AEs of interest the incidence was similar for the TMC435 treatment arms and control arm.

Mild and reversible increases in bilirubin (total, direct and indirect) were observed in TMC435 dose groups with no differences between 100 mg and 150 mg. There were no meaningful differences between treatment groups for any of the other laboratory parameters. There were no clinically significant findings on vital signs. Mean alanine aminotransferase (ALT) levels decreased in all treatment groups.

DRAGON (C215) - Update on recently published results

The final data from the phase II Dragon study in Japan was recently published at the Japan Digestive Disease Week meeting, 20-23 October 2011 in Fukuoka, Japan. The DRAGON study is a phase II randomized, open-label, response-guided study to evaluate the efficacy, safety, and pharmacokinetics of TMC435 plus PegIFN/RBV in 92 Japanese treatment-naïve patients infected with HCV genotype-1.

Addition of once daily TMC435 (100 mg) to PegIFN/RBV increased the viral cure rate (SVR24) from 46% in the PegIFN/RBV only group to 82% (32/39) in the TMC435 100mg groups. In these groups, 87% of patients were eligible to complete all treatment at Week 24 if preset criteria on virologic response were met. TMC435 was generally safe and well tolerated with no apparent difference in the safety profile between TMC435 treatment groups and the control group (PegIFN/RBV only).

About TMC435

TMC435 is a highly potent and selective once-daily (q.d.) investigational drug that is being jointly developed by Tibotec Pharmaceuticals and Medivir to treat chronic hepatitis C virus infections.

TMC435 has received "Fast Track" designation by the U.S. Food and Drug

Administration ("FDA") for the treatment of chronic hepatitis C (CHC) genotype-1 infection. This is based on TMC435's potential to address unmet medical needs in the treatment of chronic HCV infection. TMC435 is currently being developed in three global phase III studies, QUEST-1 and QUEST-2 in treatment-naïve patients and PROMISE in patients who have relapsed after prior interferon-based treatment. In parallel with these trials, phase III studies for TMC435 in Japan, in both treatment naive and treatment experienced hepatitis C genotype-1 infected patients, are ongoing.

For additional information from these studies, please see http://www.medivir.com and http://www.clinicaltrials.gov

SOURCE Medivir

Source

April 4, 2012

EASL 2012: Medivir Announces Acceptance of Four TMC435 Abstracts for Presentation at the EASL Meeting

PR-Logo-Newswire

PRESS RELEASE

April 4, 2012, 11:16 a.m. EDT

HUDDINGE, Sweden, April 4, 2012 /PRNewswire via COMTEX/ -- Including an Oral Presentation of final analysis of the TMC435 phase IIb ASPIRE (C206) study that have been selected to be highlighted during the official EASL Press Office activities

Medivir AB (omx:MVIR), a research-based specialty pharmaceutical company focused on infectious diseases, today announces that four abstracts related to its once daily (QD), oral investigational hepatitis C drug TMC435, development in collaboration with Janssen R&D Ireland, have been accepted for presentation at the 47th Annual meeting of the European Association for the Study of the Liver (EASL), taking place from April 18-22 in Barcelona, Spain.

The following abstracts will be presented orally:

  • TMC435 IN PATIENTS INFECTED WITH HCV GENOTYPE 1 WHO HAVE FAILED PREVIOUS PEGYLATED INTERFERON / RIBAVIRIN TREATMENT: VIROLOGIC ANALYSES OF THE ASPIRE TRIAL
  • TMC435 IN HCV GENOTYPE 1 PATIENTS WHO HAVE FAILED PREVIOUS PEGYLATED INTERFERON / RIBAVIRIN TREATMENT: FINAL SVR24 RESULTS OF THE ASPIRE TRIAL
  • COMPARISON OF TWO QUANTITATIVE HCV RNA ASSAYS IN SAMPLES FROM PATIENTS TREATED WITH A PROTEASE INHIBITOR-BASED THERAPY: IMPLICATIONS FOR RESPONSE GUIDED THERAPY

The following abstract will be presented as a poster:

  • Absence of PHOTOSENSITIVITY POTENTIAL OF tmc435 IN HEALTHY VOLUNTEERS

The abstracts will be available on the EASL website, http://www.easl.eu  as of today.

About Medivir

Medivir is an emerging research-based specialty pharmaceutical company focused on the development of high-value treatments for infectious diseases. Medivir has world class expertise in polymerase and protease drug targets and drug development which has resulted in a strong infectious disease R&D portfolio. The Company's key pipeline asset is TMC435, a novel protease inhibitor in phase III clinical development for hepatitis C that is being developed in collaboration with Janssen Pharmaceuticals.

In June 2011, Medivir acquired the specialty pharmaceutical company BioPhausia to ensure timely commercialisation of TMC435 in the Nordic markets, once approved.

Medivir's first product, the unique cold sore product Xerese®/Xerclear®, was launched on the US market in 2011. Xerese®/Xerclear®, which has been approved in both the US and Europe, is being launched in collaboration with GlaxoSmithKline to be sold OTC in Europe, Japan and Russia. Rights in North America, Canada and Mexico were sold to Meda AB in June 2011. Medivir has retained the Rx rights for Xerclear® in Sweden and Finland.

For more information about Medivir, please visit the Company's website: http://www.medivir.com

For more information about Medivir, please contact: Medivir Rein Piir, EVP Corporate Affairs & IR Mobile: +46-708-537-292 M:Communications Europe: Mary-Jane Elliott, Amber Bielecka, Hollie Vile medivir@mcomgroup.com  +44(0)20-7920-2330

SOURCE Medivir

Source

March 13, 2012

Medivir Announces New Studies in Phase III Program for TMC435

PR-Logo-Businesswire

PRESS RELEASE

March 13, 2012, 4:02 a.m. EDT

HUDDINGE, Sweden, Mar 13, 2012 (BUSINESS WIRE) -- Regulatory News:

-- Study in previous non-responder Hepatitis C genotype-1 infected patients

-- Study in Hepatitis C genotype-4 infected patients

MedivirAB (sto:MVIRB) (omx:MVIR) a research based specialty pharmaceutical company focused on infectious diseases announces that its oral, once daily investigational protease inhibitor TMC435, developed by Janssen Pharmaceuticals for the treatment of Hepatitis C virus (HCV), has commenced patient dosing and started screening in two new phase III clinical trials, HPC3001 and HPC3011, respectively.

