Showing posts with label Vaniprevir (MK-7009). Show all posts
Showing posts with label Vaniprevir (MK-7009). Show all posts

October 14, 2013

Combination of Vaniprevir with Peginterferon and Ribavirin Significantly Increases the Rate of Sustained Viral Response in Treatment-Experienced Patients with Chronic HCV Genotype 1 Infection and Cirrhosis

Clinical Gastroenterology and Hepatology

Article in Press

Maribel Rodriguez-Torres, Albrecht Stoehr, Edward J. Gane, Lawrence Serfaty, Eric Lawitz, Amy Zhou, Michael Bourque, Sanhita Bhanja, Julie Strizki, Richard J.O. Barnard, Peggy M.T. Hwang, Mark J. DiNubile, Niloufar Mobashery,

Received 10 June 2013; received in revised form 20 September 2013; accepted 21 September 2013. published online 14 October 2013.
Accepted Manuscript

Abstract

Background

& Aims: The combination of vaniprevir (a NS3/4A protease inhibitor) with peginterferon and ribavirin was shown to significantly increase rates of sustained virologic response (SVR), compared with peginterferon and ribavirin alone, in treatment-experienced patients with chronic hepatitis C virus (HCV) genotype 1 infection without cirrhosis. We performed a blinded, randomized, controlled trial of the effects of vaniprevir with peginterferon and ribavirin in patients with cirrhosis who did not respond to prior therapy with peginterferon and ribavirin.

Methods

Treatment-experienced patients (88% white and 35% prior null responders) with HCV genotype 1 infection and compensated cirrhosis were randomly assigned to groups given vaniprevir (600 mg twice daily) with peginterferon and ribavirin for 24 weeks (n=16), vaniprevir (600 mg twice daily) for 24 weeks with peginterferon and ribavirin for 48 weeks (n=14), vaniprevir (300 mg twice daily) with peginterferon and ribavirin for 48 weeks (n=15), vaniprevir (600 mg twice daily) with peginterferon and ribavirin for 48 weeks (n=15), or placebo with peginterferon and ribavirin for 48 weeks (n=14, control). Cirrhosis was documented by liver biopsy (84%) or non-invasive methods (16%). Prior to randomization, participants were stratified based on their historical response to peginterferon and ribavirin.

Results

In the primary analysis, SVR rates among patients in the respective vaniprevir groups were 9/15 (60.0%), 9/13(69.2%), 8/15 (53.3%), and 10/13 (76.9%), compared with 2/14 (14.3%) in the control group (pairwise P values ≤0.016). Cirrhotic patients with null or partial responses to prior therapy achieved SVRs less often than patients with prior breakthrough or relapse, although 42.1% of prior null responders in the vaniprevir groups achieved SVRs. Patients in the vaniprevir groups more frequently experienced mild-moderate nausea, vomiting, and diarrhea than controls; 5% developed grade 2 anemia, compared with none in the control group (no patient developed grade 3 or 4 anemia). Among patients in the vaniprevir groups who experienced virologic failure, resistance-associated variants were predominantly detected at positions 155, 156, and 168 in the HCV protease gene.

Conclusions

In a controlled, Phase 2b trial, vaniprevir with peginterferon and ribavirin significantly increased rates of SVR among treatment-experienced patients with chronic HCV genotype 1 infection, compared to retreatment with peginterferon and ribavirin alone. Vaniprevir was generally well-tolerated for up to 48 weeks in patients with compensated cirrhosis.

ClinicalTrials.gov Identifier: NCT00704405

Keywords: clinical trial, fibrosis, DAA, direct-acting antiviral agent

Abbreviation: AE, adverse event, cEVR, complete early virologic response, CI, confidence interval, D/C, discontinuation, HCV, hepatitis C virus, ITT, intention to treat, IU/mL, international units per milliliter, LLD, lower limit of detection, LLQ, lower limit of quantification, mITT, modified intention to treat, P/R, peginterferon alfa/ribavirin, RVR, rapid virologic response, SVR, sustained virologic response, SVR24, sustained virologic response at Week 24 of follow-up, TND, target not detected, TD(u), target detected but unquantifiable

No full text is available. To read the body of this article, please view the PDF online.

