Showing posts with label Sofosbuvir/Simeprevir. Show all posts
Showing posts with label Sofosbuvir/Simeprevir. Show all posts

April 16, 2015

FDA approved changes to the Olysio (simeprevir) package insert to include two new Warnings and Precautions

USFDA_footer

FDA approved changes to the Olysio (simeprevir) package insert to include two new Warnings and Precautions;

  1. serious symptomatic bradycardia when co-administered with sofosbuvir and amiodaron

  2. hepatic decompensation and hepatic failure.

Additional changes to the Indication and Usage, Dosage and Administration, Adverse Reactions, Drug Interactions, Use in Specific Populations and Pharmacokinetic sections of the label were made based on these Warnings and Precautions and are summarized below.

Summary of new WARNINGS AND PRECAUTIONS

5 WARNINGS AND PRECAUTIONS

5.1 Serious Symptomatic Bradycardia When Co-administered with Sofosbuvir and Amiodarone

Postmarketing cases of symptomatic bradycardia and cases requiring pacemaker intervention have been reported when amiodarone is co administered with sofosbuvir in combination with another HCV direct acting antiviral, including OLYSIO. A fatal cardiac arrest was reported in a patient receiving a sofosbuvir-containing regimen (ledipasvir/sofosbuvir). Bradycardia has generally occurred within hours to days, but cases have been observed up to 2 weeks after initiating HCV treatment. Patients also taking beta blockers, or those with underlying cardiac comorbidities and/or advanced liver disease may be at increased risk for symptomatic bradycardia with co administration of amiodarone. Bradycardia generally resolved after discontinuation of HCV treatment. The mechanism for this bradycardia effect is unknown.

Co administration of amiodarone with OLYSIO in combination with sofosbuvir is not recommended. For patients taking amiodarone who have no other alternative treatment options, and who will be co administered OLYSIO and sofosbuvir:

  • Counsel patients about the risk of serious symptomatic bradycardia
  • Cardiac monitoring in an in-patient setting for the first 48 hours of co administration is recommended, after which outpatient or self-monitoring of the heart rate should occur on a daily basis through at least the first 2 weeks of treatment.

Patients who are taking sofosbuvir in combination with OLYSIO who need to start amiodarone therapy due to no other alternative treatment options should undergo similar cardiac monitoring as outlined above.

Due to amiodarone’s long elimination half-life, patients discontinuing amiodarone just prior to starting sofosbuvir in combination with OLYSIO should also undergo similar cardiac monitoring as outlined above.

Patients who develop signs or symptoms of bradycardia should seek medical evaluation immediately. Symptoms may include near-fainting or fainting, dizziness or lightheadedness, malaise, weakness, excessive tiredness, shortness of breath, chest pain, confusion or memory problems [see Adverse Reactions (6.2) and Drug Interactions (7.3)].

5.2 Hepatic Decompensation and Hepatic Failure

Hepatic decompensation and hepatic failure, including fatal cases, have been reported postmarketing in patients treated with OLYSIO in combination with peginterferon alfa and ribavirin or in combination with sofosbuvir. Most cases were reported in patients with advanced and/or decompensated cirrhosis who are at increased risk for hepatic decompensation or hepatic failure. Because these events have been reported voluntarily during clinical practice, estimates of frequency cannot be made and a causal relationship between treatment with OLYSIO and these events has not been established [see Adverse Reactions (6.2)].

OLYSIO is not recommended for patients with moderate or severe hepatic impairment (Child-Pugh Class B or C) [see Dosage and Administration (2.5) and Use in Specific Populations (8.8)].

In clinical trials of OLYSIO, modest increases in bilirubin levels were observed without impacting hepatic function [see Adverse Reactions (6.1)]. Postmarketing cases of hepatic decompensation with markedly elevated bilirubin levels have been reported. Monitor liver chemistry tests before and as clinically indicated during OLYSIO combination therapy. Patients who experience an increase in total bilirubin to greater than 2.5 times the upper limit of normal should be closely monitored:

  • Patients should be instructed to contact their healthcare provider if they have onset of fatigue, weakness, lack of appetite, nausea and vomiting, jaundice or discolored feces.
  • Discontinue OLYSIO if elevation in bilirubin is accompanied by liver transaminase increases or clinical signs and symptoms of hepatic decompensation.

Additional Changes

The Indications and Usage section was updated to state:

Limitations of Use:

  • OLYSIO is not recommended in patients with moderate or severe hepatic impairment (Child Pugh Class B or C) [see Dosage and Administration (2.5), Warnings and Precautions (5.2), Adverse Reactions (6.1, 6.2), Use in Specific Populations (8.8) and Clinical Pharmacology (12.3)].

The Dosage and Administration section was updated as follows:

2 DOSAGE AND ADMINISTRATION

2.1 OLYSIO Combination Treatment

Administer OLYSIO in combination with other antiviral drugs for the treatment of CHC infection. Monitor liver chemistry tests before and during OLYSIO combination therapy [see Warnings and Precautions (5.2)]. OLYSIO monotherapy is not recommended. For specific dosing recommendations for the antiviral drugs used in combination with OLYSIO, refer to their respective prescribing information.

2.5          Hepatic Impairment

OLYSIO is not recommended for patients with moderate or severe hepatic impairment (Child Pugh Class B or C) [see Use in Specific Populations (8.8)]. There have been postmarketing reports of hepatic decompensation, hepatic failure, and death in patients with advanced or decompensated cirrhosis receiving OLYSIO combination therapy [see Warnings and Precautions (5.2) and Adverse Reactions (6.2)]. Simeprevir exposures are increased in patients with moderate or severe hepatic impairment (Child-Pugh Class B or C) [see Clinical Pharmacology (12.3)].

In clinical trials, higher simeprevir exposures have been associated with increased frequency of adverse reactions, including increased bilirubin, rash and photosensitivity [see Adverse Reactions (6.1)].

OLYSIO in combination with Peg IFN alfa and RBV is contraindicated in patients with decompensated cirrhosis (moderate or severe hepatic impairment) [see Peg IFN alfa prescribing information].

The Adverse Reactions section was updated as follows:

6 ADVERSE REACTIONS

Laboratory abnormalities

Elevations in bilirubin were predominately mild to moderate (Grade 1 or 2) in severity, and included elevation of both direct and indirect bilirubin. Elevations in bilirubin occurred early after treatment initiation, peaking by study Week 2, and were rapidly reversible upon cessation of OLYSIO. Bilirubin elevations were generally not associated with elevations in liver transaminases. The frequency of elevated bilirubin was higher in subjects with higher simeprevir exposures.

6.2  Postmarketing Experience

The following adverse reactions have been reported during post approval use of OLYSIO. Because postmarketing reactions are reported voluntarily from a population of uncertain size, it is not possible to reliably estimate their frequency or establish a causal relationship between drug exposure and these adverse reactions.

Cardiac Disorders: Serious symptomatic bradycardia has been reported in patients taking amiodarone who initiate treatment with sofosbuvir in combination with another HCV direct acting antiviral, including OLYSIO [see Warnings and Precautions (5.1) and Drug Interactions (7.3)].

Hepatobiliary Ddisorders: hepatic decompensation, hepatic failure [see Warnings and Precautions (5.2)].

Section 7 Drug Interactions was updated to include revisions to the antiarrhythmic section.

Table 6: Established and Other Potentially Significant Drug Interactions: Alterations in Dose or Regimen May be Recommended Based on Drug Interaction Studies or Predicted Interaction

Concomitant Drug

Class

Drug Name

Effect on Concentration of Simeprevir or Concomitant Drug

Clinical Comment

Antiarrhythmics

Amiodarone

Effect on amiodarone, simeprevir, and sofosbuvir concentrations unknown

 

Co‑administration of amiodarone with OLYSIO in combination with sofosbuvir is not recommended because it may result in serious symptomatic bradycardia. The mechanism of this effect is unknown. If co‑administration is required, cardiac monitoring is recommended [see Warnings and Precautions (5.1), Adverse Reactions (6.2)].

­ amiodarone

Caution is warranted and therapeutic drug monitoring of amiodarone, if available, is recommended for concomitant use of amiodarone with an OLYSIO-containing regimen that does not contain sofosbuvir.

Concomitant use of OLYSIO with amiodarone when given orally may result in mild increases in amiodarone concentrations due to intestinal CYP3A4 inhibition by simeprevir.

 

Section 8 Use in Specific Populations was updated as follows:

8 USE IN SPECIFIC POPULATIONS

8.8 Hepatic Impairment

No dose adjustment of OLYSIO is required in patients with mild hepatic impairment (Child Pugh Class A) [see Clinical Pharmacology (12.3)].

The safety and efficacy of OLYSIO have not been established in HCV infected patients with moderate or severe hepatic impairment (Child Pugh Class B or C).