HPC3001

HPC3001 is a phase III efficacy, safety and tolerability study comparing TMC435 versus telaprevir, each in combination with Pegylated Interferon a-2a (PegINF) and ribavirin (RBV), in hepatitis C genotype-1 infected patients who were null or partial responders to prior PegINF/RBV therapy. The study which is a randomized, double-blind, double-dummy, two-arm study is targeted to enroll 744 patients.

The aim of the study is to demonstrate the efficacy of TMC435 based therapy compared to the approved telaprevir regimen in this difficult to treat population.

Patients will receive TMC435 150 mg once daily or telaprevir 750 mg administered every eight hours (q8h) in combination with PegINF/RBV for 12 weeks followed by 36 weeks of PegIFN/RBV alone. The primary endpoint of the study is sustained virological response at 12 weeks (SVR12).

HPC3011

HPC3011 is an open label, single arm phase III trial to explore the efficacy, safety and tolerability of TMC435 150 mg once daily, in combination with PegIFN/RBV in 100 treatment naive or treatment experienced, Hepatitis C genotype-4 infected patients.

Current standard of care treatment for chronic HCV genotype-4 infection consists of 48 weeks of PegIFN/RBV with a large proportion of patients do not achieve SVR with this treatment regimen.

All subjects will receive 12 weeks triple therapy of TMC435 150 mg once daily and PegIFN/RBV, followed by PegIFN/RBV alone. The duration of total treatment is response guided in treatment naive and prior relapser subjects and patients are eligible to stop all treatment at week 24 if predefined response-guided criteria are met. Subjects with cirrhosis will receive 48 weeks of therapy, irrespective of on-treatment virologic response and treatment history. The primary endpoint in the study is SVR12.

TMC435 - Ongoing global phase III program in brief:

-- TMC435-C208 or QUEST-1 in 375 treatment-naive genotype-1 patients

-- TMC435-C216 or QUEST-2 in 375 treatment-naive genotype-1 patients

-- TMC435-C3007 or PROMISE in 375 genotype-1 patients who have relapsed after prior interferon-based treatment

-- Phase III program in Japan, includes 417 genotype-1 treatment naive and treatment experienced patients

Charlotte Edenius, Executive VP Research and Development, of Medivir commented, "We are extremely pleased to expand the phase III program with these two new trials as we continue development of TMC435 for broad patient populations. The 744 patient HPC3001 study is aimed at further confirming the positive findings of the ASPIRE phase IIb trial in genotype-1 non-responder patient populations and in the HPC3011 study, the genotype-4 activity of TMC435 is being investigated."

About TMC435

TMC435 is an investigational HCV protease inhibitor in late phase III clinical development. It is an efficacious, safe and well-tolerated once-daily (q.d.) drug jointly developed by Janssen Pharmaceuticals to treat chronic hepatitis C virus infections.

TMC435 is in phase III clinical development in combination with PegIFN/RBV but is also being evaluated with Direct-acting Antiviral (DAA) agents in interferon-free combinations both with and without ribavirin (RBV).

For additional information please visit www.medivir.com and www.clinicaltrials.gov

About Hepatitis C

Hepatitis C is a blood-borne infectious disease of the liver and is a leading cause of chronic liver disease and liver transplants. The WHO estimates that nearly 180 million people worldwide, or approximately 3% of the world's population, are infected with hepatitis C virus (HCV). The CDC has reported that almost three million people in the United States are chronically infected with HCV.

About Medivir

Medivir is an emerging research-based specialty pharmaceutical company focused on the development of high-value treatments for infectious diseases. Medivir has world class expertise in polymerase and protease drug targets and drug development which has resulted in a strong infectious disease R&D portfolio. The Company's key pipeline asset is TMC435, a novel protease inhibitor in phase III clinical development for hepatitis C that is being developed in collaboration with Janssen Pharmaceuticals.

In June 2011, Medivir acquired the specialty pharmaceutical company BioPhausia to ensure timely commercialisation of TMC435 in the Nordic markets, once approved.

Medivir's first product, the unique cold sore product Xerese(R)/Xerclear(R), was launched on the US market in 2011. Xerese(R)/Xerclear(R), which has been approved in both the US and Europe, is being launched in collaboration with GlaxoSmithKline to be sold OTC in Europe, Japan and Russia. Rights in North America, Canada and Mexico were sold to Meda AB in June 2011. Medivir has retained the Rx rights for Xerclear(R) in Sweden and Finland.

For more information about Medivir, please visit the Company's website: www.medivir.com 

This information was brought to you by Cision http://www.cisionwire.com 

SOURCE: Medivir

Source

March 2, 2012

TMC435-TiDP16-C212 - Trial of TMC435 in Genotype 1 Hepatitis C and Human Immunodeficiency Virus Co-Infected Patients

Provided by NATAP

This study is currently recruiting participants.

Verified February 2012 by Tibotec Pharmaceuticals, Ireland

Estimated Enrollment: 100

Drug: TMC435

150 mg capsule once daily for 12 weeks in addition to peginterferon alfa-2a and ribavirin for 24 or 48 weeks

First Received on October 18, 2011. Last Updated on February 27, 2012

Recruiting TMC435-TiDP16-C212 - Trial of TMC435 in Genotype 1 Hepatitis C and Human Immunodeficiency Virus Co-Infected Patients

This is an open-label (all people know the identity of the intervention) study of TMC435 in patients who are infected with genotype 1 hepatitis C virus and co-infected with human immunodeficiency virus (HIV). Patients in this study will also receive two other drugs for their hepatitis C infection called peginterferon alfa-2a and ribavirin. The purpose of the study is to investigate the safety, tolerability, and efficacy of TMC435 against hepatitis C virus in this patient population. For the first 12 weeks all patients will receive TMC435 plus peginterferon alfa-2a and ribavirin. For the subsequent 12 weeks, patients will take peginterferon alfa-2a and ribavirin only. After that, based on prior HCV treatment experience and prespecified on-treatment response criteria, some patients will continue to take peginterferon alfa-2a and ribavirin for total treatment duration of 48 weeks. The study doctor will inform each patient about how to take their study medication and when they should stop taking it. Patients will take their own regimen of HIV medication(s) throughout the study, according to the instructions of the study doctor. After a patient stops taking study medication, they will continue to come to the study doctor's office for study visits for up to 72 weeks after they received the first dose of treatment in the study. The maximum duration of the study is 81 weeks (including screening). Patients will be monitored for safety throughout the study. Study assessments at each study visit may include, but are not limited to: blood and urine collection for testing and physical examinations.