Source

July 3, 2013

A phase 2B study of MK-7009 (vaniprevir) in patients with genotype 1 HCV infection who have failed previous pegylated interferon and ribavirin treatment

Provided by NATAP

Download the PDF

Journal of Hepatology July 2013

Eric Lawitz1, Maribel Rodriguez-Torres2, Albrecht Stoehr3, Edward J. Gane4, Lawrence Serfaty5, Sanhita Bhanja6, Richard J. Barnard6, Di An6, Jacqueline Gress6, Peggy Hwang6, Niloufar Mobashery6, 1Alamo Medical Research, San Antonio, TX, United States; 2Fundacion de Investigacion, San Juan, Puerto Rico; 3IFI - Institut fur Interdisziplinare Medizin, Hamburg, Germany; 4Auckland Clinical Studies Ltd, Auckland, New Zealand; 5Service d'Hepatologie, Hopital Saint-Antoine, Universite Pierre et Marie Curie, Paris, France; 6Merck Sharp & Dohme, Whitehouse Station, NJ, United States

MK-7009 therapy at 300 mg and 600 mg b.i.d. was generally well tolerated for up to 48 weeks of therapy. Patients receiving MK-7009 regimens had higher rates of gastrointestinal (GI) adverse events (AEs) when compared with control. Most GI AEs were mild to moderate in severity. There were no significant differences in rates of anemia and rash between the patients receiving MK-7009 and control. In conclusion, patients treated with MK-7009 plus P/R experienced significant improvement in SVR compared to P/R control in a population of GT 1 experienced patients. Results show that MK-7009 compares favorably with other first generation protease inhibitors. MK-7009 was generally well tolerated and most adverse experiences were mild to moderate in severity. Based on these findings, the development of MK-7009 has advanced to phase 3 in Japan.

Background & Aims
MK-7009 (vaniprevir) is a non-covalent competitive inhibitor of the hepatitis C virus (HCV) NS3/4A protease. This report presents the primary analysis results (safety and sustained viral response) of a phase 2b study of MK-7009 given in combination with peginterferon (PegIFN) alfa2a 180 μg weekly and ribavirin (RBV) 1000-1200 mg/day, for 24-48 weeks to non-cirrhotic patients who have failed previous PegIFN and RBV treatment.

Methods
We present results of a randomized, placebo-controlled, double-blind study of MK-7009 administered for 24-48 weeks in combination with PegIFN and RBV in 4 regimens to at least 40 patients per arm. Stratification by prior response to PegIFN and RBV was as follows: null response, partial response, breakthrough and relapse. HCV RNA was determined by Roche Cobas Taqman with a lower limit of detection (LLoD) of 10 IU/ml and a lower limit of quantification (LLoQ) of 25 IU/ml.

Results
SVR24 in patients on MK-7009 + PegIFN and ribavirin (P/R) was statistically superior to placebo + P/R in all treatment groups (p <0.001). MK-7009 at 300 mg b.i.d. and 600 mg b.i.d. is generally well tolerated for use for up to 48 weeks of therapy. Patients in MK-7009 regimens had higher rates of gastrointestinal adverse events as compared to control (mostly mild to moderate). There were no significant differences in rates of anemia and rash between the MK-7009 regimens and control.

Conclusions
In conclusion, patients treated with MK-7009 plus P/R experienced significant improvement in SVR compared to P/R control in a population of GT 1 experienced patients.

Introduction

Hepatitis C virus (HCV) is a positive-strand RNA virus of the Flaviviridae family and replicates primarily in the liver. While disease progression is typically a slow process that occurs over many years, a significant fraction of patients ultimately develop serious liver disease, including cirrhosis and hepatocellular carcinoma [1].