OLYSIO is not recommended for patients with moderate or severe hepatic impairment (Child Pugh Class B or C) [see Dosage and Administration (2.5)]. There have been postmarketing reports of hepatic decompensation, hepatic failure, and death in patients with advanced or decompensated cirrhosis receiving OLYSIO combination therapy [see Warnings and Precautions (5.2) and Adverse Reactions (6.2)]. Simeprevir exposures are increased in patients with moderate or severe hepatic impairment (Child Pugh Class B or C) [see Clinical Pharmacology (12.3)]. In clinical trials, higher simeprevir exposures have been associated with increased frequency of adverse reactions, including increased bilirubin, rash and photosensitivity [see Adverse Reactions (6.1)].

Refer to the prescribing information for the antiviral drug(s) used in combination with OLYSIO regarding their use in patients with hepatic impairment. The combination of OLYSIO with Peg IFN alfa and RBV is contraindicated in patients with decompensated cirrhosis (moderate or severe hepatic impairment).

Section 12.3 Pharmacokinetics included the following updates:

12.3 Pharmacokinetics

Specific Populations

Hepatic Impairment

Simeprevir is primarily metabolized by the liver. Compared to HCV uninfected subjects with normal hepatic function, the mean steady state AUC of simeprevir was 2.4 fold higher in HCV uninfected subjects with moderate hepatic impairment (Child Pugh Class B) and 5.2 fold higher in HCV uninfected subjects with severe hepatic impairment (Child Pugh Class C).

No dose adjustment of OLYSIO is necessary in patients with mild hepatic impairment (Child Pugh Class A).

The safety and efficacy of OLYSIO have not been established in HCV infected patients with moderate or severe hepatic impairment (Child Pugh Class B or C).

OLYSIO is not recommended for use in patients with moderate or severe hepatic impairment (Child Pugh Class B or C) [see Dosage and Administration (2.5), Warnings and Precautions (5.2) and Use in Specific Populations (8.8)].

In clinical trials, higher simeprevir exposures have been associated with increased frequency of adverse reactions, including increased bilirubin, rash and photosensitivity [see Adverse Reactions (6.1)].

Based on a population pharmacokinetic analysis of HCV infected subjects with mild hepatic impairment (Child-Pugh Class A) treated with OLYSIO, liver fibrosis stage did not have a clinically relevant effect on the pharmacokinetics of simeprevir.

Refer to the prescribing information for the antiviral drugs used in combination with OLYSIO regarding their use in patients with hepatic impairment.

Drug Interactions

[See also Warnings and Precautions (5.67) and Drug Interactions (7)]

In vitro studies indicated that simeprevir is a substrate and mild inhibitor of CYP3A. Simeprevir does not affect CYP2C9, CYP2C19 or CYP2D6 in vivo. Simeprevir does not induce CYP1A2 or CYP3A4 in vitro. In vivo, simeprevir mildly inhibits the CYP1A2 activity and intestinal CYP3A4 activity, while it does not affect hepatic CYP3A4 activity. Simeprevir is not a clinically relevant inhibitor of cathepsin A enzyme activity.

In vitro, simeprevir is a substrate for P gp, MRP2, BCRP, OATP1B1/3 and OATP2B1; simeprevir inhibits the uptake transporters OATP1B1/3 and NTCP and the efflux transporters P gp/MDR1, MRP2 and BSEP. The inhibitory effects of simeprevir on the bilirubin transporters OATP1B1/3 and MRP2 likely contribute to clinical observations of elevated bilirubin [see Adverse Reactions (6.1)].

The updated product label will be available soon at DailyMed or at Drugs@FDA.

Richard Klein
Office of Health and Constituent Affairs
Food and Drug Administration

Kimberly Struble
Division of Antiviral Drug Products
Food and Drug Administration

Steve Morin
Office of Health and Constituent Affairs
Food and Drug Administration

April 9, 2015

Janssen Highlights Hepatitis C Virus Development Programme at The International Liver Congress™ 2015 of the European Association for the Study of the Liver (EASL)

bwlogo_web

Presentations include late-breaking final results from the Phase 3 OPTIMIST trials and interim results from the Phase 2 IMPACT trial of simeprevir

FOR IMMEDIATE RELEASE

FOR MEDICAL AND TRADE MEDIA ONLY

April 09, 2015 04:00 AM Eastern Daylight Time

CORK, Ireland--(BUSINESS WIRE)--Janssen Sciences Ireland UC, one of the Janssen Pharmaceutical Companies of Johnson & Johnson (Janssen), today announced that clinical data for simeprevir, its NS3/4A protease inhibitor for the treatment of hepatitis C virus (HCV) infection, will be presented at The International Liver Congress™ 2015 of the European Association for the Study of the Liver (EASL) taking place in Vienna from April 22-26. Early-stage data on the investigational nucleotide analog polymerase inhibitors AL-335 and AL-516, which were recently obtained through Janssen’s acquisition of Alios BioPharma, will also be presented.

“We are delighted to present additional data for simeprevir in combination with other currently available therapeutic options alongside early-stage data for our nucleotide portfolio.”

Several key presentations will report on the efficacy and tolerability of simeprevir in interferon-free combination regimens in Phase 2, Phase 3 and real-world clinical settings.

“Hepatitis C remains a serious health problem. The breadth of data we are presenting at The International Liver Congress™ reinforces our commitment to reducing the significant burden of this infectious disease around the world,” said Gaston Picchio, hepatitis disease area leader, Janssen. “Janssen has an extensive and ongoing clinical trial programme for hepatitis C, including confirmatory and new exploratory studies, and we look forward to sharing these results. We remain focused on investigating alternative and more immediate treatment options for patients with a high unmet need.”

A total of 14 company-sponsored abstracts supporting Janssen’s marketed and investigational therapies for HCV will be presented, including three abstracts on simeprevir accepted as late-breaking presentations. The scope and rigor of these data underscore Janssen’s commitment to being a positive catalyst in the fight against this serious public health threat.

“These data highlight the strength of our commitment to advancing research in the area of viral hepatitis,” said Lawrence M. Blatt, Ph.D., global head therapeutics, Janssen Infectious Diseases and Vaccines, and president and chief executive officer of Alios BioPharma. “We are delighted to present additional data for simeprevir in combination with other currently available therapeutic options alongside early-stage data for our nucleotide portfolio.”

Studies on Janssen’s HCV portfolio to be presented at The International Liver Congress™ 2015 include:

Late-Breaking Poster Presentations

All posters will be displayed electronically from Thursday 23 April, 07:30 to Saturday 25 April, 20:00 in Hall B.

  • A Phase 3, randomised, open-label study to evaluate the efficacy and safety of 12 and 8 weeks of simeprevir (SMV) plus sofosbuvir (SOF) in treatment-naïve and -experienced patients with chronic HCV genotype 1 infection without cirrhosis: The OPTIMIST-1 study1
    • Abstract LP14
    • Lead Author: P. Kwo; Division of Gastroenterology and Hepatology, Department of Medicine, Indiana University, Indianapolis, IN, USA
  • A Phase 3, open-label, single-arm study to evaluate the efficacy and safety of 12 weeks of simeprevir (SMV) plus sofosbuvir (SOF) in treatment-naïve or -experienced patients with chronic HCV genotype 1 infection and cirrhosis: The OPTIMIST-2 study2
    • Abstract LP04
    • Lead Author: E. Lawitz; Texas Liver Institute, University of Texas Health Science Center, San Antonio, TX, USA
  • Simeprevir (SMV) plus daclatasvir (DCV) and sofosbuvir (SOF) in treatment-naïve and -experienced patients with chronic hepatitis C virus genotype 1 or 4 infection and decompensated liver disease: Interim results from the Phase 2 IMPACT study1
    • Abstract LP07
    • Lead Author: E. Lawitz; Texas Liver Institute, University of Texas Health Science Center, San Antonio, TX, USA

Oral Presentation

  • On-treatment virologic response and tolerability of simeprevir, daclatasvir and ribavirin in patients with recurrent hepatitis C virus genotype 1b infection after orthotopic liver transplantation (OLT): Interim data from the Phase 2 SATURN Study1
    • Abstract 0004: Thursday 23 April, 16:45 – 17:00, Hall D
    • Lead Author: X. Forns; Liver Unit, Hospital Clinic, Barcelona, Spain

Poster Presentations

All posters will be displayed electronically from Thursday 23 April, 07:30 to Saturday 25 April, 20:00 in Hall B.