March 1, 2012

TMC435HPC2002 - Phase II Trial of TMC435 in Combination With PSI-7977 in Prior G1 Null Responders to Peg-IFN/RBV, Hepatitis C-Infected Patients

Provided by NATAP

This study is currently recruiting participants.

Verified February 2012 by Tibotec Pharmaceuticals, Ireland

http://clinicaltrials.gov/ct2/show/NCT01466790?term=hepatitis+C+AND+TMC+435&rank=1

TMC435+PSI-7977 with & without ribavirin for either 12 or 24 weeks total duration of therapy

This is a randomized (study drug assigned by chance), open-label ( patients and physicians know the names of the drugs they are taking), Phase IIa trial with TMC435 and PSI-7977 with or without ribavirin (RBV) in patients who are infected with chronic genotype 1 hepatitis C and who have failed standard treatment with pegylated interferon (PegIFN) and ribavirin (RBV).

The study will investigate the efficacy and safety of four different regimens: two arms will receive 12 weeks of treatment and two arms will receive 24 weeks of treatment. A target of 90 subjects will be randomly assigned to 4 treatment arms in the first study cohort (Cohort 1), which includes patients with lower stages of liver fibrosis (Metavir F0, F1, and F2). The trial will consist of a screening period of maximum 6 weeks, a 12-week or 24-week treatment period and a follow-up period.

Once treatment results are available on all patients in Cohort 1, the second cohort (Cohort 2) will begin enrollment in the study. A target of 90 patients will be enrolled in Cohort 2. Enrollment criteria will be the same as for Cohort 1, except that only patients with more advanced liver fibrosis (Metavir stage F3 or F4), will be enrolled. The treatment arms to be included in Cohort 2 will be determined by the results from the data analysis in Cohort 1.

February 16, 2012

The Era of Direct-acting Antivirals Has Begun: The Beginning of the End for HCV?

From Seminars in Liver Disease

Marie-Louise Vachon, M.D., M.Sc.; Douglas T. Dieterich, M.D.

Posted: 02/15/2012; Semin Liver Dis. 2011;31(4):399-409. © 2011 Thieme Medical Publishers

Abstract and Introduction
Abstract

The year 2011 marks the dawn of the new era of direct-acting antivirals for hepatitis C. For the first time since 1998, the U.S. Food and Drug Administration approved two new antiviral drugs for the treatment of chronic hepatitis C virus genotype 1. Dual therapy with pegylated interferon and ribavirin is no longer the standard of care for genotype 1. The new treatment paradigm includes one direct-acting antiviral, a protease inhibitor, in combination with pegylated interferon and ribavirin. This combination nearly doubles the chances of response to treatment, but at the cost of increased toxicity. Many agents with different mechanisms of action and improved safety profiles are in clinical development. The holy grail of HCV treatment is an all oral, interferon-free treatment. The ideal regimen will be potent, well tolerated, with minimal drug-drug interactions and once daily. This article covers new concepts of treatment of hepatitis C with DAAs and gives an overview of the recent highlights in direct-acting antiviral development.

Introduction

In May 2011, telaprevir and boceprevir were approved by the U.S. Food and Drug Administration (FDA) for treatment of chronic hepatitis C virus (HCV) genotype 1. Dual therapy with pegylated interferon (pegIFN) and ribavirin (RBV) is no longer the standard of care for genotype 1 HCV. The new treatment paradigm includes one direct-acting antiviral (DAA), a protease inhibitor (PI), in combination with pegIFN and RBV. The addition of a DAA to pegIFN/RBV nearly doubles the chances of response to treatment at the cost of increased toxicity. This is only the first wave of DAA use since many agents with different mechanisms of action and improved safety profiles are in phase I, II, and III of clinical development (Table 1 and Table 2). The use of three agents to treat HCV mirrors human immunodeficiency virus (HIV) triple combination treatment in many ways. Combination treatment seems inevitable to prevent emergence of resistance in HCV. Clinical trials are ongoing to identify the ideal regimen which would be potent, well tolerated, with minimal drug-drug interactions, once daily, all oral, and for as short a duration as possible (Table 3). Two major differences between HIV and the treatment of HCV are that treatment of HCV is for a definite duration and that HCV is curable. In this article, we examine new concepts of treatment of HCV with DAAs in general and review investigational compounds that have entered phase II of clinical development.

New Concepts of DAA Use

Several new concepts arose with the development of DAAs to treat hepatitis C. Because DAAs are true antivirals that target critical steps of HCV replication, similar to antiretrovirals inhibiting HIV, selection of resistant mutants is inevitable with monotherapy.[1] The HCV replication cycle and the different sites at which DAAs can interfere with HCV replication are thoroughly reviewed elsewhere.[2,3] RNA viruses like HCV inherently possess an error-prone RNA-dependent RNA polymerase that lacks the proofreading function. As a result, and with the rapid HCV viral turnover (up to 1012 virions produced each day), it is estimated that one mutation is contained in every single genome copied.[4] There are thus many variant populations coexisting in a given individual, the patient's quasispecies. Most of these variant populations are susceptible to DAAs because wild-type viruses usually have the advantage of fitness, but some of these preexisting variants are drug-resistant at baseline.[5,6] When selection pressure is applied with the use of a DAA in monotherapy, these preexistent variants are rapidly selected and can become the predominant circulating population, potentially leading to treatment failure.[7–9] Resistance profiles differ between drug classes. Some drugs have different resistance mutations within the same class. A new concept that emerged as part of PI development is the difference in resistance profile between genotype 1a and genotype 1b. For example, the R155K substitution typically emerges when HCV genotype 1a is exposed to telaprevir.[8] Only one nucleotide change is required for the 1a subtype to develop resistance whereas two nucleotide changes must occur in genotype 1b.[10] This is not specific to PI use and has been described with other drug classes, for example, nonnucleoside polymerase inhibitors.[10] As a result, antiviral responses can vary between HCV genotype 1 subtypes during treatment with DAAs, while response was similar when treated with pegIFN and RBV dual therapy.

