Showing posts with label BMS-650032. Show all posts
Showing posts with label BMS-650032. Show all posts

April 19, 2012

EASL 2012: All-Oral Hepatitis C Virus Treatment with Bristol-Myers Squibb’s Investigational Compounds Daclatasvir and Asunaprevir Achieved Sustained Virologic Response in 77% of Difficult-to-Treat Patients

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April 19, 2012 12:00 PM Eastern Daylight Time

  • Dual oral therapy data demonstrates SVR24 in genotype 1b difficult-to-treat patients, including null responders and patients medically ineligible or intolerant to alfa and ribavirin
  • Study confirms the sentinel cohort data reported at AASLD in 2011
  • Data presented at The International Liver Congress in Barcelona

PRINCETON, N.J.--(BUSINESS WIRE)--Bristol-Myers Squibb Company (NYSE: BMY) today announced results from a Phase II study in which treatment with an all-oral, dual direct-acting antiviral (DAA) regimen of daclatasvir, an investigational NS5A replication complex inhibitor, and asunaprevir, an investigational NS3 protease inhibitor, achieved undetectable viral load 24 weeks post-treatment (SVR24) in 77% (33/43) of difficult-to-treat genotype 1b hepatitis C (HCV) patients. Difficult-to-treat patients in this study included null responders, or patients who had previously not responded to treatment with peginterferon alfa and ribavirin (alfa/RBV), and patients who were medically ineligible or intolerant to previous treatment with alfa/RBV. In this study, serious adverse events (SAE) included three patients with fever (pyrexia), one with hypochondriasis, and one with hyperbilirubinemia which led to treatment discontinuation. The study findings, presented in an oral session at the International Liver Congress (ILC), the 47th annual meeting of the European Association for the Study of the Liver (EASL) in Barcelona, Spain, confirmed the previously announced sentinel cohort data.

“Currently there are no treatments available for hepatitis C genotype 1 that can be administered without the concurrent use of alfa and ribavirin, which gives rise to a serious unmet need for patients who are ineligible or intolerant to alfa/ribavirin,” said principal investigator Fumitaka Suzuki, Toranomon Hospital, Tokyo, Japan. “The results of this Phase II study with Bristol-Myers Squibb’s daclatasvir and asunaprevir are encouraging as we study potential hepatitis C therapies for this difficult-to-treat patient population.”

Study Results

The primary endpoint of the study was the proportion of patients with sustained virologic response 12-weeks following treatment (SVR12). In this study, the patents were divided into two treatment groups: Group A consisted of 21 genotype 1b prior null responders and Group B consisted of 22 genotype 1b patients medically ineligible for alfa/RBV or with prior intolerance to alfa/RBV. Overall, 77% (33/43) of patients achieved SVR12 and maintained virologic response through follow-up to SVR24. SVR24 was achieved by 91% (19/21) of patients in Group A and 64% (14/22) of patients in Group B. Of the 43 patients enrolled in the study, 39 completed 24 weeks of treatment. In this study, 94% (33/35) patients who achieved SVR4 remained undetectable SVR24, and 100% (33/33) of patients who achieved SVR12 remained undetectable at SVR24.

Viral breakthrough was observed in 7.0% (3/43) of patients and post-treatment relapse was observed in 9.3% (4/43) of patients in the study. All occurrences of viral breakthrough and post-treatment relapse took place in the alfa/RBV ineligible/intolerant arm. There were no viral breakthroughs and no post-treatment relapses in prior null responders.

Serious adverse events occurred in five patients. Three patients experienced Grade 2/3 fever (pyrexia), one patient developed Grade 2 hypochondriasis, and one patient developed Grade 4 elevated bilirubin levels (hyperbilirubinemia) that led to study discontinuation at week 2. There were three additional discontinuations due to adverse events: two transaminase elevations at weeks 12 and 16 and one lymphopenia at week 52 (off-study) in a patient with alfa/RBV added at week six. The most commonly reported on-treatment adverse events occurring in at least three patients were headache (14/43), nasopharyngitis (14/43), liver enzyme increases (12/43 ALT increase and 10/43 AST increase), diarrhea (Grade 1, 11/43), and fever (pyrexia, 8/43). There were no deaths in this study and no clinically relevant changes in electrocardiogram parameters.

About the Study

In this Phase II open-label clinical trial (AI447-017), an expanded cohort of 43 Japanese patients with chronic HCV genotype 1b infection with null response to prior alfa/RBV treatment (reduction in HCV RNA <2 log10 IU/mL with 12 weeks of alfa/RBV therapy) or patients ineligible for or intolerant to treatment with alfa/RBV were treated with daclatasvir 60 mg once daily and asunaprevir 200 mg twice daily, for 24 weeks. (Asunaprevir was initially dosed 600 mg twice daily in sentinel cohort of 10 null responders.) The primary efficacy endpoint was the proportion of patients with undetectable viral load (HCV RNA < 15 IU/mL) at 12 weeks post-treatment (SVR12). Patients were followed to 24 weeks post-treatment (SVR24).