Multiple viral proteins essential for HCV replication have been characterized [1], [2] and clinical proof of concept has been demonstrated for small-molecule inhibitors that act against several of these, including NS3/4A protease [3], [4], NS5B polymerase (both active site and allosteric inhibitors) [5], [6], [7], [8], NS4A [9], and most recently, NS5A [10]. Of these, NS3/4A protease inhibitors have progressed the furthest in terms of clinical evaluation and have been demonstrated to achieve highly significant reductions in HCV viral loads in patients [11].

Until recently, standard treatment for HCV infection was combination therapy with pegylated interferon and ribavirin (P/R) [12], [13], [14]. However, recent FDA approval of the directly acting antiviral agents boceprevir [15], [16] and telaprevir [17], [18] has added to the HCV treatment armamentarium. These compounds have been added to the previous P/R backbone in genotype 1 infected patients to create a 3-drug treatment regimen. Both boceprevir and telaprevir are orally bioavailable α ketoamide NS3/4A protease inhibitors that reversibly and covalently bind to the HCV protease. A sustained virological response (SVR) of up to 70% is observed when either of these protease inhibitors is utilized with P/R and ribavirin in treatment naive patients [19]. Both agents are also effective in patients who failed to achieve SVR during previous treatment with P/R, though overall SVR rates are generally lower.

In addition to the already approved HCV protease inhibitors, there are several other investigational second-wave NS3/4A protease inhibitors. Vaniprevir (MK-7009) is one such compound and is a macrocyclic HCV NS3/4A protease inhibitor which has demonstrated potent antiviral efficacy and good tolerability in a 14-day phase I monotherapy trial as well as a phase II dose-ranging study [20].

This manuscript presents the primary analysis results (safety and sustained viral response) of a phase 2b study of MK-7009 given in combination with PegIFN 180 μg weekly and RBV 1000-1200 mg/day for 24-48 weeks, to non-cirrhotic patients who have failed previous P/R treatment.

Materials and methods

Study design

MK-7009 safety and efficacy had been established in a phase 2A study of treatment na•ve patients (MK-7009 study 007) [20]. The data presented in this report are from a randomized, placebo-controlled, double-blind study of MK-7009 administered for 24 or 48 weeks to non-cirrhotic patients, who failed previous P/R treatment, enrolled from Australia, Austria, Belgium, Canada, Chile, Czech Republic, France, Germany, Israel, Korea, Lithuania, New Zealand, Poland, South Korea, Sweden, Taiwan, Thailand, UK, and the USA. Patients were treated with MK-7009 for longer durations in the current study when compared to MK-7009 study 007 with the assumption that the demonstration of safety and efficacy in a treatment experienced population would imply safety and efficacy in a treatment na•ve population. The study was conducted in accordance with principles of Good Clinical Practice and the Declaration of Helsinki and was approved by the appropriate institutional review boards and regulatory agencies. Informed consent was documented for each patient prior to study enrollment.

Patient safety was overseen by an external Data Monitoring Committee made up of 4 internationally recognized hepatologists and/or infectious disease specialists and one statistician. The committee met quarterly at a minimum to discuss safety and efficacy. Additionally, direct patient monitoring for safety by principal investigators included patient history, physical exams and pre-specified laboratory safety evaluations at study visits on days 1, 3 and 7 for the first week, weekly from weeks 2 through 4, every other week from weeks 5 through 12 and then monthly through end of study treatment.

MK-7009 was administered in combination with P/R in 4 regimens (one 300 mg b.i.d. regimen and three 600 mg b.i.d. regimens) to at least 40 patients per arm of the study (Fig. 1A). There was also a control arm that received placebo + P/R. Patients were stratified based on prior response to P/R (null response, partial response, breakthrough and relapse). Key inclusion criteria for entry into the study included chronic genotype (GT) 1 HCV-infected patients who have failed prior treatment(s) with P/R, a minimum of 25% of patients prior null responders, men and women 18-65 years of age, and baseline HCV RNA 4 x 105 IU/ml. Key exclusion criteria included non-HCV-related chronic hepatitis, HIV co-infection, evidence of cirrhosis on liver biopsy or approved non-invasive imaging, or any other condition contraindicated for treatment with P/R.