Response-guided therapy (RGT) refers to the use of on-treatment virologic response to tailor the duration of therapy for an individual patient.[11] This concept was used with pegIFN/RBV treatment but really emerged in the era of DAAs. Both telaprevir and boceprevir can be used for a shorter treatment duration in patients who achieve HCV RNA undetectability early on in treatment.[12,13] This is RGT. In the telaprevir studies, extended rapid virologic response (eRVR) was used to determine if RGT could be used.[12,14] The definition of eRVR was HCV RNA <10 IU/mL at week 4 and 12. In the boceprevir studies, RGT was used when HCV RNA was less than 9.3 IU/mL at week 8 through week 24.[13] Most phase II and III clinical trials of DAAs are exploring this possibility of shortening treatment duration in patients who achieve eRVR.

The concept of lead-in is also widely discussed in the DAA literature. Lead-in is the use of pegIFN and RBV for a short duration preceding the initiation of DAA. Lead-in was initially introduced in an attempt to lower HCV RNA levels before PI exposure to minimize the emergence of resistance. Also, by achieving proper pegIFN and RBV drug levels before the initiation of the DAA, it would avoid functional monotherapy. Studies of boceprevir used a 4-week lead-in of pegIFN and RBV. It turns out the lead-in was most useful in the assessment of interferon responsiveness. In the SPRINT-2 study evaluating boceprevir in combination with pegIFN/RBV in previously untreated patients with chronic HCV genotype 1, a decrease in the HCV RNA level by ≥1 log10 IU/mL after the 4-week lead-in increased the chances of sustained virologic response (SVR; undetectable HCV RNA 24 weeks after the end of treatment) ninefold (adjusted odds ratio [AOR], 9.0; 95% confidence interval [CI], 6.3–12.8; P <.001).[13] There was no advantage to lead-in when used with other DAAs, for example, with telaprevir and BI 201335.[14,15]

Lower Limit of Detection (LLOD) Versus Lower Limit of Quantification (LLOQ)

The LLOD is the HCV RNA concentration at which less than 5% of the samples that contain a known amount of an RNA standard yield a signal that can be detected. The LLOQ refers to the lowest HCV RNA concentration that is within the validated quantitative range of an assay. An undetectable result indicates that HCV RNA was not detected in the sample. The limit of detection and the limit of quantification vary according to the assay used. Both the boceprevir and telaprevir phase III studies used the COBAS TaqMan HCV RNA assay, version 2.0 (Roche), with a LLOD of 10 IU/mL and a LLOQ of 25 IU/mL. Eligibility for RGT was based on the lower limit of detection (<10 IU/mL) of the assay. There is thus a range in which HCV RNA can be detectable, but falls below the level of quantification. This situation is not uncommon during HCV treatment and is associated with lower SVR rates. In the SPRINT-2 trial, 53% of the 1071 patients enrolled had at least one on-treatment result showing detectable HCV RNA, but below the level of quantification.[13] For example, in the patients who received boceprevir and who had detectable HCV RNA at week 6 (any level), detectable HCV RNA at week 8 but below level of quantification, and undetectable HCV RNA at week 10, the SVR rate was 74%. In the patients who received boceprevir and who had detectable HCV RNA at week 6 (any level) but undetectable HCV RNA at weeks 8 and 10, the SVR rate was 86%. When assessing eligibility to response-guided therapy with DAAs, an undetectable HCV RNA (<LLOD) is not equivalent to a detectable HCV RNA that is below the limit of quantification of the assay (detectable but <LLOQ). The package inserts of telaprevir and boceprevir reflect this fact.

NS3/4A PIs

HCV NS3/4A PIs are often divided in two classes. The first generation PIs include the linear α-ketoamide derivatives, boceprevir and telaprevir. They bind the catalytic site of the enzyme covalently in a reversible reaction. Boceprevir and telaprevir are considered the first wave of the first-generation PIs. These two PIs are the first DAAs to have completed phase III clinical trials for treatment of HCV genotype 1 and to have received FDA approval. Second-wave PIs are mostly linear and macrocyclic noncovalent inhibitors of the NS3/4A enzyme. Both waves are highly potent inhibitors of the NS3/4A enzyme. The advantages of second wave PIs over first wave PIs are their convenience and improved side effect profile. Unfortunately, they share the same basic resistance mutations that are generated by the first wave of PIs. The truly second-generation PIs are the two drugs MK-5172 and the ACH-2684. They do not share the same resistance mutations and are pangenotypic. There are currently two first-generation, second-wave PIs that recently initiated phase III of clinical development: TMC435 and BI-201335.

TMC435

In phase I studies, TMC435 was generally safe and well tolerated. It showed potent anti-HCV activity. After 5 days of TMC-435 at a dose of 200 mg once daily, HCV RNA decreased by a median of 3.9 log10 IU/mL in HCV genotype 1-infected patients who failed prior interferon-based therapy.[16] The phase IIb PILLAR study is ongoing and week 24 results have recently been presented.[17] PILLAR is investigating the use of once-daily TMC435 at two different dosages (75 mg vs 150 mg) for 12 versus 24 weeks in combination with pegIFN/RBV for 24 vs 48 weeks (vs placebo/pegIFN/RBV for 48 weeks), in 386 patients with HCV genotype 1 naïve to HCV treatment. Patients with HCV RNA less than 25 IU/mL from week 4 to week 20 were eligible for RGT and stopped treatment at week 24. Of the patients receiving TMC435, 83% achieved eRVR and 94 to 97% achieved undetectable HCV RNA at week 24 of treatment compared with a high 82% in the pegIFN/RBV control group. Of the 83% of patients who achieved eRVR and stopped therapy at week 24, 88 to 97% achieved SVR12 (undetectable HCV RNA 12 weeks after the end of treatment). Discontinuation of TMC435 or placebo occurred in 7.1% of patients receiving TMC435/pegIFN/RBV versus 7.8% of patients receiving placebo/pegIFN/RBV. The most common adverse events occurred in a similar proportion of patients receiving or not receiving TMC435. TMC435 at the 150 mg once-daily dose was associated with mild and reversible increases in direct and indirect bilirubin. Elevation in bilirubin is thought to occur through inhibition of the two transporters: organic anion transporting polypeptide 1B1 (OATP1B1) and multidrug resistance-associated protein 2 (MRP2). OATP1B1 is responsible for bilirubin uptake into hepatocytes (influx) and MRP2 is responsible for efflux into bile. No inhibition of bilirubin conjugation has been observed.[18]