About Bristol-Myers Squibb’s Commitment to Liver Disease

Bristol-Myers Squibb is studying a portfolio of compounds that aim to address unmet medical needs across the liver disease continuum, including hepatitis C, hepatitis B and liver cancer. The Company’s hepatitis C pipeline includes a portfolio of compounds with different mechanisms of action, pursuing both biologics as well as small molecule antivirals. These compounds are being studied as part of multiple novel treatment regimens with the goal of increasing SVR rates across diverse patient types and geographies. Discovered by Bristol-Myers Squibb through a genomics approach, daclatasvir, also known as BMS-790052, is the first NS5A replication complex inhibitor to be investigated in hepatitis C clinical trials and is currently in Phase III development. Asunaprevir, also known as BMS-650032, is an NS3 protease inhibitor in Phase III development for hepatitis C.

About Hepatitis C

Hepatitis C is a virus that infects the liver and is transmitted through direct contact with infected blood and blood products. An estimated 170 million people worldwide are infected with hepatitis C, with genotype 1 being the most prevalent genotype. Up to 90 percent of those infected with hepatitis C will not clear the virus and will become chronically infected. Twenty percent of people with chronic hepatitis C will develop cirrhosis and, of those, up to 25 percent may progress to liver cancer. Although there is no vaccine to prevent hepatitis C, it is a potentially curable disease.

About Bristol-Myers Squibb

Bristol-Myers Squibb is a global biopharmaceutical company whose mission is to discover, develop and deliver innovative medicines that help patients prevail over serious diseases. For more information, please visit http://www.bms.com or follow us on Twitter at http://twitter.com/bmsnews.

Bristol-Myers Squibb Forward Looking Statement

This press release contains "forward-looking statements" as that term is defined in the Private Securities Litigation Reform Act of 1995 regarding the research, development and commercialization of pharmaceutical products. Such forward-looking statements are based on current expectations and involve inherent risks and uncertainties, including factors that could delay, divert or change any of them, and could cause actual outcomes and results to differ materially from current expectations. No forward-looking statement can be guaranteed. Among other risks, there can be no guarantee that the compounds described in this release will move from exploratory development into full product development, that the clinical trials of these compounds will support regulatory filings, or that the compounds will receive regulatory approvals or, if approved, that they will become commercially successful products. Forward-looking statements in this press release should be evaluated together with the many uncertainties that affect Bristol-Myers Squibb's business, particularly those identified in the cautionary factors discussion in Bristol-Myers Squibb's Annual Report on Form 10-K for the year ended December 31, 2011, in our Quarterly Reports on Form 10-Q and our Current Reports on Form 8-K. Bristol-Myers Squibb undertakes no obligation to publicly update any forward-looking statement, whether as a result of new information, future events or otherwise.

Contacts

Bristol-Myers Squibb
Media:
Cristi Barnett, 609-252-6028
cristi.barnett@bms.com
or
Investors:
John Elicker, 609-252-4611
john.elicker@bms.com

Source

February 29, 2012

New Antivirals Show Promise for an Interferon-free Hepatitis C Treatment

From Journal Watch > Journal Watch Gastroenterology

Atif Zaman, MD, MPH

Posted: 02/28/2012; Journal Watch © 2012 Massachusetts Medical Society

Abstract and Introduction
Abstract

Patients with HCV genotype 1 and previous null response achieved a The current generation of direct acting antivirals (DAAs), telaprevir and boceprevir, in combination with peginterferon and ribavirin (PEG/RBV) have demonstrated limited efficacy in patients with hepatitis C virus (HCV) genotype 1 infection who have experienced a previous null response to PEG/RBV. Sustained virologic response (SVR) has been approximately 30%, with associated high rates of resistance. Now, researchers have explored the efficacy of two next-generation DAAs with and without PEG/RBV in this patient population.

This phase IIa, industry-sponsored, randomized study involved 21 patients with previous null response to PEG/RBV (defined as <2 log HCV RNA drop from baseline at 12 weeks). Eleven patients received 60 mg daily of daclatasvir (an NS5A replication complex inhibitor) and 600 mg twice daily of asunaprevir (an NS3 protease inhibitor) for 24 weeks (DAA-only group). Ten patients received both DAAs and PEG/RBV for 24 weeks (DAA+PEG/RBV group). Of note, 90% of the study cohort had IL28B genotypes CT or TT, which respond poorly to PEG/RBV. The primary endpoint was SVR at 12 weeks after stopping therapy.