HCV RNA was measured at every scheduled study visit and detected by Roche Cobas Taqman. This assay has a lower limit of detection (LLoD) of 10 IU/ml and a lower limit of quantification (LLoQ) of 25 IU/ml.

Objectives

This study's primary safety objective was to evaluate the safety and tolerability of the MK-7009 300 mg b.i.d. treatment regimen and the three MK-7009 600 mg b.i.d. treatment regimens as compared with placebo in combination with 48 weeks of P/R (hereafter referred to as the control regimen), as assessed by review of the accumulated safety data.

The primary efficacy objective was to evaluate the antiviral activity of the three MK-7009 600 mg b.i.d. treatment regimens as compared with the control regimen, as assessed by the proportion of patients achieving undetectable HCV RNA 24 weeks after the end of all study therapy (sustained viral response 24 [SVR24]).

Secondary objectives included: (1) to evaluate the antiviral activity of the MK-7009 300 mg b.i.d. treatment regimen as compared with the control regimen, as assessed by the proportion of patients achieving SVR24; (2) to evaluate the antiviral activity of treatment regimen 1 (24 weeks of MK-7009 600 mg b.i.d. in combination with P/R) as assessed by the proportion of patients achieving SVR24, as compared with response at treatment week 48 in the control regimen; (3) to evaluate the antiviral activity of MK-7009 300 mg b.i.d. treatment regimen and two MK-7009 600 mg b.i.d. treatment regimens (treatment regimens 2, 3, and 4) as compared with the control regimen, as assessed by the proportion of patients achieving undetectable viral RNA at treatment week 48.

Data analysis

Safety analyses are based on 'all patients as treated' (APaT) population. The full analysis set (FAS) population served as the primary population for the efficacy analysis. This population included all randomized patients who received at least one dose of study medication and had post-dose data. For this study, there is no difference in the results whether we use the FAS population or the Intent-to-Treat (ITT) population. Although we required the patients to have at least one post-randomization end point subsequent to at least one dose of study treatment to be included in the FAS population, every patient who was randomized and received at least one dose of study medication had at least one post-randomization HCV RNA measurement. Therefore, no patient was excluded based on the requirement of a post-randomization end point and the FAS population was identical to the ITT population.

With a sample size of ~40 per treatment arm, there was 82% power to demonstrate that at least one of the MK-7009 treatment regimens was superior to the control regimen as assessed by SVR24. This assumes a true difference in SVR24 of 32% at the point of maximum variability for a binary end point (for instance, SVR24 of 66% for the MK-7009 treatment regimens and an SVR24 of 34% for the control regimen; the maximum variability for a binary end point is 50%).

Criteria for virologic failure

HCV RNA data was provided to the designated unblinded Clinical Monitor and patients were discontinued from all study therapy if they met any of the following criteria for virologic failure: if the patient did not achieve at least a 2-log10 IU/ml decline in HCV RNA from baseline by treatment week 12; if the patient had quantifiable HCV RNA at treatment week 24 (if the patient had positive but non-quantifiable HCV RNA at treatment week 24, a second measurement was taken at treatment week 28, if applicable; if the week 28 result was also positive, the patient was discontinued from the study); if the patient had evidence of breakthrough viremia, as defined by: (1) a >1-log10 increase from nadir viral RNA (nadir calculated from up to two consecutive HCV RNA measurements) in two consecutive visits by week 12, or (2) a plasma viral RNA of >100 IU/ml, in two consecutive visits after becoming undetectable; if the patient had evidence of relapse, as defined by two consecutive visits with detectable HCV RNA following the end of all study treatment after becoming undetectable on treatment.