The ASPIRE study is the ongoing phase IIb study in prior partial responders (≥2 log10 drop in HCV RNA at week 12 but detectable HCV RNA at week 24), prior null responders (<2 log10 drop in HCV RNA at week 12 of treatment) and prior relapsers (undetectable HCV RNA at the end of treatment, but detectable HCV RNA within 24 weeks of end of treatment) to interferon-based therapy. Patients received TMC435 at doses of 100 mg versus 150 mg once daily in combination with pegIFN/RBV for 12, 24, or 48 weeks. In all seven arms of the trial, patients received pegIFN/RBV to complete 48 weeks of treatment. There was no RGT. The week 24 interim analysis showed that 92 to 96% of prior relapsers who received TMC435 had undetectable HCV RNA at week 24 compared with 83% of patients in the control group. Of the prior partial responders receiving TMC435, 83 to 89% had undetectable HCV RNA at week 24 versus 20% of the control group. Of the prior null responders, 70 to 87% had undetectable HCV RNA at week 24 versus 45% of the control group (higher than expected). The prior null responders typically have the lowest response rates to retreatment. The end of treatment and SVR data are eagerly awaited.

In summary, TMC435 is a highly potent once-daily dosing PI. Duration of treatment can be shortened to 24 weeks for the majority of patients; viral breakthroughs are low when used in combination with pegIFN and RBV. The 150 mg once-daily dose is being used in phase III trials in both patients who are naïve to HCV treatment and patients who previously relapsed to an interferon-based therapy. Patients will receive once-daily 150 mg of TMC435 during 12 weeks in combination with pegIFN/RBV for a 24 versus 48 weeks. A trial for HIV-infected patients has started enrollment in the second half of 2011.

BI 201335

BI201335 is a HCV NS3 PI given once daily currently in phase III. The phase IIb SILEN-C1 trial was conducted in patients with HCV genotype 1 naïve to HCV treatment to evaluate safety and efficacy of BI 201335 given once daily at a dose of 120 mg or 240 mg for 24 weeks in combination with pegIFN and RBV for 24 vs 48 weeks.[14] A lead-in of pegIFN and RBV for 3 days was also evaluated in 2 of the 4 arms (with 120 mg and 240 mg once daily). In the two arms using BI 201335 at a dose of 240 mg (with and without a lead-in), patients achieving eRVR were rerandomized to either stop treatment at week 24 or continue with pegIFN/RBV for a total of 48 weeks. Patients receiving 240 mg once daily without a lead-in achieved the highest eRVR rate of 87% and were thus eligible for shortened treatment duration. As expected with this high eRVR rate, this arm also had the highest SVR rate of 83% versus 73% of patients receiving 240 mg with a lead-in and 56% of patients in the pegIFN/RBV control group. Prolonging treatment to 48 weeks in those patients achieving eRVR did not result in higher SVR rates. Of those who completed 24 weeks, 93% achieved SVR versus 90% of those who completed 48 weeks. Viral breakthroughs occurred in 2.8 to 5.8% of patients receiving BI 201335 with the highest rate in those of the 120 mg daily with lead-in arm.

The phase IIb SILEN-C2 trial evaluated BI 201335 for 24 weeks in combination with pegIFN/RBV for 24 versus 48 weeks, with or without a 3-day lead-in of pegIFN/RBV in previous partial and null responders infected with HCV genotype 1.[19] The 240 mg once-daily dose (with and without a lead-in) was compared with 240 mg twice daily with a lead-in. Patients of the 240 mg once-daily group with lead-in achieving eRVR were rerandomized to stopping therapy or continuing 48 weeks with pegIFN/RBV. Similar to the SILEN-C1 trial, the lead-in did not appear to be useful. The 240 mg once-daily dosing without a lead-in led to the highest SVR rates. Overall, eRVR was achieved by 45% of patients and SVR was achieved by 27 to 41% of patients. The lowest SVR rate was observed in the 240 mg once daily with the lead-in arm, the one group that used RGT for those achieving eRVR. In comparison to the good results observed with 24 weeks of treatment in the naïve patients achieving eRVR in the SILEN-C1 trial,[14] prior partial and null responders achieving eRVR in SILEN-C2 achieved lower SVR rates when stopped at week 24. Only 40% of patients achieved SVR when stopped at week 24 compared with 72% of those who completed 48 weeks of treatment. The additional 24 weeks of peg/RBV greatly impacted the relapse rate. Sixty percent of those who stopped at week 24 relapsed compared with 21% of those who completed 48 weeks of treatment. Viral breakthroughs occurred predominantly on BI 201335 compared with peg/RBV (17–28% vs 5–7%). Several adverse events were reported in a higher proportion of patients receiving BI 201335 compared with those on placebo and were dose-dependent. Jaundice, skin manifestations including rash, photosensitivity reactions, pruritus and dry skin, and gastrointestinal side effects, mostly nausea, vomiting, and diarrhea were reported in the BI 201335 arms in a proportion exceeding 10% of the placebo/peg/RBV group. Jaundice was secondary to predominantly indirect or unconjugated hyperbilirubinemia. This was dose-dependent, rapidly reversible in all cases at cessation of BI 201335, and not associated with liver injury. The mechanism of action is inhibition of hepatic uptake of uridine diphosphate glucuronosyltransferase 1 family polypeptide A1 (UGT1A1).[20]