The SVR in the DAA-only group was 36% (2 of 9 with genotype 1a and 2 of 2 with genotype 1b). Six patients, all with genotype 1a, had viral breakthrough that was associated with viral resistance mutations to both DAAs. Alternately, the SVR in the DAA+PEG/RBV group was 100% (90% with genotype 1a) at 12 weeks after therapy and 90% at 24 weeks. Most adverse events were mild to moderate and included diarrhea, fatigue, headache, and nausea.

Comment

These findings provide early evidence that the next generation of DAAs is more potent than the current generation in treating HCV genotype 1 infection. In this cohort of the most difficult-to-treat HCV patients — previous null responders with genotype 1 infection — a 24-week SVR of 90% was achieved after 24 weeks of quadruple therapy (2 DAAs and PEG/RBV). Even an interferon-free regimen of the 2 DAAs resulted in an SVR of 36%. Results are eagerly anticipated from the phase III trial currently under way.

References

  • Lok AS et al. Preliminary study of two antiviral agents for hepatitis C genotype 1. N Engl J Med 2012 Jan 19; 366:216.
  • Chung RT. A watershed moment in the treatment of hepatitis C. N Engl J Med 2012 Jan 19; 366:273.

Source

February 23, 2012

Cure for Hepatitis C in two years (?)

Written by RTN Reporter

Thursday, 23 February 2012

A NEW combination of investigational drugs that successfully suppress the genotype 1 infection of Hepatitis C, the most difficult to treat, could become a reality within the next two years. In Spain, the virus affects around 800,000 people, causing cirrhosis and also cancer of the liver.

Dr. Jacob George, Professor of Gastroenterology and Hepatic Medicine at the University of Sydney in Australia, announced the findings at the Conference of the Asian Pacific Association for the Study of Liver Diseases, held in Taipei (Taiwan), promising results from a phase II study published in The New England Journal of Medicine.

Patients in whom treatment was not effective exclusively with PEG-interferon alfa and ribavirin were given a combination of two antiviral agents (daclatasvir and asunaprevir), eradicating the virus from the blood in "all patients who participated in the trial." The infection commonly occurs through needles; surgical practices; transfusions or transplants performed without correct hygiene measures. It may also be the result of unhygienic tattooing or piercing.

Source

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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Source

February 6, 2012

New Study of Interferon-free HCV Therapy Hailed as 'Watershed Moment' in Hep C Research

02-05031205IFN-free_300

Gastroenterology & Endoscopy News

ISSUE: FEBRUARY 2012 | VOLUME: 63:2

SVR Achieved With Two Direct-acting Antivirals in Absence of Interferon in Small Study

A combination therapy including two investigational direct-acting antiviral agents (DAAs)—asunaprevir and daclatasvir—suppressed hepatitis C virus (HCV) genotype 1 infection in a majority of patients who had previously not responded to treatment, according to results from a small Phase II study published in the Jan. 19 issue of The New England Journal of Medicine (Lok AS et al. 2012;366:216-224).

Success rates were 100% in patients who received the drugs in combination with peginterferon alfa-2a (Peg-IFN) and ribavirin (RBV).

And, most notably, even in patients who received daclatasvir and asunaprevir without Peg-IFN and RBV, sustained virologic response (SVR) was achieved in 36% of patients, making this the first published study to show that SVR can be achieved with an IFN-free treatment in previous null responders.

“The response in some patients to the combination of daclatasvir and asunaprevir alone showed proof-of-concept that a sustained virologic response can be achieved without peginterferon and ribavirin therapy,” concluded the research team, led by Anna S. Lok, MD, professor of internal medicine in the Division of Gastroenterology, University of Michigan Medical School, Ann Arbor.

In an editorial accompanying the study, Raymond T. Chung, MD, director of hepatology and medical director of the liver transplant program at Massachusetts General Hospital, Boston, called the study a “watershed moment in the annals of HCV therapy.

“It shows that sustained virologic response can be achieved without interferon. Implicit in this finding is the concept that two potent agents with complementary resistance profiles, given for a sufficient duration, can impose a stranglehold on viral replication and result in clearance of the virus.”

In this Phase II study, 10 patients received the experimental drugs in combination with Peg-IFN and RBV for 24 weeks. All 10 patients had undetectable viral loads at the end of treatment and at 12 weeks after stopping treatment. Nine patients continued to exhibit SVR at 48 weeks after treatment, whereas one patient had HCV RNA of less than 25 IU/mL at post-treatment week 48 and undetectable HCV RNA 13 days later.

In a separate arm of the study, 11 patients received asunaprevir and daclatasvir alone, without the addition of Peg-IFN and RBV.