  • Significant drug-drug interaction between simeprevir and cyclosporine A but not tacrolimus in patients with recurrent chronic HCV infection after orthotopic liver transplantation: The SATURN study1
    • Abstract P0834
    • Lead Author: S. Ouwerkerk-Mahadevan; Janssen Research & Development, Beerse, Belgium
  • Deep sequencing analyses in HCV genotype 1-infected patients treated with simeprevir plus sofosbuvir with/without ribavirin in the COSMOS study6
    • Abstract P0780
    • Lead Author: B. Fevery; Janssen Infectious Diseases BVBA, Beerse, Belgium
  • Effectiveness of simeprevir (SMV)-containing regimens among patients with chronic hepatitis C virus (HCV) in various U.S. practice settings: Interim analysis of the SONET study7
    • Abstract P0826
    • Lead Author: I. Alam; Austin Hepatitis Center, Austin, TX, USA
  • Study protocol for a partly randomised, open-label Phase 2a trial of once-daily simeprevir combined with sofosbuvir for the treatment of HCV genotype 4-infected patients with or without cirrhosis (OSIRIS)8
    • Abstract P1346
    • Lead Author: M. El Raziky, Departments of Pediatrics, Cairo University, Cairo, Egypt
  • Baseline factors associated with increased SVR rates in 123 treatment-naïve chronic HCV genotype 1 patients treated with a shortened 12-week simeprevir plus pegylated interferon and ribavirin regimen: A multivariate analysis9
    • Abstract P0792
    • Lead Author: T. Asselah, Beaujon Hospital, University of Paris, France
  • Clinical characteristics and outcomes of chronic hepatitis C (CHC) patients treated with newer direct-acting antiviral (DAA)-based regimens from a large U.S. payer perspective10
    • Abstract P0852
    • Lead Author: N. Tandon; Janssen Scientific Affairs, LLC, Titusville, NJ, USA
  • A descriptive analysis of a real-world population with chronic hepatitis C (CHC) treated with simeprevir (SMV)-and/or sofosbuvir (SOF)-based regimens: Findings from a U.S. payer database11
    • Abstract P0827
    • Lead Author: J.B. Forlenza; Janssen Scientific Affairs, LLC, Titusville, NJ, USA
  • Real world effectiveness and cost of simeprevir- and/or sofosbuvir-based HCV treatments: $175,000 per SVR1212
    • Abstract P0881
    • Lead Author: K. Bichoupan; Division of Liver Diseases, Icahn School of Medicine at the Mount Sinai Medical Center, New York, NY, USA

Alios BioPharma Poster Presentations

  • Derisking the potential for mitochondrial toxicity of nucleoside analogs13
    • Abstract P0679
    • Lead author: Z. Jin; Alios BioPharma, San Francisco, CA, USA
  • Preclinical characterization of AL-335, a potent uridine based nucleoside polymerase inhibitor for the treatment of chronic hepatitis C14
    • Abstract P0682
    • Lead Author: H. Tan; Alios BioPharma, San Francisco, CA, USA

Full session details and data presentation listings for The International Liver Congress™ 2015 can be found at http://www.ilc-congress.eu.

About Hepatitis C

Hepatitis C, a blood-borne infectious disease of the liver and a leading cause of chronic liver disease, is a major global public health concern. Approximately 170 million people are infected with hepatitis C worldwide15 and 350,000 people per year die from the disease globally16 with 86,000 deaths in the European region each year.17 When left untreated, hepatitis C can cause significant damage to the liver, including cirrhosis. Additionally, hepatitis C may increase the risk of developing complications from cirrhosis, which may include liver failure.18

About Janssen’s HCV Development Programme

The goal of the Janssen HCV clinical development programme is to provide physicians with multiple treatment options in order to offer patients the best possible chance at successful therapy.

Ongoing studies focus on the investigation of the NS3/4A protease inhibitor simeprevir in a number of different treatment combinations and HCV patient populations, including those who are difficult to cure.

Janssen’s HCV pipeline also includes JNJ-56914845, an investigational NS5A replication complex inhibitor currently in Phase 2 studies, and following the acquisition of Alios BioPharma by Johnson & Johnson in November 2014, AL-335, a uridine based nucleotide analog in Phase 1 development, and AL-516, a guanosine based nucleotide analog NS5B polymerase inhibitor in pre-clinical development.

These compounds are being developed with the express intent of targeting critical steps of the hepatitis C virus replication cycle.

About Simeprevir (OLYSIO®)

Simeprevir is an NS3/4A protease inhibitor which has been developed by Janssen Sciences Ireland UC in collaboration with Medivir AB.

In November 2013, simeprevir was approved by the U.S. Food & Drug Administration and, in May 2014, it was granted marketing authorisation by the European Commission. Subsequent marketing authorisations have followed in several other countries around the world. Indications vary by market.

Janssen is responsible for the global clinical development of simeprevir and has exclusive,worldwide marketing rights, except in the Nordic countries. Medivir AB retains marketing rights for simeprevir in these countries under the marketing authorisation held by Janssen-Cilag International NV.

About Janssen Pharmaceutical Companies of Johnson & Johnson

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 R&D Ireland 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 regarding product development. 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 known or unknown risks or uncertainties materialize, actual results could vary materially from the expectations and projections of Janssen R&D Ireland and/or Johnson & Johnson. Risks and uncertainties include, but are not limited to: challenges and uncertainties inherent in new product development, including the uncertainty of clinical success and of obtaining regulatory approvals; competition, including technological advances, new products and patents attained by competitors; challenges to patents; changes to applicable laws and regulations, including global health care reforms; and trends toward health care cost containment. A further list and description of these risks, uncertainties and other factors can be found in Johnson & Johnson's Annual Report on Form 10-K for the fiscal year ended December 28, 2014, including in Exhibit 99 thereto, and the company's subsequent filings with the Securities and Exchange Commission. Copies of these filings are available online at www.sec.gov, www.jnj.com or on request from Johnson & Johnson. None of the Janssen Pharmaceutical Companies or Johnson & Johnson undertakes to update any forward-looking statement as a result of new information or future events or developments.

References

1 P Kwo et al. The OPTIMIST-1 study, abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

2 Lawitz M et al. The OPTIMIST-2 study, abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

3 Lawitz M et al. The IMPACT study, abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

4 Forns X et al. The SATURN study, abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

5 Ouwerkerk-Mahadevan, S et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

6 Fevery, B et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

7 Alam, I et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

8 El Raziky, M et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

9 Asselah, T et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

10 Tandon, M et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

11 Forlenza, J.B. et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

12 Bichoupan, K et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

13 Jin, Z et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

14 Tan, H et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

15 World Health Organisation, Hepatitis C. Available at: http://www.who.int/csr/disease/hepatitis/Hepc.pdf Last accessed April 2015.

16 World Health Organisation. Hepatitis C. Fact sheet N. 164. Available at: http://www.who.int/mediacentre/factsheets/fs164/en/. Last accessed April 2015.

17 Muhlberger M et al. HCV-related burden of disease in Europe: a systematic assessment of incidence, prevalence, morbidity, and mortality. BMC Public Health 2009;9:34.

April 2015
PHGB/HEP/

Contacts

Janssen
Media Contact: Ronan Collins
Mobile: +47 (0) 488 425 00
or
Media Contact: Hans Vanavermaete
Mobile: +32 (0) 478 44 72 78
or
Investor Contact: Lesley Fishman
Office: +1 (732) 524 2524
or
Investor Contact: Louise Mehrotra
Office: +1 (732) 524-6491

Source

April 2, 2014

Two phase III trials evaluating once-daily Simeprevir and Sofosbuvir in hepatitis C infected patients have been initiated

logga-top-enkel-se

Stockholm, Sweden — Medivir AB (OMX: MVIR) today announces that two phase III trials are recruiting patients to examine the efficacy and safety of the NS3/4A protease inhibitor simeprevir in combination with the nucleotide inhibitor sofosbuvir for the treatment of chronic genotype 1 hepatitis C virus (HCV) infection in treatment-naïve and treatment-experienced patients with and without cirrhosis.

“Positive safety and efficacy results have previously been demonstrated in genotype 1 HCV infected patients with the interferon- and ribavirin free combination of simeprevir and sofosbuvir in the phase II COSMOS study. The OPTIMIST trials aim to further consolidate these data and to explore a shorter treatment duration of eight weeks to potentially further simplify this promising treatment option,” says Charlotte Edenius, EVP Development, Medivir AB

Study design
OPTIMIST-1

The first trial, called OPTIMIST-1 or TMC435HPC3017, is a phase III, open-label, randomized study investigating the efficacy and safety of simeprevir 150 mg in combination with sofosbuvir 400 mg.
The combination will be administered once daily for 8 or 12 weeks in chronic HCV genotype 1 infected patients without cirrhosis who are HCV treatment naïve or treatment experienced. This study will enroll approximately 300 patients in the U.S. and Canada.

OPTIMIST-2
The second trial, called OPTIMIST-2 or TMC435HPC3018, is a phase III, open-label, single-arm study investigating the efficacy and safety of simeprevir 150 mg in combination with sofosbuvir 400 mg.
The combination will be administered once daily for 12 weeks in HCV genotype 1 infected patients with cirrhosis who are HCV treatment naïve or treatment experienced. This study will enroll approximately 100 patients in the U.S. and Canada.