ACH-0141625 (ACH-1625)

ACH-1625 is an inhibitor of the HCV NS3 protease. ACH-1625 exhibits rapid and selective distribution to the liver and has high liver/plasma ratios. In phase Ib, 5 days of ACH-1625 monotherapy at doses ranging from 200 to 600 mg twice daily or 400 to 600 mg once daily led to mean maximal reductions in HCV RNA ranging from 3.1 log10 to 4.25 log10.[21]

This PI is currently in phase IIa of clinical development to evaluate its safety, tolerability, and antiviral activity in combination with pegIFN and RBV in patients with HCV genotype 1 naïve to treatment. This study has two segments. Segment 1 compares three different dosages of ACH-1625, 200 mg, 400 mg, and 800 mg once daily with placebo in combination with pegIFN/RBV for 28 days followed by pegIFN/RBV for a total duration of 48 weeks in 64 patients with HCV genotype 1. Segment 2 compares the same three dosing regimens to placebo for 12 weeks followed by 36 weeks of pegIFN/RBV. Week 4 results of Segment 1 showed achievement of rapid virologic response (RVR) in 74 to 81% of patients compared with 20% of patients receiving placebo/pegIFN/RBV. Reductions in HCV RNA on ACH-1625 ranged from 4.63 log10 to 4.96 log10 IU/mL after 4 weeks of triple therapy compared with 2.25 log10 IU/mL with placebo/pegIFN/RBV. It is worth noting that the majority of the patients enrolled were carriers of the unfavorable IL28B CT or TT genotypes and infected with HCV genotype 1a. The safety profile was comparable between all groups. No viral breakthroughs were observed during the first 4 weeks.

Danoprevir (RG7227/ITMN-191)

Danoprevir is a potent macrocyclic inhibitor of the HCV NS3/4A serine protease. In phase 1b studies in treatment naïve patients with HCV genotype 1, administration of danoprevir for 14 days was associated with a maximal median reduction of HCV RNA of 3.8 log10 in monotherapy and 5.7 log10 IU/mL in combination therapy with pegIFN and RBV.[22] In subsequent studies, danoprevir was boosted by ritonavir, a strong inhibitor of the CYP3A4 enzyme. A phase 1b study evaluated multiple ascending doses of ritonavir-boosted danoprevir in combination with pegIFN/RBV in 30 patients with HCV genotype 1 naïve to treatment.[23] More patients using boosted danoprevir (72%, 18/25 and 100%, 8/8 in the group receiving danoprevir 200 mg/ritonavir 100 mg twice daily) achieved undetectable HCV RNA (<15 IU/mL) at day 15 compared with patients who had previously received high-dose unboosted danoprevir (14%, 1/7) or placebo (20%, 1/5). This boosting allowed the use of a significantly lower dose of danoprevir, resulting in lower area under the curve (AUC) and maximum concentration (Cmax) of danoprevir. This reduced systemic exposure can improve the safety profile and reduce the probability of grade 4 ALT elevations, which had been seen with unboosted danoprevir at a dose of 900 mg twice daily.[24] Danoprevir/ritonavir is now being evaluated in several phase II clinical trials. A randomized, open-label study is evaluating SVR of danoprevir/ritonavir in combination with pegIFN/RBV in treatment of naïve patients with HCV genotype 1. Week 12 results of a substudy of 24 prior null responders treated with open-label danoprevir/ritonavir 100 mg/100 mg twice daily with pegIFN and RBV were recently presented.[25] Patients received 12 weeks of triple therapy after which they continued on pegIFN/RBV for a total of 48 weeks. At week 12, results showed a significant disparity between patients with HCV genotype 1a versus 1b. Fifty percent (50%) of patients with HCV genotype 1a achieved EVR versus 88% of those with HCV genotype 1b. Four of the eight patients with HCV genotype 1a experienced viral breakthrough with selection of the R155K mutation compared with 6% of patients with HCV genotype 1b.

A randomized open-label phase II study is evaluating SVR with danoprevir/ritonavir and RBV in combination with mericitabine (RG7128), a polymerase inhibitor, and/or pegIFN in patients with HCV genotype 1 who failed previous standard therapies. In this study, the six study arms contain RBV, but two of the six study arms are pegIFN-free.

A second phase II study, INFORM-SVR, is recruiting patients to evaluate the combination of danoprevir/ritonavir plus mericitabine with and without RBV in patients with HCV genotype 1. This is a pegIFN-free trial. In two arms, interferon-naïve patients will receive danoprevir 100 mg/ritonavir 100 mg twice daily with mericitabine 1000 mg twice daily with or without RBV for 12 weeks or 24 weeks. The third arm will enroll interferon-unable/intolerant patients who will receive an open-label combination of danoprevir/ritonavir/mericitabine plus RBV for 24 weeks. The combination of danoprevir/ritonavir with mericitabine looks promising and results of these phase II trials are awaited.

BMS-650032

One of the most important results, if not the most important, in the study of DAAs in the year 2011 was the result of the phase IIa study evaluating quadruple therapy with the PI BMS-650032 (600 mg twice daily) and BMS-790052 (an HCV NS5A replication complex inhibitor; 60 mg once daily) with and without pegIFN/RBV for 24 weeks in patients with HCV genotype 1 who were prior null responders to IFN-based therapy.[26] Prior null responders are typically the most difficult-to-retreat patient population. In this study four (36%) of the 11 null responders who received BMS-650032 and BMS-790052 alone for 24 weeks achieved SVR. This result is proof of the concept that HCV can be cured without pegIFN/RBV. Of the 11 patients in this arm, six had a viral breakthrough and resistant variants to both drugs were detected.[27] In four of these six, HCV RNA became undetectable when pegIFN/RBV was added at the time of viral breakthrough. All 10 patients who received the quadruple therapy were cured. There was 100% SVR12 and 90% SVR24 (one patient had SVR12, detectable HCV RNA 6 months posttreatment and undetectable HCV RNA when retested later on). These two DAAs are currently being evaluated in a phase IIb study in combination with pegIFN lambda (BMS-914143) with and without ribavirin for 24 weeks in patients with chronic HCV genotype 1 naïve to treatment. This study also compares the use of a single DAA (either BMS-650032 or BMS-790052) with RBV and either pegIFN-lambda or pegIFN-alfa. It will be very interesting to learn the role of RBV when these two DAAs are combined with pegIFN.