Of these, four patients (36%) achieved an SVR at 12 and 24 weeks after treatment. Six patients (55%) had viral breakthrough during treatment, with resistance mutations to both antiviral agents. Breakthroughs occurred as early as treatment week 3 and as late as treatment week 12.

Although only one-third of the patients given the two-drug combination without Peg-IFN and RBV achieved an SVR, investigators and other hepatologists say the finding is “very promising.”

“For years, the concept of IFN-free therapy was hotly debated. Now, we’re very quickly moving toward IFN-free therapy. It’s potentially just around the corner,” said Donald M. Jensen, MD, professor of medicine and director of the Center for Liver Diseases, University of Chicago Medical Center.

“For patients who can wait, they might just have to wait a few more years until IFN-free therapy is on the market,” he said.

Daclatasvir is a first-in-class, highly selective HCV NS5A replication complex inhibitor that has shown picomolar potency in vitro. Asunaprevir is a highly active HCV NS3 protease inhibitor. Both drugs produce robust declines in HCV RNA levels in patients with HCV genotype 1 infection and, taken in combination, there is no clinically meaningful pharmacokinetic interaction.

Hepatologists say that treatment of HCV infection is entering a new era, highlighted by combinations of second-generation DAAs. As more DAAs are developed with non-overlapping resistance profiles, they may reduce dependence on treatment with IFN.

“These data are very encouraging because peginterferon-alfa and ribavirin are associated with many side effects and many patients with hepatitis C choose not to receive treatment for fear that they cannot tolerate those drugs,” said Dr. Lok, in a statement.

The participants in Dr. Lok’s study had previously failed to respond to Peg-IFN and RBV treatment, meaning they represent a difficult-to-treat population with poor expected outcomes. Previous null responders typically do not respond to retreatment with Peg-IFN and RBV and also tend to have a poor response to triple-combination therapy with Peg-IFN and RBV plus a protease inhibitor.

This combination of new DAAs, if supported by larger studies, could help the large number of patients who have not responded to previous treatment.

“Because of this high unmet medical need, there is a necessity for new combination regimens that can increase response rates in that population,” said Dr. Lok.

Study Details

In the current study, investigators screened 56 patients and ultimately enrolled 21 patients in an exploratory cohort to assess the safety and antiviral activity of the new DAAs. All patients were between the ages of 18 and 70 years, had a chronic HCV genotype 1 infection with an HCV RNA level of 105 IU/mL or higher, showed no evidence of cirrhosis and exhibited no response to previous HCV therapy. Of these patients, 90% had interleukin 28B (IL28B) genotype CT or TT, both of which are associated with poor response to Peg-IFN and RBV, and most patients had HCV genotype 1a infection.

Daclatasvir was administered orally at a dose of 60 mg once daily and asunaprevir at a dose of 600 mg twice daily, with no dose reductions permitted. Ten patients also received Peg-IFN 180 mcg per week, administered subcutaneously, and RBV, administered orally twice daily, with doses determined according to body weight.

Investigators believe that the combination of two DAAs increases the resistance barrier, particularly for patients with HCV genotype 1b infection. In this study, all viral breakthroughs occurred in patients with HCV genotype 1a infection.

This study appears to confirm the results of a recent Japanese study, which showed a high SVR rate among patients with HCV genotype 1b infection in a pilot study of 10 previous non-responders who received combination therapy with asunaprevir and daclatasvir (Chayama K et al. Hepatology 2011 Oct 10; 10.1002/hep.24724 [Epub ahead of print]).

The key benefit of treatment with Peg-IFN and RBV appears to be prevention of viral breakthrough. No patient who received the four-drug combination in the current study experienced a viral breakthrough, whereas six patients in the group that received the DAAs alone had viral breakthroughs. All patients who had a viral breakthrough received and initially responded to Peg-IFN and RBV as rescue therapy. Most ultimately had therapeutic failure.

The high frequency of resistance sends a strong cautionary note about these therapies, said investigators. Future studies of combinations of DAAs without Peg-IFN and RBV in patients with HCV genotype 1a infection should proceed carefully, said the investigators.

But, they added, further research on combinations of DAAs, with or without Peg-IFN and RBV, should be encouraged.

The most common adverse events in this study were diarrhea, fatigue, headache and nausea, which were mild or moderate in all cases. Grade 3 or 4 neutropenia occurred in six patients, all of whom were receiving Peg-IFN and RBV in addition to the two DAAs. No grade 3 or 4 events related to hemoglobin levels or platelet counts were observed.

“This is an exciting study that means care will be better for patients,” said Andrew J. Muir, MD, clinical director of hepatology, Duke University Health System, Durham, N.C., who was not involved with the study.