Ribavirin will not be administered in the OPTIMIST trials. The primary efficacy endpoint in each study is the proportion of patients achieving sustained virologic response 12 weeks after the end of treatment (SVR12).

For additional information, including inclusion and exclusion criteria for these trials, please visit www.clinicaltrials.gov

COSMOS study
The combination of simeprevir and sofosbuvir was previously evaluated in the phase II COSMOS trial.
The final cohort 1 study results (SVR12) in patients without fibrosis or cirrhosis (METAVIR score of F0-2) and the interim cohort 2 study results (SVR4) in patients with fibrosis or cirrhosis (METAVIR score of F3-4) from the COSMOS study were presented at the American Association for the Study of Liver Diseases (AASLD) Annual Meeting 2013 in Washington, D.C.

Final cohort 2 results (SVR12) have been accepted for presentation at the European Association for the Study of the Liver (EASL) International Liver Congress 2014 on April 12.

For more information please contact:
Rein Piir, EVP Corporate Affairs & IR, mobile: +46 708 537 292

Medivir is required under the Securities Markets Act to make the information in this press release public. The information was submitted for publication at 13.00 CET on 2 April 2014.

About Simeprevir
Simeprevir is an NS3/4A protease inhibitor jointly developed by Janssen R&D Ireland and Medivir AB and indicated for the treatment chronic hepatitis C infection in combination with pegylated interferon and ribavirin in HCV genotype 1 and 4 infected patients with compensated liver disease, including cirrhosis.

Janssen is responsible for the global clinical development of simeprevir and has exclusive, worldwide marketing rights, except in the Nordic countries. Medivir AB will retain marketing rights for simeprevir in these countries under the marketing authorization held by Janssen-Cilag International NV. The treatment was approved for the treatment of genotype 1 hepatitis C in September 2013 in Japan and in November 2013 in Canada and the U.S. and in March 2014 in Russia. The Committee for Medicinal Products for Human Use (CHMP) recently recommended Marketing Authorisation in the European Union for the use of Simeprevir in combination with other medicinal products for the treatment of chronic hepatitis C (CHC) in adult patients. An approval is expected during Q2-2014.

About Medivir
Medivir is an emerging research-based pharmaceutical company focused on 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 simeprevir, a novel protease inhibitor for the treatment of hepatitis C that is being developed in collaboration with Janssen R&D Ireland. The company is also working with research and development in other areas, such as bone disorders and neuropathic pain. Medivir has also a broad product portfolio with prescription pharmaceuticals in the Nordics.

Source

March 28, 2014

Cost analysis of sofosbuvir/ribavirin versus sofosbuvir/simeprevir for genotype 1 HCV in interferon ineligible/intolerant individuals

Hepatology

Accepted Article (Accepted, unedited articles published online and citable. The final edited and typeset version of record will appear in future.)

Viral Hepatitis

Liesl M. Hagan1,*, Mark S. Sulkowski2 and Raymond F. Schinazi1

DOI: 10.1002/hep.27151

Copyright © 2014 American Association for the Study of Liver Diseases

Keywords: Olysio; Sovaldi; direct-acting antiviral agent; interferon-free

Abstract

Background: Treatment guidance for chronic hepatitis C (CHC) released by the American Association for the Study of Liver Diseases (AASLD) and the Infectious Diseases Society of America (IDSA) offer two options for interferon-ineligible/intolerant individuals with genotype 1 infection: sofosbuvir/ribavirin (SOF/RBV) for 24 weeks, or sofosbuvir/simeprevir (SOF/SMV) for 12 weeks. A 24-week course of SOF/RBV costs approximately US$169,000, with sustained virologic response (SVR) rates ranging from 52-84%; 12 weeks of SOF/SMV costs approximately $150,000, with SVR between 89% and 100%. Because SOF/SMV is currently used off-label, debate exists among physicians and payers about whether it should be prescribed and covered. This paper presents a cost-effectiveness analysis of these two treatment regimens accounting for costs of drugs, treatment-related medical care, re-treatment for individuals who do not achieve SVR, and natural history of continued HCV infection after failed re-treatment. The model uses a lifetime horizon and a societal perspective. Results: In the base case scenario, SOF/SMV dominated SOF/RBV in a modeled 50-year-old cohort of treatment-naïve and treatment-experienced subjects, excluding those who failed prior therapy with telaprevir or boceprevir. SOF/SMV yielded lower costs and more quality-adjusted life years (QALYs) for the average subject compared to SOF/RBV ($165,336 and 14.69 QALYs vs. $243,586 and 14.45 QALYs, respectively). In base case cost-analysis, the SOF/SMV treatment strategy saved $91,590 per SVR compared to SOF/RBV. Under all one-way sensitivity scenarios, SOF/SMV remained dominant and resulted in cost savings. Conclusions: These results suggest that a 12-week course of SOF/SMV is a more cost-effective treatment for genotype 1 CHC than 24 weeks of SOF/RBV among interferon-ineligible/intolerant individuals, supporting the AASLD/IDSA guidance and offering implications for both clinical and regulatory decision-making as well as pharmaceutical pricing. (Hepatology 2014;)

Source

March 16, 2014

Hepatitis C virus: Here comes all-oral treatment

doi: 10.3949/ccjm.81a.13155 Cleveland Clinic Journal of Medicine March 2014 vol. 81 3 159-172

EDUCATIONAL OBJECTIVE: Readers will assimilate direct-acting antiviral drugs into the treatment of patients with chronic hepatitis C virus infection

MOHANNAD DUGUM, MD

ROBERT O’SHEA, MD

+ Author Affiliations

ADDRESS: Robert O’Shea, MD, Department of Gastroenterology and Hepatology, Digestive Disease Institute, Cleveland Clinic, 9500 Euclid Avenue/A30, Cleveland, OH 44195; e-mail: oshear@ccf.org

Abstract

Treatment for chronic hepatitis C virus (HCV) infection is evolving rapidly. The approval in 2013 of two new direct-acting antivirals—sofosbuvir (a polymerase inhibitor) and simeprevir (a second-generation protease inhibitor)—opens the door for an all-oral regimen, potentially avoiding interferon and its harsh side effects. Other direct-acting antivirals are under development.

Key points

In clinical trials of treatment for chronic HCV infection, regimens that included a direct-acting antiviral agent were more effective than ones that did not.

Sofosbuvir is approved in an oral dose of 400 mg once daily in combination with ribavirin for patients infected with HCV genotype 2 or 3, and in combination with ribavirin and interferon in patients infected with HCV genotype 1 or 4. It is also recommended in combination with ribavirin in HCV-infected patients with hepatocellular carcinoma who are awaiting liver transplantation.

Simeprevir is approved in an oral dose of 150 mg once daily in combination with ribavirin and interferon for patients with HCV genotype 1.

The new drugs are expensive, a potential barrier for many patients. As more direct-acting antiviral agents become available, their cost will likely decrease.

Combinations of direct-acting antiviral agents of different classes may prove even more effective and could eliminate the need for interferon entirely.

In late 2013, the US Food and Drug Administration (FDA) approved sofosbuvir and simeprevir, the newest direct-acting antiviral agents for treating chronic hepatitis C virus (HCV) infection. Multiple clinical trials have demonstrated dramatically improved treatment outcomes with these agents, opening the door to all-oral regimens or interferon-free regimens as the future standard of care for HCV.

See related editorial, page 173

In this article, we discuss the results of the trials that established the efficacy and safety of sofosbuvir and simeprevir and led to their FDA approval. We also summarize the importance of these agents and evaluate other direct-acting antivirals currently in the pipeline for HCV treatment.

HCV IS A RISING PROBLEM

Chronic HCV infection is a major clinical and public health problem, with the estimated number of people infected exceeding 170 million worldwide, including 3.2 million in the United States.1 It is a leading cause of cirrhosis, and its complications include hepatocellular carcinoma and liver failure. Cirrhosis due to HCV remains the leading indication for liver transplantation in the United States, accounting for nearly 40% of liver transplants in adults.2

The clinical impact of HCV will only continue to escalate, and in parallel, so will the cost to society. Models suggest that HCV-related deaths will double between 2010 and 2019, and considering only direct medical costs, the projected financial burden of treating HCV-related disease during this interval is estimated at between $6.5 and $13.6 billion.3

graphic-1

Drugs mentioned in this paper

  • boceprevir (Victrelis)
  • interferon
  • ribavirin (Rebetol, Copegus)
  • simeprevir (Olysio)
  • sofosbuvir (Sovaldi)
  • telaprevir (Incivek)

RNA VIRUS WITH SIX GENOTYPES

HCV, first identified in 1989, is an enveloped, single-stranded RNA flavivirus of the Hepacivirus genus measuring 50 to 60 nm in diameter.4 There are six viral genotypes, with genotype 1 being the most common in the United States and traditionally the most difficult to treat.