GS-9451 and GS-9256

GS-9451 is a potent macrocyclic HCV NS3 PI that achieved a median maximal change in HCV RNA of 3.6 log10 IU/mL (range, -4.7 log10 to -3.1 log10 IU/mL) following 3-day monotherapy in treatment-naïve patients with HCV genotype 1 infection during phase I.[28] It is currently being evaluated in phase II studies in combination with other DAAs. A phase IIb study with RGT will evaluate the efficacy and safety of 16 and 24 weeks of a four-drug regimen with GS-9451 and tegobuvir (a nonnucleoside HCV polymerase inhibitor) and 24 weeks of a three-drug regimen of GS-9451 without tegobuvir, all with pegIFN and RBV. Other phase II studies evaluating different DAA combinations that include the NS5A inhibitor GS-5885 are ongoing.

GS-9451 has additive to synergistic antiviral activity when combined with pegIFN, RBV, NS5A inhibitors, or polymerase inhibitors. Although a PI, GS-9451 retains activity against V36M and T54S, two NS3 mutations. However, R155K, A156T, and D168V are cross-resistant to GS-9451. The NS3 resistance mutations selected during treatment with GS-9451 are fully susceptible to other HCV inhibitor classes.[29] This supports its use in combination with other DAAs of the company's pipeline. A new study evaluating a four all-oral drug regimen is currently recruiting patients. In this study, GS-9451 is administered with GS-5885 (a NS5A inhibitor given at two different dosages), tegobuvir, and RBV for 12 or 24 weeks in patients with chronic HCV genotype 1 infection. This type of combination could completely revolutionize HCV treatment if found potent and well tolerated.

GS-9256 is also a potent PI that was being evaluated until recently. Preliminary results of the phase II study evaluating GS-9256 in combination with tegobuvir ± RBV and ± pegIFN for 28 days have been presented.[28] With the three oral drugs, 38% achieved RVR, 100% then achieved complete early virologic response (cEVR; undetectable HCV RNA at week 12) and maintained undetectability at week 24. With four drugs, 100% achieved RVR and were still undetectable at week 24. Without RBV and pegIFN, GS-9256 and tegobuvir led to RVR in only 7% of patients (1/15). Of these 15 patients, 12 achieved cEVR following the addition of pegIFN/RBV. All combinations were well tolerated. It was decided that GS-9256 would not be further developed, in part due to its higher potential to inhibit the transport and metabolism of bilirubin compared with GS-9451.[30]

Nucleoside and Nucleotide NS5B Polymerase Inhibitors

The nucleoside and nucleotide analog inhibitors of the HCV polymerase target the catalytic site of the enzyme. When they incorporate in the RNA chain in lieu of the natural substrate, they cause RNA chain termination. Nucleoside analogs must be phosphorylated three times by cellular kinases to become active as the triphosphate form. Nucleotide analogs are already in the active form. Because the NS5B target is highly conserved between HCV genotypes, polymerase inhibitors usually have pangenotypic activity (Fig. 1).

756591-fig1

Figure 1. Characteristics of the five classes of direct-acting antivirals (DAAs). *Varies with the generation. **Palm II are effective against multiple genotypes. (DAA, direct acting antiviral; NS3/4A, nonstructural 3/4A protein; PI, protease inhibitor; NS5A, nonstructural 5A protein; NS5B, nonstructural 5B protein; Nuc, nucleoside.)

PSI-352938 (PSI-938)

PSI-938 is a purine (guanosine) nucleotide analog polymerase inhibitor of HCV. In earlier phases of development, PSI-938 was shown to have pangenotypic coverage, high liver to plasma ratios, residual activity against S282T variants (substitution selected by and associated with resistance to the 2'-methyl nucleosides), and low risk of drug-drug interactions. The 14-day results of a phase II study, the NUCLEAR study, were recently presented.[31] The NUCLEAR study compared different combinations of once daily PSI-938 plus PSI-7977 (a second polymerase inhibitor) to PSI-938 monotherapy for 14 days in treatment naïve patients with HCV genotype 1. It is the first to evaluate the combination of two nucleotide analogs for the treatment of HCV infection. Of the 24 patients who received combination treatment, 22 (92%) achieved HCV RNA <15 IU after 14 days of treatment. The two drugs are known to have complementary resistant profiles and not surprisingly, no viral breakthroughs were observed. Treatment was well tolerated. An interferon-free combination trial of PSI-938 and PSI-7977, the QUANTUM trial, has been initiated. PSI-938 was granted the fast track designation by the FDA for treatment of chronic HCV infection in August 2011.

PSI-7977

PSI-7977 is a pyrimidine (uridine) nucleotide analog active against all HCV genotypes. The dramatic results of the phase 2b study PROTON assessing safety and efficacy of PSI-7977 in combination with pegIFN/RBV against HCV genotypes 2 and 3 were presented earlier in 2011.[32] PROTON enrolled 25 treatment-naïve patients. One patient was lost to follow-up early in the study. Among the 24 patients who completed 12 weeks of triple therapy, 24 (100%) achieved SVR. These results suggest that therapy can be significantly shortened in patients infected with HCV genotypes 2 and 3 without compromising the chances of response. A phase II study in patients with HCV genotype 2 and 3 is ongoing to explore the use of PSI-7977 in monotherapy for 12 weeks versus PSI-7977 in combination with peg/RBV for 8 weeks.