“For the first time, patients were cured of HCV without interferon-a. Interferon-a has always been the backbone of HCV therapy but has many side effects that make treatment too difficult for many patients.”

Bristol-Myers Squibb, manufacturer of asunaprevir and daclatasvir, funded this study. Dr. Lok has received consulting fees from Abbott Laboratories, Bristol-Myers Squibb and Gilead Sciences, and grant support from Bristol-Myers Squibb, Gilead Sciences, GlaxoSmithKline, Merck–Schering-Plough and Roche. Dr. Muir has received grant support from Bristol-Myers Squibb, Gilead Sciences, Merck–Schering-Plough, Roche and Vertex Pharmaceuticals. Dr. Jensen has served on advisory committees or review panels for Abbott Laboratories, Boehringer Ingelheim, Genentech/Roche, GlobeImmune, Human Genome Sciences, Merck, Pfizer, Pharmasset, Tibotec and Vertex Pharmaceuticals; he has received consulting fees from Abbott Laboratories, Bristol-Myers Squibb, Genentech/Roche and Vertex Pharmaceuticals; and he has received grant/research support from Boehringer Ingelheim, Genentech/Roche, Tibotec and Vertex Pharmaceuticals.

Source

January 24, 2012

Hope for Hepatitis C

Hope-for-Hepatitis-C

Posted by John Staples • January 18th, 2012

Imagine, for a moment, that you recently received a brand new Time-O-Matic Time Machine as a gift. How far back would you have to set the dial to see that meaningful progress has been made in the treatment of hepatitis C?

First, let’s say you set the dial to January 2011 and –- Puff-kachunk! — you’re there. Standard treatment for chronic hepatitis C genotype 1 infection consisted of 48 weeks of pegylated interferon-alpha and ribavirin, an approach more likely to produce adverse effects than clearance of the virus.

Your next trip (Zing-kersplat!) takes you to May 2011. The oral serine protease inhibitors boceprevir and telaprevir have just become available for treatment of chronic HCV genotype 1 infection. When added to pegylated interferon and ribavirin, these direct-acting antivirals dramatically improve the rate of sustained virologic response (SVR). But many patients still do not respond to treatment, and medication intolerance remains an issue. You step into your Time-O-Matic and return to January 2012 feeling somewhat discouraged.

Fortunately, this week’s NEJM might raise your spirits. In it, Dr. Anna S. Lok (University of Michigan, Ann Arbor, MI) and colleagues report on an open-label, phase 2a study that used a combination of two direct-acting antivirals to treat chronic HCV genotype 1 infection. Twenty-one ‘null responders’ (patients who failed to achieve ≥2log10 decline in HCV RNA after ≥12 weeks of peginterferon and ribavirin) were randomized to 24 weeks of treatment in one of two treatment arms:

• Group A received BMS-790052 (an oral, first-in-class, NS5A replication complex inhibitor) and BMS-650032 (an oral NS3 protease inhibitor);
• Group B received BMS-790052 and BMS-650032 plus peginterferon alfa-2a and ribavirin.

Four of eleven (36%) patients in Group A and ten of ten (100%) of patients in Group B achieved an undetectable HCV RNA twelve weeks after completion of study treatment (SVR12, the primary end point). There were no deaths, serious adverse events, or discontinuations. The most common mild-to-moderate adverse effects were diarrhea, fatigue, headache, and nausea.

These results are exciting. The high rate of SVR12 achieved in Group B suggests that more effective treatment regimens may soon be available for null responders. But for editorialist Dr Raymond T. Chung (Massachusetts General Hospital, Boston, MA), it’s the Group A proof-of-concept results that really put HCV therapy “on the threshold of a treatment revolution.” The 36% of Group A patients achieving SVR12 demonstrate that combination direct-acting antivirals with non-overlapping resistance profiles can achieve HCV clearance without the use of interferon. If interferon and its adverse effects can be avoided, there is hope that treatment might be offered and accepted by a much greater number of patients.

“Current HCV treatment regimens are far from perfect,“ says primary care physician and NEJM deputy editor Dr. Mary Beth Hamel, “so it’s satisfying to see encouraging results from this kind of early-phase trial. It will be exciting to see what the future brings.”

Curious? Go ahead. Step into the Time-O-Matic and set the dial to see how far HCV therapy has progressed by January 2017. The rest of us, however, will just have to wait.

Source

January 20, 2012

Four-Drug Therapy Wiped Out Hepatitis C Virus in Most Cases

From Reuters Health Information

By Gene Emery

NEW YORK (Reuters Health) Jan 18 - Combining the experimental oral drugs asunaprevir and daclatasvir with the established treatment of peginterferon alfa-2a and ribavirin eliminated all traces of hepatitis C virus (HCV) in the blood of every volunteer, even after ribavirin-peginterferon alfa-2a treatment had already failed, in small phase II study released online today by the New England Journal of Medicine.