Once inside the host cell, the virus releases its RNA strand, which is translated into a single polyprotein of about 3,000 amino acids. This large molecule is then cleaved by proteases into several domains: three structural proteins (C, E1, and E2), a small protein called p7, and six nonstructural proteins (NS2, NS3, NS4A, NS4B, NS5A, and NS5B) (FIGURE 1).5 These nonstructural proteins enable the virus to replicate.

F1_medium

FIGURE 1

GOAL OF TREATING HCV: A SUSTAINED VIROLOGIC RESPONSE

The aim of HCV treatment is to achieve a sustained virologic response, defined as having no detectable viral RNA after completion of antiviral therapy. This is associated with substantially better clinical outcomes, lower rates of liver-related morbidity and all-cause mortality, and stabilization of or even improvement in liver histology.6,7 This end point has traditionally been assessed at 6 months after the end of therapy, but recent data suggest the rates at 12 weeks are essentially equivalent.

T1_medium

Interferon plus ribavirin: The standard of care for many years

HCV treatment has evolved over the past 20 years. Before 2011, the standard of care was a combination of interferon alfa-polyethylene glycol (peg-interferon), given as a weekly injection, and oral ribavirin. Neither drug has specific antiviral activity, and when they are used together they result in a sustained virologic response in fewer than 50% of patients with HCV genotype 1 and, at best, in 70% to 80% of patients with other genotypes.8

Nearly all patients receiving interferon experience side effects, which can be serious. Fatigue and flu-like symptoms are common, and the drug can also cause psychiatric symptoms (including depression or psychosis), weight loss, seizures, peripheral neuropathy, and bone marrow suppression. Ribavirin causes hemolysis and skin complications and is teratogenic.9

An important bit of information to know when using interferon is the patient’s IL28B genotype. This refers to a single-nucleotide polymorphism (C or T) on chromosome 19q13 (rs12979860) upstream of the IL28B gene encoding for interferon lambda-3. It is strongly associated with responsiveness to interferon: patients with the IL28B CC genotype have a much better chance of a sustained virologic response with interferon than do patients with CT or TT.

Boceprevir and telaprevir: First-generation protease inhibitors

In May 2011, the FDA approved the NS3/4A protease inhibitors boceprevir and telaprevir for treating HCV genotype 1, marking the beginning of the era of direct-acting antiviral agents.10 When these drugs are used in combination with peg-interferon alfa and ribavirin, up to 75% of patients with HCV genotype 1 who have had no previous treatment achieve a sustained virologic response.

But despite greatly improving the response rate, these first-generation protease inhibitors have substantial limitations. Twenty-five percent of patients with HCV genotype 1 who have received no previous treatment and 71% of patients who did not respond to previous treatment will not achieve a sustained virologic response with these agents.11 Further, they are effective only against HCV genotype 1, being highly specific for the amino acid target sequence of the NS3 region.

Also, they must be used in combination with interferon alfa and ribavirin because the virus needs to mutate only a little—a few amino-acid substitutions—to gain resistance to them.12 Therefore, patients are still exposed to interferon and ribavirin, with their toxicity. In addition, dysgeusia is seen with boceprevir, rash with telaprevir, and anemia with both.13,14

Finally, serious drug-drug interactions prompted the FDA to impose warnings for the use of these agents with other medications that interact with CYP3A4, the principal enzyme responsible for their metabolism. Thus, these significant adverse effects dampen the enthusiasm of patients contemplating a long course of treatment with these agents.

The need to improve the rate of sustained virologic response, shorten the duration of treatment, avoid serious side effects, improve efficacy in treating patients infected with genotypes other than 1, and, importantly, eliminate the need for interferon alfa and its serious adverse effects have driven the development of new direct-acting antiviral agents, including the two newly FDA-approved drugs, sofosbuvir and simeprevir.

SOFOSBUVIR: A POLYMERASE INHIBITOR

Sofosbuvir is a uridine nucleotide analogue that selectively inhibits the HCV NS5B RNA-dependent RNA polymerase (FIGURE 1). It targets the highly conserved nucleotide-binding pocket of this enzyme and functions as a chain terminator.15 While the protease inhibitors are genotype-dependent, inhibition of the highly conserved viral polymerase has an impact that spans genotypes.

Early clinical trials of sofosbuvir

Sofosbuvir has been tested in combination with interferon alfa and ribavirin, as well as in interferon-free regimens (TABLE 2).1620

T2_medium

Rodriguez-Torres et al,15 in an early double-blind clinical trial, randomized 64 previously untreated patients with HCV genotype 1 to receive one of three doses of oral sofosbuvir (100, 200, or 400 mg) plus interferon and ribavirin or placebo plus interferon and ribavirin for 4 weeks, followed by 44 weeks of interferon and ribavirin alone. The rates of sustained virologic response were:

  • 56% with sofosbuvir 100 mg, peg-interferon, and ribavirin

  • 83% with sofosbuvir 200 mg, peg-interferon, and ribavirin

  • 80% with sofosbuvir 400 mg, peg-interferon, and ribavirin

  • 43% with peg-interferon and ribavirin alone.

The ATOMIC trial16 tested the efficacy and safety of sofosbuvir in combination with peg-interferon and ribavirin in patients with HCV genotype 1, 4, or 6, without cirrhosis, who had not received any previous treatment. Patients with HCV genotype 1 were randomized to three treatments:

  • Sofosbuvir 400 mg orally once daily plus peg-interferon and ribavirin for 12 weeks

  • The same regimen, but for 24 weeks

  • Sofosbuvir plus peg-interferon and ribavirin for 12 weeks, followed by 12 weeks of either sofosbuvir monotherapy or sofosbuvir plus ribavirin.

The rates of sustained virologic response were very high and were not significantly different among the three groups: 89%, 89%, and 87%, respectively. Patients who were able to complete a full course of therapy achieved even higher rates of sustained virologic response, ranging from 96% to 98%. The likelihood of response was not adversely affected by the usual markers of a poorer prognosis, such as a high viral load (≥ 800,000 IU/mL) or a non-CC IL28B genotype. Although patients with cirrhosis (another predictor of no response) were excluded from this study, the presence of bridging fibrosis did not seem to affect the rate of sustained virologic response. The results in patients with genotypes other than 1 were very encouraging, but the small number of patients enrolled precluded drawing firm conclusions in this group.

Important implications of the ATOMIC trial include the following:

There is no benefit in prolonging treatment with sofosbuvir beyond 12 weeks, since adverse events increased without any improvement in the rate of sustained virologic response.

There is a very low likelihood of developing viral resistance or mutation when using sofosbuvir.

There is no role for response-guided therapy, a concept used with protease inhibitor-based regimens in which patients who have complete clearance of the virus within the first 4 weeks of treatment (a rapid virologic response) and remain clear through 12 weeks of treatment (an extended rapid viral response) can be treated for a shorter duration without decreasing the likelihood of a sustained virologic response.

Lawitz et al17 conducted a randomized double-blind phase 2 trial to evaluate the effect of sofosbuvir dosing on response in noncirrhotic, previously untreated patients with HCV genotype 1, 2, or 3. Patients with HCV genotype 1 were randomized to one of three treatment groups in a 2:2:1 ratio: sofosbuvir 200 mg orally once daily, sofosbuvir 400 mg orally once daily, or placebo, all for 12 weeks in combination with peg-interferon (180 μg weekly) and ribavirin in a dosage based on weight. Depending on the viral response, patients continued peg-interferon and ribavirin for an additional 12 weeks if they achieved an extended rapid viral response, or 36 weeks if they did not achieve an extended rapid virologic response, and in all patients who received placebo. Patients with HCV genotype 2 or 3 were given sofosbuvir 400 mg once daily in combination with interferon and ribavirin for 12 weeks.

As in the ATOMIC trial, all patients treated with sofosbuvir had a very rapid reduction in viral load: 98% of patients with genotype 1 developed a rapid virologic response, and therefore almost all were eligible for the shorter treatment course of 24 weeks.17 The latter finding again suggested that response-guided treatment is not relevant with sofosbuvir-based regimens.

Very high rates of sustained virologic response were seen: 90% in patients with genotype 1 treated with sofosbuvir 200 mg, 91% in those with genotype 1 treated with 400 mg, and 92% in those with genotype 2 or 3. Although 6% of patients in the 200-mg group had virologic breakthrough after completing sofosbuvir treatment, no virologic breakthrough was observed in the 400-mg group, suggesting that the 400-mg dose might suppress the virus more effectively.17

The ELECTRON trial18 was a phase 2 study designed to evaluate the efficacy and safety of sofosbuvir and ribavirin in interferon-sparing and interferon-free regimens in patients with HCV genotype 1, 2, or 3 infection. Sofosbuvir was tested with peg-interferon and ribavirin, with ribavirin alone, and as monotherapy in previously untreated patients with genotype 2 or 3. A small number of patients with genotype 1 who were previously untreated and who were previously nonresponders were also treated with sofosbuvir and ribavirin.