Nonnucleoside NS5B Polymerase Inhibitors

Whereas the nucleoside inhibitors bind to the polymerase's active site, the nonnucleoside inhibitors bind to allosteric sites of the enzyme. This induces conformational changes that downregulate the polymerase's activity. Different binding sites disposed in a right hand motif with the thumb (thumb 1 and thumb 2), finger and palm (palm 1 and palm 2) domains are potential targets of nonnucleoside inhibitors. As a result of different target sites, mechanism of inhibition, and potency differences, nonnucleoside inhibitors have a low genetic barrier to resistance compared with nucleoside/nucleotide analogs (Fig. 1).[33]

SETROBUVIR (ANA598)

Setrobuvir (ANA598) is a potent nonnucleoside inhibitor and the most advanced in development. In a phase II combination study with pegIFN and RBV, 72% of patients achieved undetectable HCV RNA at week 8.[34] It is currently in a phase IIb study for the treatment of chronic HCV infection. In this ongoing study, 133 patients naïve to HCV treatment and 141 previously treated patients (n = 133) have been enrolled to receive setrobuvir 200 mg twice daily in combination with pegIFN/RBV. Patients naïve to HCV treatment with undetectable HCV RNA at week 8 and at subsequent visits will complete treatment at week 28 (RGT). Previously treated patients will receive 48 weeks of treatment. Future trials combining ANA598 with DAAs of different classes will likely offer the best SVR results.

Nonstructural Protein 5A (NS5A) Replication Complex Inhibitors

Inhibitors of NS5A block viral production at an early stage of assembly. The exact mechanism of action of the NS5A protein is unknown.[35] Without having an enzymatic function, this multifunctional protein is essential for replication and assembly of HCV and has no human homologs.[36,37]

DACLATASVIR (BMS-790052)

BMS-790052 is the first NS5A inhibitor with proof-of-concept in the clinic. The results of the first placebo-controlled, multiple ascending-dose clinical study evaluate its antiviral activity, resistance profile, pharmacokinetics, safety, and tolerability in 30 patients with chronic HCV infection infected with HCV genotype 1 were recently published.[38] Its pharmacokinetic profile supports once-daily dosing and the drug was well tolerated. Patients received BMS-790052 for 14 days. The mean maximum decline from baseline in HCV RNA ranged from 2.8 to 4.1 log10 IU/mL. Most patients experienced viral rebound during the first 7 days of BMS-790052 monotherapy. Viral breakthroughs were associated with mutations that had been previously found in the NS5A at baseline and at the time of resistance development.[39,40]

Cyclophilin Inhibitors

Cyclophilin inhibitors are derived from cyclosporine A, but lack calcineurin-binding properties and thus do not exhibit immunosuppressive effects.[41,42] Alisporivir (Debio 025) is the first-in-class cyclophilin inhibitor that recently initiated a phase III trial. It binds to cyclophilin A, an essential cofactor for HCV replication and shows additive antiviral effect with pegIFN in patients with genotype 1 and 4 HCV.[41] Cyclophilin inhibitors are sometimes referred to as host-targeted agents, but can also be part of the DAAs because they are known to interact with the NS5A protein.

In a phase II study of patients with HCV genotype 1, 2, 3, and 4 naïve to HCV treatment, alisporivir doses of 200, 600, and 1,000 mg/day in combination with pegIFN for 4 weeks were compared with monotherapy with alisporivir 1,000 mg/day or pegIFN.[42] In patients with genotypes 1 and 4, the 600- and 1,000-mg combination treatments reduced HCV RNA by up to 4.61 ( ± 1.88) log10 IU/ml and 4.75 (±2.19) log10 IU/mL at week 4, respectively. In patients with genotypes 2 and 3, HCV RNA levels were reduced by -5.91 (±1.11) log10 IU/mL and -5.89 (±0.43) log10 IU/mL at week 4, respectively, with the same treatment regimens. Alisporivir 1000 mg/day was associated with a higher incidence of isolated hyperbilirubinemia. SVR results of the phase II ESSENTIAL study were recently presented.[43] Alisporivir (600 mg twice daily during one week followed by once-daily dosing) with pegIFN/RBV led to SVR in 76% of patients taking the triple therapy for 48 weeks compared with 55% of the control group (P = .008). Triple therapy with alisporivir for 24 weeks was as effective as pegIFN/RBV dual therapy for 48 weeks with 53% SVR compared with 55%, respectively. In the RGT arm in which patients could stop triple therapy at week 24 if they achieved RVR, the SVR rate was 69%. Alisporivir demonstrates a high barrier to resistance and interestingly, the resistance mutation identified with its use (D320E) is mainly located in the NS5A domain II. Recent findings indicate that alisporivir inhibits hepatitis C virus replication by preventing a cyclophilin A induced cis-trans isomerization in domain II of NS5A.[44] Metabolism is through cytochrome P450 3A4, which can compromise its ability to be given concomitantly with substrates, inhibitors, or inducers of this cytochrome. Cyclophilin inhibitors could be part of a potent DAA combination in patients not taking concomitant P450 3A4 medications.

Conclusion

After many years of little or no progress in the development of HCV DAAs, 2011 was a watershed year for several reasons. The most clinically significant development was the approval of boceprevir and telaprevir for the treatment of HCV genotype 1. That will revolutionize the treatment of HCV in the clinic and change the landscape of HCV treatment forever because of the dramatically increased SVR demonstrated by both drugs. The Berlin EASL meeting in March of 2011 showcased some equally dramatic and positive results of drugs in development. Among many huge advances in the field, we saw the first 100% SVR for pegIFN/RBV plus PSI-7977 for HCV genotypes 2 and 3, with a shortened course of treatment. The most revolutionary results were revealed by the combination of the PI BMS-650032 and the NS5A inhibitor BMS-790052. In previous null responders to interferon treated with quadruple therapy consisting of a PI, a NS5A inhibitor, pegIFN and RBV, 100% SVR was achieved. This alone would merit a special mention, but the truly groundbreaking results were in the other arm of the study, which combined only the PI and the NS5A compound without pegIFN/RBV. In that arm, an SVR of 36% was achieved demonstrating for first time ever, an interferon-free, RBV-free cure of HCV.

Not only did we have the first FDA, European Medicines Agency (EMEA), and Canadian approvals for the PIs telaprevir and boceprevir in 2011, but we saw the proof of principle that the Holy Grail of HCV therapy is achievable; SVR without interferon. There are dozens of new drugs in clinical development now and many will fall by the wayside, but there are clearly enough that will be approved to reassure us that the future is very bright indeed for DAA treatment of HCV.

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