The ten patients treated with all four drugs all had undetectable viral levels 12 weeks after treatment stopped, and nine still had undetectable levels after 24 and 48 weeks.

Another 11 patients received only asunaprevir and daclatasvir, and four of them had a sustained virologic response at 12 and 24 weeks after treatment.

"This is a watershed moment in the annals of HCV therapy because it shows that a sustained virologic response can be achieved without interferon," Dr. Raymond T. Chung of Massachusetts General Hospital wrote in an editorial in the January 19 issue.

Dr. Anna Lok of the University of Michigan and chief author of the study told Reuters Health that the cure rate for the peginterferon/ribavirin regime is low. "It's only 36%. But considering that these are difficult patients to treat, 36% is not too bad," she said.

All 21 patients in the current study had genotype 1 HCV, the most common in the U.S., and all had failed to respond to peginterferon plus ribavirin (i.e., they had not had at least a 2 log10 decline in HCV RNA after at least 12 weeks of treatment).

The response was far better when the four drugs were used. By the end of treatment, at week 24, all 10 patients in that group had undetectable levels of HVC RNA. Forty-eight weeks after the end of therapy, only one had any trace of the virus, and the amount was too small to quantify, according to the researchers.

About 4.1 million people in the United States and 180 million worldwide are infected by hepatitis C, with its associated risk of cirrhosis and liver cancer.

In the randomized phase II study, where patients knew what treatment they were getting, everyone received 600 mg of asunaprevir twice daily and 60 mg of daclatasvir once daily for 24 weeks. Both are made by Bristol-Myers Squibb, which paid for the trial.

Ten of the 21 also got 180 mcg of Pegasys brand peginterferon alfa-2a each week and Copegus brand ribavirin, where the daily dose was 1,000 mg for those weighing less than 75kg and 1,200 mg for those weighing more. Both are Roche products.

After 24 weeks of therapy, all 10 patients getting the four-drug regimen and five of the 11 patients receiving the non-interferon regimen had no trace of virus in their blood.

The six patients in the non-interferon group who had viral breakthrough during the treatment period all had HCV genotype 1a. Another patient in that group had viral recurrence after treatment ended.

By 24 weeks after treatment ended, the virus had returned in one of the 10 getting all four drugs. But that one person was retested 13 days after recurrence and levels of HCV RNA were undetectable, a phenomenon that was seen in other patients, said Dr. Lok. "Because it was not persistent, we believe 100% actually maintained virus clearance all the way to week 48."

"To be able to get to 90% or 100% is very remarkable," she said. "On the other hand, we all know that a lot of patients can't handle interferon and ribavirin because of the side effects. What we hear from the patients is that they hate interferon. They prefer not to get treatment. Everyone is looking for when can we have an interferon-free regimen."

In the new study, the side effects were similar in the two experimental groups. The three most common were diarrhea, fatigue and headache, reported by 45% to 73% of patients. Six patients had transient elevations of alanine aminotransferase to more than 3 times the upper limit of normal. Side effect rates were complicated by the fact six of the 11 volunteers randomized to receive only daclatasvir and asunaprevir received rescue therapy with interferon and ribavirin after a viral breakthrough.

None of the 21 dropped out because of the side effects.

Dr. Lok said 48 weeks of peginterferon and ribavirin usually costs about $40,000. Adding a protease inhibitor as a third drug costs another $50,000, and new biologicals often go for a comparable amount.

The eventual price of the experimental drugs is not known, assuming they are approved.

Thus, a four-drug regimen would add to the cost, Dr. Lok said, but "if this pans out, it's only 24 weeks of treatment. And if you get a cure once and for all, you don't have to worry about managing the complications of cirrhosis, liver transplant, liver cancer down the road."

SOURCE: http://bit.ly/A5JnBy

N Engl J Med 2012; 366:216-224.

Source

Also See:

  1. First Hepatitis C Treatment Data Demonstrating Proof of Principle with Direct-Acting Antiviral-only Therapy Published
  2. Hepatitis C treatment with antivirals is effective: study
  3. Bristol-Myers Hepatitis C Pills Clear Virus Without Interferon
  4. New Combo KOs HCV Without Interferon, Ribavirin
  5. Combination of oral drugs suppresses common type of hepatitis C

January 19, 2012

New Combo KOs HCV Without Interferon, Ribavirin

By Michael Smith, North American Correspondent, MedPage Today
Published: January 18, 2012
Reviewed by Dori F. Zaleznik, MD; Associate Clinical Professor of Medicine, Harvard Medical School, Boston.