All patients had a rapid virologic response, and viral suppression was sustained through the end of treatment. All patients with genotype 2 or 3 treated with double therapy (sofosbuvir and ribavirin) or triple therapy (sofosbuvir, peg-interferon, and ribavirin) achieved a sustained virologic response, compared with only 60% of patients treated with sofosbuvir monotherapy. The monotherapy group had an equal number of relapsers among those with genotype 2 or 3. Of the genotype 1 patients treated with sofosbuvir and ribavirin, 84% of those previously untreated developed a sustained virologic response, whereas only 10% of the previous nonresponders did.

Phase 3 clinical trials of sofosbuvir

The NEUTRINO trial19 studied the efficacy and safety of sofosbuvir in previously untreated patients with HCV genotype 1, 4, 5, or 6. In this phase 3 open-label study, all patients received sofosbuvir plus peg-interferon and weight-based ribavirin therapy for 12 weeks. Of the patients enrolled, 89% had genotype 1, while 9% had genotype 4 and 2% had genotype 5 or 6. Overall, 17% of the patients had cirrhosis.

The viral load rapidly decreased in all patients treated with sofosbuvir irrespective of the HCV genotype, IL28B status, race, or the presence or absence of cirrhosis. Ninety-nine percent of patients with genotype 1, 4, 5, or 6 achieved a rapid virologic response, and 90% achieved a sustained virologic response at 12 weeks after completion of treatment with sofosbuvir and ribavirin. Patients with cirrhosis had a slightly lower rate of sustained virologic response (80%, compared with 92% in patients without cirrhosis). Also, patients with non-CC IL28B genotypes had a lower rate of sustained virologic response (87% in non-CC allele vs 98% in patients with the favorable CC allele).

The FISSION trial19 recruited previously untreated patients with genotype 2 or 3 and randomized them to therapy with either sofosbuvir plus ribavirin in a weight-based dose for 12 weeks, or 24 weeks of interferon and ribavirin. In this study, 20% of patients in each treatment group had cirrhosis.

As in the NEUTRINO trial, the viral load rapidly decreased in all patients treated with sofosbuvir irrespective of HCV genotype, IL28B status, race, or the presence or absence of cirrhosis. Here, 100% of patients with genotype 2 or 3 who were treated with sofosbuvir and ribavirin achieved a rapid virologic response. Differences in outcome emerged based on genotype: 97% of those with genotype 2 and 56% of those with genotype 3 achieved a sustained virologic response. The overall rate was 67%, which was not different from patients treated with peg-interferon and ribavirin. In the subgroup of patients with cirrhosis, 47% of those treated with sofosbuvir and ribavirin achieved a sustained virologic response, vs 38% of those who received peg-interferon plus ribavirin.

In both the NEUTRINO and FISSION trials, few patients discontinued treatment, with higher rates of most adverse events occurring in patients treated with peg-interferon and ribavirin.

POSITRON,20 a phase 3 clinical trial, tested sofosbuvir in patients with HCV genotype 2 or 3 who were ineligible for peg-interferon, unwilling to take peg-interferon, or unable to tolerate peg-interferon (mainly because of clinically significant psychiatric disorders). Patients were randomized to two treatment groups for 12 weeks: sofosbuvir plus ribavirin, or placebo. About 50% of patients had HCV genotype 3, and 16% had cirrhosis.

The overall rate of sustained virologic response at 12 weeks after treatment was 78% in the sofosbuvir-and-ribavirin group (93% in genotype 2 patients and 61% in genotype 3 patients). Again, cirrhosis was associated with a lower rate of sustained virologic response (61% of patients with cirrhosis achieved a sustained virologic response vs 81% of patients without cirrhosis). None of the sofosbuvir-treated patients had virologic failure while on treatment.

FUSION,20 another phase 3 trial, evaluated sofosbuvir in patients infected with HCV genotype 2 or 3 for whom interferon-based treatment had failed. They were randomized to either 12 weeks or 16 weeks of sofosbuvir and weight-based ribavirin treatment. About 60% of patients had HCV genotype 3, and 34% had cirrhosis.

The overall sustained virologic response rate was 50% in the patients treated for 12 weeks and 73% in those treated for 16 weeks: specifically, 86% of patients with genotype 2 achieved a sustained virologic response at 12 weeks and 94% at 16 weeks, whereas in those with genotype 3 the rates were 30% at 12 weeks and 62% at 16 weeks.

Cirrhosis was again a predictor of lack of response to sofosbuvir. In the group treated for 12 weeks, 31% of those with cirrhosis achieved a sustained virologic response compared with 61% in those without cirrhosis. In the group treated for 16 weeks, 61% of those with cirrhosis achieved a sustained virologic response compared with 76% in those without cirrhosis.

In both the POSITRON and FUSION trials, relapse accounted for all treatment failures, and no virologic resistance was detected in patients who did not have a sustained virologic response. The investigators concluded that 12 weeks of treatment with sofosbuvir and ribavirin can be effective for HCV genotype 2 infection, but extending the treatment to 16 weeks may be beneficial for genotype 3. This may be especially important in patients with cirrhosis or those who did not have a response to peg-interferon-based treatment.

VALENCE,21 an ongoing phase 3 trial in Europe, is assessing the safety and efficacy of sofosbuvir 400 mg once daily and weight-based ribavirin in patients with HCV genotype 2 or 3. Eighty-five percent of the trial participants have received previous treatment, and 21% have cirrhosis. Patients were originally randomized in a 4:1 ratio to receive sofosbuvir plus ribavirin for 12 weeks or matching placebo, but as a result of emerging data suggesting that patients with genotype 3 would benefit from more than 12 weeks of treatment, the study was subsequently amended to extend treatment to 24 weeks for patients with genotype 3.

Overall rates of sustained virologic response were 93% in patients with genotype 2 and 85% in patients with genotype 3. In previously treated patients with genotype 2 who were treated for 12 weeks, the rates of sustained virologic response were 91% in those without cirrhosis vs 88% in those with cirrhosis. In previously treated patients with genotype 3, the rates in those treated for 24 weeks were 87% in patients without cirrhosis vs 60% with cirrhosis. The safety profile was consistent with that of ribavirin.

Side effects of sofosbuvir

In clinical trials, side effects occurred most often when sofosbuvir was combined with interferon and ribavirin and were consistent with the known side effects of the latter two agents. The most frequently reported side effects included fatigue, insomnia, nausea, rash, anemia, headache, and arthralgia, with most of these adverse events rated by treating clinicians as being mild in severity.15,20

In the ATOMIC trial, the most common events leading to drug discontinuation were anemia and neutropenia, both associated with interferon and ribavirin. Patients receiving sofosbuvir monotherapy after 12 weeks of triple therapy showed rapid improvement in hemoglobin levels and neutrophil counts, indicating that hematologic abnormalities attributed solely to sofosbuvir are minimal. In the FISSION trial, the incidence of adverse events was consistently lower in those receiving sofosbuvir-ribavirin than in patients receiving interferon-ribavirin without sofosbuvir.19

In the POSITRON trial, discontinuation of sofosbuvir because of adverse events was uncommon, and there were no differences in the incidence of adverse events and laboratory abnormalities between patients with and without cirrhosis when they received sofosbuvir and ribavirin.20

Sofosbuvir dosage and indications

Sofosbuvir is approved in an oral dose of 400 mg once daily in combination with ribavirin for patients infected with HCV genotype 2 or 3 and in combination with ribavirin and interferon alfa in patients infected with HCV genotype 1 or 4 (TABLE 3). It could be considered for HCV genotype 1 in combination with ribavirin alone for 24 weeks in patients who are ineligible for interferon.

T3_medium

Sofosbuvir is also recommended in combination with ribavirin in HCV-infected patients with hepatocellular carcinoma who are awaiting liver transplantation, for up to 48 weeks or until they receive a transplant, to prevent posttransplant reinfection with HCV.

Sofosbuvir is expensive

A course of therapy is expected to cost about $84,000, which is significantly more than the cost of previous triple therapy (peg-interferon, ribavirin, and either boceprevir or telaprevir).22 This high cost will undoubtedly lead to less widespread use in developing countries, and potentially even in the United States. As newer direct-acting antiviral agents become available, the price will likely come down, enhancing access to these drugs.

SIMEPREVIR: A SECOND-GENERATION PROTEASE INHIBITOR

Telaprevir and boceprevir are NS3/A4 protease inhibitors that belong to the alfa-ketoamid derivative class. Simeprevir belongs to the macrocyclic class and has a different way of binding to the target enzyme.23 Like sofosbuvir, simeprevir was recently approved by the FDA for the treatment of HCV genotype 1.