Results

Overall, 211 patients were enrolled into the five treatment regimens (Fig. 1B). Of those, 62.1% were male (n = 131) and 37.9% were female (n = 80) (Table 1). Overall, 190 patients (90.0%) completed the study, and 20 (9.5%) discontinued (Supplementary Table 1). The most common reasons for study discontinuation were 'withdrawal by subject', and 'lost to follow-up'. The mean age of enrolled patients was 49.6 years, and age ranged from 23 to 65 years. Caucasian patients made up the majority of the population (77.7%), followed by Asian (13.7%) and Black/African American (7.1%) patients. The population was skewed slightly towards HCV 1b infection (57.3%); 41.7% of patients were infected with HCV 1a. Relapse made up the largest portion of prior failures (39.3%), followed by null response (25.6%), partial response (19.9%) and breakthrough (15.2%). Of the patients with IL28B SNP data available, 26 (19.8%) and 105 (80.2%) were CC and CT/TT, respectively.

SVR24 rates in the ITT population can be seen in Table 2. Patients given 24 or 48 week courses of MK-7009 600 mg b.i.d. + P/R had SVR24 rates of 71.1% and 78.0%, respectively. While there may be no obvious advantage to a longer treatment regimen, the study was not powered to discern differences between 24- and 48-week treatments. The SVR24 rate in patients randomized to the 300 mg b.i.d. + P/R treatment regimen was 66.7%. The largest percentage of patients achieving SVR24 (84.2%) was seen in the 24-wk 600 mg bid + P/R/24-wk PBO + P/R treatment group. SVR24 in patients on MK-7009 + P/R was statistically superior to placebo + P/R in all treatment groups (p <0.001). Thirteen patients in the vaniprevir treatment groups were excluded from the primary analysis based on the pre-specified missing data approach. Patients who discontinued for administrative reasons, whose last HCV RNA measurement was undetectable prior to discontinuation, were not included. Patients who discontinued for treatment-related reasons, regardless of HCV RNA measurements, were considered failures. Reasons for virologic failure are listed in Supplementary Table 2.

APSAL1

Click table to enlarge

*The adjusted difference is the difference of the two proportions (MK-7009 treatment regimen minus control regimen) adjusting for the stratification variable with Cochran Mantel-Haenszel (CMH) weights. The Miettinen and Nurminen method was used for this analysis.

N, number of patients included in the analysis; m, number of patients with an HCV RNA result at the 24 week follow-up visit; n (%) = number of patients with undetectable HCV RNA at the 24 week follow-up visit and the percentage calculated as (n/N) * 100; CI, confidence interval; ITT, intention to treat.

SVR24 rates by prior response to therapy reveal that the highest response rates were seen in patients who previously either partially responded or relapsed (Table 3A). Importantly, the results of this analysis are based on small numbers due to the stratification into several patient groups. When SVR24 rates were examined by HCV genotype, there were no obvious differences in response to two of the three MK-7009 treatment regimens between genotype 1a and 1b (Table 3B). Though the numbers are small, a difference that is evident between genotype 1a and genotype 1b is the response in patients given 24 weeks of treatment with MK-7009 600 mg b.i.d. SVR24 in this population was 56.3% in patients with type 1a and 81.8% in patients with type 1b. However, no conclusive statements can be made as the study was not powered to study genotype subtype differences. Similarly, the samples sizes become small as the SVR rates are examined by baseline HCV RNA levels and fibrosis staging; thus the data were not instructive (data not shown).

Table 3. SVR24 rates by (A) prior response to therapy and (B) genotype in the ITT population

APSAL2

Click table to enlarge

(A) N, number of patients included in the analysis by prior treatment response; (%), percentage of patients included in the analysis calculated as (prior treatment response N/total N) * 100; m, number of patients with an HCV RNA result at the 24 week follow-up visit; n (% SVR24), number of patients with undetectable HCV RNA at the 24 week follow-up visit and the percentage calculated as (n/N) * 100.