A combination of direct-acting antiviral agents aimed at hepatitis C -- and given without standard therapy -- can lead to sustained virologic response in patients with a difficult-to-treat strain of the virus.

In an "exploratory" phase II study, four of 11 patients treated with the two agents daclatasvir and asunaprevir had undetectable levels of the virus 12 and 24 weeks after the end of treatment, according to Anna Lok, MD, of the University of Michigan Ann Arbor, and colleagues.

All of the patients had previously failed standard therapy with pegylated interferon and ribavirin, Lok and colleagues reported in the Jan. 19 issue of the New England Journal of Medicine.

The finding is a "proof-of-concept" that combining agents that directly target the virus through different mechanisms can yield good outcomes even without the standard therapy, the researchers argued.

On the other hand, results were even better in the second arm of the study, in which 10 patients were given all four drugs: all had a sustained virologic response 12 weeks after stopping treatment and nine still had undetectable levels of hepatitis C RNA after 24 weeks.

Sustained virologic response – defined as a plasma level of viral RNA of less than 10 IU per milliliter 12 weeks after treatment ends – is regarded as the functional equivalent of a cure, since the virus rarely rebounds after that.

In clinical trials, standard therapy with pegylated interferon and ribavirin yields sustained virologic responses in no more than half of patients with the difficult to treat genotype 1 and in no more than 80% of those with genotypes 2 or 3.

Adding either of the approved direct-acting agents – telaprevir (Incivek) and boceprevir (Victrelis) – improves those outcomes markedly.

But regimens including pegylated interferon and ribavirin are difficult to take and real-world effectiveness is much lower, leading to a growing interest in other agents that attack viral replication directly and may be used without interferon and ribavirin.

That's why the current study is a "watershed moment" in hepatitis C therapy, according to Raymond Chung, MD, of Massachusetts General Hospital in Boston.

In an accompanying editorial, Chung said that researchers can "certainly" do even better than Lok and colleagues by adding other direct-acting agents into the mix.

With other classes in development – such as nucleotide polymerase inhibitors – "we are on the threshold of a treatment revolution," Chung argued.

"There has never been a more exciting time for patients and providers who grapple with this silent killer," he concluded.

The two drugs under study both attack the viruses' ability to replicate inside cells. Daclatasvir inhibits the NS5A replication complex, while asunaprevir blocks the activity of the NS3 protease enzyme.

For this study, Lok and colleagues enrolled 21 patients with genotype one hepatitis C who had not responded to previous therapy and assigned them randomly to get the two drugs alone or in combination with standard therapy for 24 weeks.

The primary endpoint was a sustained virologic response 12 weeks after therapy ended.

Lok and colleagues reported:

  • Four patients in the two-drug group (36%) met the primary endpoint, including two of the nine with viral genotype 1a and both of those with genotype 1b.
  • Six patients -- all with genotype 1a -- had viral breakthrough while receiving therapy, and in all of them the researchers found resistance mutations to both antiviral agents.
  • All 10 patients in the four-drug group had a sustained virologic response 12 weeks after treatment, and nine maintained that for another 12 weeks.

The most common adverse event in both groups was diarrhea, and six patients had transient elevations of alanine aminotransferase levels to more than three times the upper limit of the normal range.

The study is not the first to find such a result; Japanese researchers have also shown that the two drugs in combination – but without interferon -- can lead to promising outcomes.

But in that open-label, single-arm study, all the patients had genotype 1b virus, which appears to respond better to therapy than genotype 1a.

The study was supported by Bristol-Myers Squibb.

Lok reported financial links with Abbott, Bristol-Myers Squibb, Gilead Sciences, GlaxoSmithKline, Merck–Schering-Plough, and Roche. Other authors also reported financial links with industry and several are either employees of or hold stock in Bristol-Myers Squibb.

Chung reported financial links with Merck, Gilead, Pfizer, Roche, and Schering.

Primary source: New England Journal of Medicine
Source reference:
Lok AS, et al "Preliminary study of two antiviral agents for hepatitis C genotype 1" N Engl J Med 2012; 366: 216-224.

Additional source: New England Journal of Medicine
Source reference:
Chung RT "A watershed moment in the treatment of hepatitis C" N Engl J Med 2012; 366: 273-275.

Source

Also See:

  1. First Hepatitis C Treatment Data Demonstrating Proof of Principle with Direct-Acting Antiviral-only Therapy Published
  2. Hepatitis C treatment with antivirals is effective: study
  3. Bristol-Myers Hepatitis C Pills Clear Virus Without Interferon

January 18, 2012

Bristol-Myers Hepatitis C Pills Clear Virus Without Interferon

January 18, 2012, 6:08 PM EST

By Drew Armstrong and Robert Langreth

Jan. 18 (Bloomberg) -- Two experimental pills from Bristol- Myers Squibb Co. cleared the hepatitis C virus in 36 percent of patients who failed existing drugs, in a small study that may lead to a new oral-therapy approach against the liver disease.