The therapeutic efficacy of simeprevir has been tested in several clinical trials (TABLE 4), including QUEST-124 and QUEST-225 (in previously untreated patients), PROMISE26 (in prior relapsers), and ASPIRE27 (in prior partial and null responders). Results from these trials showed high overall rates of sustained virologic response with triple therapy (ie, simeprevir combined with peg-interferon and ribavirin). It was generally well tolerated, and most adverse events reported during 12 weeks of treatment were of mild to moderate severity.

T4_medium

In QUEST-1 and QUEST-2, both double-blind phase 3 clinical trials, previously untreated patients infected with HCV genotype 1 were randomized in a 2:1 ratio to receive either simeprevir 150 mg daily or placebo for 12 weeks; both groups also received peg-interferon and ribavirin. Patients then received peg-interferon and ribavirin alone for 12 or 36 weeks in the simeprevir group (based on response) and for 36 weeks in the placebo group.

The overall rate of sustained virologic response at 12 weeks was 80% in the simeprevir group (75% in those with genotype 1a and 85% in those with genotype 1b) vs 50% in the placebo group (receiving peg-interferon and ribavirin alone).24,25

PROMISE,26 another double-blind randomized phase 3 clinical trial, evaluated simeprevir in patients with HCV genotype 1 who relapsed after previous interferon-based therapy. It had a similar design to QUEST-1 and QUEST-2, and 15% of all patients had cirrhosis.

The overall sustained virologic response rate at 12 weeks after treatment was 79% in the simeprevir group (70% in patients with genotype 1a and 86% in those with genotype 1b) vs 37% in the placebo group. Rates were similar in patients with absent to moderate fibrosis (82%), advanced fibrosis (73%), or cirrhosis (74%).

ASPIRE.27 Simeprevir efficacy in patients with HCV genotype 1 for whom previous therapy with peg-interferon and ribavirin had failed was tested in ASPIRE, a double-blind randomized phase 2 clinical trial. Patients were randomized to receive simeprevir (either 100 mg or 150 mg daily) for 12, 24, or 48 weeks in combination with 48 weeks of peg-interferon and ribavirin, or placebo plus peg-interferon and ribavirin for 48 weeks.

The primary end point was the rate of sustained virologic response at 24 weeks. Overall, rates were 61% to 80% for the simeprevir treatment groups compared with 23% with placebo, regardless of prior response to peg-interferon and ribavirin. By subgroup, rates were:

  • 77% to 89% with simeprevir vs 37% with placebo in prior relapsers

  • 48% to 86% with simeprevir vs 9% with placebo in prior partial responders

  • 38% to 59% with placebo vs 19% for prior nonresponders.

The best rates of sustained viral response at 24 weeks were in the groups that received simeprevir 150 mg daily: 85% in prior relapsers, 75% in prior partial responders, and 51% in prior nonresponders.

Simeprevir vs other direct-acting antiviral drugs

Advantages of simeprevir over the earlier protease inhibitors include once-daily dosing, a lower rate of adverse events (the most common being fatigue, headache, rash, photosensitivity, and pruritus), a lower likelihood of discontinuation because of adverse events, and fewer drug-drug interactions (since it is a weak inhibitor of the CYP3A4 enzyme).

Unlike sofosbuvir, simeprevir was FDA-approved only for HCV genotype 1 and in combination with interferon alfa and ribavirin. Compared with sofosbuvir, the treatment duration with simeprevir regimens is longer overall (interferon alfa and ribavirin are given for 12 weeks in sofosbuvir-based regimens vs 24 to 48 weeks with simeprevir). As with sofosbuvir, the estimated cost of simeprevir is high, about $66,000 for a 12-week course.

Simeprevir dosage and indications

Simeprevir was approved at an oral dose of 150 mg once daily in combination with ribavirin and interferon alfa in patients with HCV genotype 1 (TABLE 5).

T5_medium

The approved regimens for simeprevir are fixed in total duration based on the patient’s treatment history. Specifically, all patients receive the drug in combination with peg-interferon and ribavirin for 12 weeks. Then, previously untreated patients and prior relapsers continue to receive peg-interferon and ribavirin alone for another 12 weeks, and those with a partial or null response continue with these drugs for another 36 weeks.

Patients infected with HCV genotype 1a should be screened for the NS3 Q80K polymorphism at baseline, as it has been associated with substantially reduced response to simeprevir.

Sofosbuvir and simeprevir in combination

The COSMOS trial.28 Given their differences in mechanism of action, sofosbuvir and simeprevir are being tested in combination. The COSMOS trial is an ongoing phase 2 randomized open-label study investigating the efficacy and safety of simeprevir and sofosbuvir in combination with and without ribavirin in patients with HCV genotype 1, including nonresponders and those with cirrhosis. Early results are promising, with very high rates of sustained virologic response with the sofosbuvir-simeprevir combination (93% to 100%) and indicate that the addition of ribavirin might not be needed to achieve sustained virologic response in this patient population.

THE FUTURE

The emergence of all-oral regimens for HCV treatment with increasingly sophisticated agents such as sofosbuvir and simeprevir will dramatically alter the management of HCV patients. In view of the improvement in sustained virologic response rates with these treatments, and since most HCV-infected persons have no symptoms, the US Centers for Disease Control and Prevention29 recently recommended one-time testing of the cohort in which the prevalence of HCV infection is highest: all persons born between 1945 and 1965. This undoubtedly will increase the detection of this infection—and the number of new patients expecting treatment.

Future drugs promise further improvements (TABLE 6).3035 Advances in knowledge of the HCV molecular structure have led to the development of numerous direct-acting antiviral agents with very specific viral targets. A second wave of protease inhibitors and of nucleoside and nonnucleoside polymerase inhibitors will soon be available. Inhibitors of NS5A (a protein important in the assembly of the viral replication complex) such as daclatasvir and ledipasvir, are currently in phase 3 clinical trials. Other viral proteins involved in assembly of the virus, including the core protein and p7, are being explored as drug targets. In addition, inhibiting host targets such as cyclophilin A and miR122 has gained traction recently, with specific agents currently in phase 2 and 3 clinical trials.

T6_medium

Factors that previously were major determinants of response to treatment, such as IL28B genotype, viral load, race, age, extent of fibrosis, and genotype 1 subtypes, will become much less important with the introduction of highly potent direct-acting antiviral agents.

Many all-oral combinations are being evaluated in clinical trials. For example, the open-label, phase 2 LONESTAR trial tested the utility of combining sofosbuvir and ledipasvir (an NS5A inhibitor) with and without ribavirin for 8 or 12 weeks in previously untreated patients with HCV genotype 1, and for 12 weeks in patients with HCV genotype 1 who did not achieve a sustained virologic response after receiving a protease inhibitor-based regimen (half of whom had compensated cirrhosis).36 Sustained virologic response rates were very high (95% to 100%) in both previously treated and previously untreated patients, including those with cirrhosis. Similar rates were achieved by the 8-week and 12-week groups in noncirrhotic patients who had not been previously treated for HCV. The typical hematologic abnormalities associated with interferon were not observed except for mild anemia in patients who received ribavirin. These results suggest that the combination of sofosbuvir and ledipasvir could offer a very effective, short, all-oral treatment for patients with HCV genotype 1, including those with cirrhosis, who up to now have been difficult to treat.

Challenges remaining

The success of sofosbuvir and simeprevir paves the way for interferon-free regimens.37 For a long time, the treatment of HCV infection required close monitoring of patients while managing the side effects of interferon, but the current and emerging direct-acting antiviral agents will soon change this practice. Given the synergistic effects of combination therapy—targeting the virus at multiple locations, decreasing the likelihood of drug resistance, and improving efficacy—combination regimens seem to be the optimal solution to the HCV epidemic. Lower risk of side effects and shorter treatment duration will definitely improve the acceptance of any new regimen. New agents that act against conserved viral targets, thereby yielding activity across multiple genotypes, will be advantageous as well. TABLE 7 compares the rates of sustained virologic response of the different currently approved HCV treatment regimens.

T7_medium

Clinical challenges remain, including the management of special patient populations for whom data are still limited. These include patients with cirrhosis, chronic kidney disease, renal failure, and concurrent infection with human immunodeficiency virus, and patients who have undergone solid organ transplantation. Clinical trials are under way to evaluate the treatment options for these patients, who will likely need to wait for the emergence of additional agents before dramatic improvement in sustained virologic response rates may be expected.38

As the treatment of HCV becomes simpler, safer, and more effective, primary care physicians will increasingly be expected to manage it. Difficult-to-treat patients, including the special populations above, will require specialist management and individualized treatment regimens, at least until better therapies are available. The high projected cost of the new agents may limit access, at least initially. However, the dramatic improvement in sustained virologic response rates and all that that implies in terms of decreased risk of advanced liver disease and its complications will undoubtedly make these therapies cost-effective.39

  • Copyright© 2014 The Cleveland Clinic Foundation
REFERENCES

Source

February 24, 2014

The Rise of Sofosbuvir

Infectious Disease Special Edition
ISSUE: FEBRUARY 2014 | VOLUME: 1

by Kate O'Rourke

Many clinicians are ecstatic about the recent approval of sofosbuvir (Sovaldi, Gilead Sciences) for patients with hepatitis C virus (HCV) infection. At The Liver Meeting 2013, several presentations provided new insight into just how sofosbuvir will perform in clinical practice.