(B) N, number of patients included in the analysis by HCV genotype; (%), percentage of patients included in the analysis calculated as (HCV genotype N/total N) * 100; m, number of patients with an HCV RNA result at the 24 week follow-up visit; n (% SVR24), number of patients with undetectable HCV RNA at the 24 week follow-up visit and the percentage calculated as (n/N) * 100.

IL28B status was collected from 131 patients who provided genetic consent and were analyzed in the per-protocol analyses. Of these, 19.8% (26/131) were CC, 59.5% were CT (78/131) and 20.6% were TT (27/131) for the SNP rs12979860. While IL28 genotype interactions were seen with SVR24 when considering all treatment groups, the effect of IL28 genotype became non-significant when considering only the MK-7009 groups (data not shown). Therefore it appears that the interaction was mainly driven by the difference in actual SVR24 rates between PBO and MK-7009 treatment arms. Moreover, it was found that for each MK-7009 treatment arm, there was no significant evidence that CC genotype patients achieved SVR24 at a higher rate (Fig. 2).

In total, 83.3% of patients in the PBO arm and between 90.0% and 97.8% of patients in the MK-7009 treatment arms reported one or more drug-related adverse events during the treatment period (Table 4). Overall, between 5 and 8 patients in each of the MK-7009 treatment arms and 7 patients in the PBO arm had reported anemia. To address the anemia, 11 patients received epoetin beta during the trial. There were no significant differences in rates of anemia and rash between the MK-7009 regimens and the control group. No serious rashes were reported. Patients in MK-7009 regimens had higher rates of gastrointestinal adverse events as compared to control (Table 4). A complete adverse event summary is reported in Supplementary Table 3. The most common gastrointestinal adverse events reported were diarrhea, nausea, and vomiting. Most gastrointestinal adverse experiences were mild to moderate in intensity; few were severe (Supplementary Table 4). Other adverse events with incidences 25% are shown in Supplementary Table 5.

Table 4. Adverse events of clinical interest during the treatment phase.

APSAL3

Click table to enlarge

Every patient is counted a single time for each applicable row and column. A system organ class or specific adverse event appears on this report only if its incidence in one or more of the columns meets the incidence criterion in the report title, after rounding.

Discussion

First generation HCV protease inhibitors such as boceprevir and telaprevir have strong antiviral efficacy, but need to be dosed frequently (8 or 12 h) and can be associated with anemia, dysgeusia, and skin rashes [21], [22]. MK-7009 is a macrocyclic HCV NS3/4A protease inhibitor (administered QD or BID) that has demonstrated strong antiviral potency and a good safety profile in phase I studies [23].

In this report, MK-7009 (when combined with pegylated interferon alfa 2a and ribavirin) produced a significant improvement in the rate of SVR compared to retreatment with P/R in patients who had failed previous therapy for chronic hepatitis C. The highest rates of SVR24 were seen in patients who relapsed after initial P/R treatment; where cumulatively MK-7009 treated patients had an SVR24 of 94%. This result may be in part the result of the higher number of patients with genotype 1b, although the overall results appear to demonstrate no significant difference. The outcomes of this trial compare favorably to the trials of telaprevir and boceprevir [24], [25]. In this trial, prior null responder patients had numerically higher SVR point estimates compared to the data from telaprevir- and boceprevir-based therapies, although direct comparisons of these data to previous data for boceprevir and telaprevir are precluded due to lack of head-to-head studies. Observed MK-7009 SVR24 rates are similar to another 'first generation second wave' HCV protease inhibitor, TMC-435 [26]. Cirrhotic patients were randomized in this study in a separate cohort in a sequential fashion; the results will be analyzed once all cirrhotic patients have completed the follow-up visits.