The study released today is the first to suggest that difficult hepatitis C cases may be cured without using the injected drug interferon, said Anna Lok, the lead study author and director of hepatology at the University of Michigan in Ann Arbor. Interferon, a mainstay of existing treatment, causes unpleasant side effects including fatigue and flu-like symptoms.

Drug companies including Bristol-Myers, Merck & Co., Gilead Sciences Inc., and Vertex Pharmaceuticals Inc. are racing to come up with interferon-free treatment. The new results in 21 patients show that such a therapy will be possible, Lok said.

Oral treatments with fewer side effects would vastly increase the number of patients treated, according to an editorial in the New England Journal of Medicine, where the study was published.

“We are on the threshold of a treatment revolution that will greatly improve the effectiveness of HCV therapy,” wrote Raymond Chung, a gastroenternologist at Massachusetts General Hospital in Boston. He called it “a watershed moment in the annals of HCV therapy.”

The study compared Bristol-Myers’s two pills in combination with interferon to the pills alone in 21 hepatitis C patients who weren’t helped by existing therapy. It found that 4 of 11 patients had undetectable virus 24 weeks after treatment with Bristol’s experimental oral drugs daclatasvir and asunaprevir.

Adding injectable drugs, however, boosted the response rate. Results showed that 9 of 10 patients who got the two oral drugs plus interferon and a fourth drug, ribavirin, for 24 weeks had no detectable virus 24 weeks after stopping therapy.

“The combination of drugs we picked may not be the best, and we need to tweak it and find the best combination,” Lok said in a telephone interview from Ann Arbor.

Bristol-Myers, based in New York, sponsored the clinical trial.

--Editors: Angela Zimm, Andrew Pollack

To contact the reporters on this story: Drew Armstrong in New York at darmstrong17@bloomberg.net ; Robert Langreth in New York at rlangreth@bloomberg.net

To contact the editor responsible for this story: Reg Gale at rgale5@bloomberg.net

Source

Also See:

  1. Hepatitis C treatment with antivirals is effective: study
  2. First Hepatitis C Treatment Data Demonstrating Proof of Principle with Direct-Acting Antiviral-only Therapy Published

Hepatitis C treatment with antivirals is effective: study

239073320-18111953

Hepatitis C can be spread through blood and infected needles. (Centers for Disease Control and Prevention)

By Shari Roan, Los Angeles Times / For the Booster Shots blog

January 18, 2012, 2:12 p.m.

A major advance in treating hepatitis C appears to be on the horizon. Researchers reported Wednesday that combining two antiviral medications was effective in stopping the infection in some patients who were not helped by the traditional treatment.

Progress in fighting hepatitis C infection is of high importance because millions of Americans have the virus. However, the standard treatment with the medication interferon, while effective in many people, is linked to severe side effects. "The challenge ... has been to identify regimens that are more effective, shorter, and have a better side-effect profile," said Dr. Raymond T. Chung, director of hepatology at Massachusetts General Hospital.

Hepatitis C is an infectious disease that can cause liver inflammation and damage. It's spread through exposure to infected blood, such as via contaminated needles or through sexual contact.

The new study, published in the New England Journal of Medicine, is a phase-2 trial of 21 people with hepatitis C who had not responded to previous therapy. They were randomly assigned to receive the two antiviral drugs daclatasvir and asunaprevir or those two antivirals with interferon and ribavirin (another drug used to treat hepatitis C infection).

The study showed that virus activity was halted in 36% of the patients receiving only the two antiviral medications over 24 weeks of treatment. Stopping the virus from replicating halts the infection. All but one of the patients in the second group, who were receiving the combination of four medications, showed a positive response to the medication after 24 weeks.

The research, while preliminary, proves that it may be possible to treat hepatitis C infection with antivirals only. Patients with a type of virus called genotype 1b had a particularly strong response to the antivirals. "Overall, these results suggest that further research with combinations of direct-acting antiviral agents, with or without [interferon] and ribavirin, is warranted," wrote the authors, led by Dr. Anna S. Lok, at the University of Michigan Medical Center.

Chung, who wrote a commentary accompanying the study, said: "We are on the threshold of a treatment revolution that will greatly improve the effectiveness of hepatitis C virus therapy by dramatically increasing the number of persons treated."

Studies are underway to further evaluate the effect of combining antiviral medications for hepatitis C treatment.

Source

Also See: First Hepatitis C Treatment Data Demonstrating Proof of Principle with Direct-Acting Antiviral-only Therapy Published