GEN0214_017a_4743_300

“I think sofosbuvir is the cat’s meow,” said Sammy Saab, MD, MPH, professor of medicine and surgery and head of outcomes research in hepatology at the David Geffen School of Medicine, University of California, Los Angeles.

“It’s a drug that has no resistance or incremental adverse effects. It is very well tolerated, very safe, very efficacious and there are no significant drug interactions with it. I think it is going to revolutionize the way we treat hepatitis in this country and around the world.”

Traditional Risk Factors Fade Away

According to studies presented at The Liver Meeting, many factors traditionally thought to portend poor outcomes in HCV patients may not have an effect with sofosbuvir. One study was a retrospective analysis of 982 patients with HCV infection (genotypes 1-6) in four Phase III trials: FISSION, POSITRON, FUSION and NEUTRINO. Patients were treated with sofosbuvir plus ribavirin, with or without pegylated interferon (IFN). Sustained virologic response (SVR) rates were analyzed according to gender, age (<65 vs. ≥65 years), interleukin-28 B (IL28B) genotype, body mass index (<30 vs. ≥30 kg/m2), race (black vs. non-black), viral load (HCV RNA <107 vs. ≥107 copies/mL), opiate replacement status and cirrhosis. Of these factors, only male gender and the presence of cirrhosis were consistently predictive of worse outcomes; the difference between cirrhotics and noncirrhotics existed but was not large. In the NEUTRINO trial, for example, 80% of cirrhotics versus 92% of noncirrhotics achieved SVR at week 12. Also, IL28B genotype status was only predictive of SVR in the NEUTRINO trial.

HIV Coinfection

Sofosbuvir in combination with ribavirin also works well and causes less toxicity than IFN-based regimens in HCV patients who are coinfected with HIV. In the PHOTON-1 trial, 182 treatment-naive patients with HCV genotype 1, 2 or 3 and stable HIV disease, some of whom had cirrhosis, were evaluated. SVR rates at week 12 were 81% in HCV genotype 2 patients and 67% in HCV genotype 3 patients. Among the 19 patients not acheiving SVR at week 12, relapse was confirmed in 12 patients and data were missing for six patients. HCV genotype 1 patients received 24 weeks of treatment and had an SVR rate of 76%. Sofosbuvir was coadministered effectively with multiple HIV antiretroviral regimens, including inhibitors of HIV-1 protease, reverse transcriptase and integrase; it had no adverse effect on HIV status or antiretroviral therapy.

“The IFN-free regimen of sofosbuvir plus ribavirin resulted in high SVR 12 rates in HCV treatment-naive, HIV-infected patients with HCV genotype 1, 2 or 3 coinfection,” said Mark Sulkowski, MD, medical director of the Viral Hepatitis Center in the Divisions of Infectious Diseases and Gastroenterology & Hepatology, and professor of medicine at the Johns Hopkins School of Medicine, in Baltimore, who presented the study. “SVR 12 rates were similar to those observed in patients with HCV mono-infection.”

Null Responders

Data from the COSMOS trial suggested that HCV genotype 1 null responders may be a lot easier to treat with the combination of sofosbuvir plus simeprevir (Olysio, Janssen) than with first-generation direct-acting antiviral agents. In this Phase II trial, investigators evaluated 167 patients in two cohorts. In cohort 1, patients with METAVIR scores of F0 to F2 who were prior null responders to IFN with ribavirin received 12 or 24 weeks of treatment with sofosbuvir plus simeprevir, with or without ribavirin. In an intent-to-treat (ITT) analysis of the data, these patients achieved SVR rates at week 12 of 79% to 96%. Cohort 2 included treatment-naive patients and prior null responders with METAVIR scores of F3 to F4; they received 12 weeks of treatment with sofosbuvir plus simeprevir, with or without ribavirin. These patients achieved SVR rates at week 4 of 96% to 100%, based on an ITT analysis. The treatments were characterized as generally well tolerated.

“The findings in this interim analysis suggest that the addition of ribavirin to simeprevir plus sofosbuvir may not be needed to achieve high rates of SVR in this patient population,” said Ira Jacobson, MD, chief of the Division of Gastroenterology and Hepatology at Weill Cornell Medical College, New York City, who presented the data. “Anemia and bilirubin increases were predominantly limited to the ribavirin-containing treatment arms.”

Cirrhosis

Results from the LONESTAR-2 trial echoed results of other trials showing the high efficacy of sofosbuvir in prior null responders and patients with cirrhosis. This trial tested 12 weeks of treatment with sofosbuvir plus pegylated IFN and ribavirin in treatment-experienced patients with HCV genotype 2 or 3 infection. HIV and HBV coinfected patients were excluded from the trial, but 50% of the study population had compensated cirrhosis. In patients with HCV genotype 2 (n=23), 93% of cirrhotics and 100% of noncirrhotics achieved SVR at week 12. In HCV genotype 3 patients, the presence of cirrhosis did not affect outcomes, and 83% of patients achieved SVR at week 12.

“Sofosbuvir plus pegylated IFN/ribavirin for 12 weeks demonstrated high efficacy in treatment-experienced genotype 2/3 patients who have historically low response rates and limited treatment options,” said Eric Lawitz, MD, vice president of scientific and research development at The Texas Liver Institute and clinical professor of medicine at the San Antonio University of Texas Health Science Center, who presented the study. “SVR rates were similar in patients with and without cirrhosis.”

Different Treatment Duration for Patients With HCV Genotypes 2 and 3

Although many of the traditional factors that predict treatment response in HCV patients do not seem to apply to sofosbuvir, there does seem to be a difference in response among HCV genotypes. In general, clinicians are accustomed to treating patients with HCV genotype 2 or 3 similarly, but these two groups respond differently to sofosbuvir.

In Phase III trials, response rates have been higher in patients with HCV genotype 2 after 12 weeks of treatment with sofosbuvir plus ribavirin. The VALENCE trial originally set out to test 12 weeks of treatment with sofosbuvir plus ribavirin in patients with HCV genotype 2/3, but investigators amended the trial after recognizing that the two types of patients might respond to treatment differently; the 250 patients with HCV genotype 3 ultimately received 24 weeks of treatment. Among genotype 3 patients without cirrhosis, response rates were 94% in treatment-naive patients and 87% in treatment-experienced patients; genotype 3 patients with cirrhosis had response rates of 60%.

More evidence that longer therapy is better for HCV genotype 3 patients came from data presented at a meeting of the FDA Sofosbuvir Review team on Oct. 25.

“The FDA did an elegant analysis of the effect of treatment duration with sofosbuvir–ribavirin in genotype 3–infected patients,” Dr. Sulkowski said. “[They] presented very convincing data that a 24-week duration of sofosbuvir–ribavirin should be the standard for all genotype 3–infected patients.”

The FDA analysis combined data from the FISSION, POSITRON, FUSION and VALENCE trials. In both treatment-naive and treatment-experienced patients with HCV genotype 3, SVR rates dramatically rose and relapse rates fell when treatment was increased from 12 weeks to 24 weeks (Table).

Capture

As a result, when the FDA approved sofosbuvir in December, the agency approved a 12-week treatment regimen in patients with HCV genotype 2 and a 24-week regimen in patients with genotype 3, both in combination with ribavirin. The FDA also approved a 12-week regimen of sofosbuvir in combination with ribavirin and IFN for patients with HCV genotypes 1 and 4.


Dr. Saab has served as a consultant and on the speakers’ bureaus for Boehringer Ingelheim, Genentech, Gilead Sciences, Janssen, Merck, and Vertex Pharmaceuticals. Dr. Sulkowski has received consulting fees from Abbott, Boehringer Ingelheim, Bristol-Myers Squibb, Gilead, Janssen, Merck and Vertex. Dr. Jacobson has received grants or research support and has served as a member of a speaker’s bureau or as a consultant/advisor for AbbVie, Boehringer Ingelheim, Bristol-Myers Squibb, Gilead, Idenix Pharmaceuticals, Janssen, Merck, Novartis, Roche/Genentech and Vertex. Dr. Lawitz has served on advisory committees or review panels for AbbVie, Achillion, BioCryst Pharmaceuticals, Biotica, Enanta, Idenix, Janssen, Merck, Novartis, Santaris, Theravance and Vertex; he has received grant and research support form AbbVie, Achillion, Boehringer Ingelheim, Bristol-Myers Squibb, Gilead, GlaxoSmithKline, Idenix, Intercept, Janssen, Merck, Novartis, Presidio, Roche, Santaris Pharma and Vertex.

Source