Resistance is an important consideration in the use of HCV protease inhibitors [27]. Resistance-associated amino acid variants (RAVs) in response to MK-7009 therapy were predominantly observed at positions R155, A156 and/or D168 in non-SVR patients. This resistance profile is similar to other first generation NS3/4 inhibitors [28], [29], [30], [31].

MK-7009 therapy at 300 mg and 600 mg b.i.d. was generally well tolerated for up to 48 weeks of therapy. Patients receiving MK-7009 regimens had higher rates of gastrointestinal (GI) adverse events (AEs) when compared with control. Most GI AEs were mild to moderate in severity. There were no significant differences in rates of anemia and rash between the patients receiving MK-7009 and control.

In conclusion, patients treated with MK-7009 plus P/R experienced significant improvement in SVR compared to P/R control in a population of GT 1 experienced patients. Results show that MK-7009 compares favorably with other first generation protease inhibitors. MK-7009 was generally well tolerated and most adverse experiences were mild to moderate in severity. Based on these findings, the development of MK-7009 has advanced to phase 3 in Japan.

Source

June 17, 2013

A phase 2B study of MK-7009 (vaniprevir) in patients with genotype 1 HCV infection who have failed previous pegylated interferon and ribavirin treatment

Journal of Hepatology
Volume 59, Issue 1 , Pages 11-17, July 2013

Eric Lawitz,, Maribel Rodriguez-Torres,, Albrecht Stoehr,, Edward J. Gane,, Lawrence Serfaty,, Sanhita Bhanja,, Richard J. Barnard,Di An,, Jacqueline Gress,, Peggy Hwang., Niloufar Mobashery

Received 26 November 2012; received in revised form 4 February 2013; accepted 12 February 2013. published online 22 February 2013.

Abstract

Background & Aims

MK-7009 (vaniprevir) is a non-covalent competitive inhibitor of the hepatitis C virus (HCV) NS3/4A protease. This report presents the primary analysis results (safety and sustained viral response) of a phase 2b study of MK-7009 given in combination with peginterferon (PegIFN) alfa2a 180μg weekly and ribavirin (RBV) 1000–1200mg/day, for 24–48weeks to non-cirrhotic patients who have failed previous PegIFN and RBV treatment.

Methods

We present results of a randomized, placebo-controlled, double-blind study of MK-7009 administered for 24–48weeks in combination with PegIFN and RBV in 4 regimens to at least 40 patients per arm. Stratification by prior response to PegIFN and RBV was as follows: null response, partial response, breakthrough and relapse. HCV RNA was determined by Roche Cobas Taqman with a lower limit of detection (LLoD) of 10IU/ml and a lower limit of quantification (LLoQ) of 25IU/ml.

Results

SVR24 in patients on MK-7009+PegIFN and ribavirin (P/R) was statistically superior to placebo+P/R in all treatment groups (p<0.001). MK-7009 at 300mg b.i.d. and 600mg b.i.d. is generally well tolerated for use for up to 48weeks of therapy. Patients in MK-7009 regimens had higher rates of gastrointestinal adverse events as compared to control (mostly mild to moderate). There were no significant differences in rates of anemia and rash between the MK-7009 regimens and control.

Conclusions

In conclusion, patients treated with MK-7009 plus P/R experienced significant improvement in SVR compared to P/R control in a population of GT 1 experienced patients.

Keywords: Vaniprevir, HCV, Direct-acting antivirals

Source

May 19, 2013

EASL 2013: New Wave of Hepatitis C Treatments On the Way

May 13, 2013, by Liz Highleyman

Studies presented at the EASL International Liver Congress, held April 24–28 in Amsterdam, confirm the expectation that a new generation of safer and more effective therapies for hepatitis C will be available within the next few years. These include both better add-ons to interferon and the first interferon-free combinations of direct-acting antivirals (DAAs).

An estimated three million people in the U.S. have hepatitis C, but most do not know they’re infected. The CDC this week reiterated its recommendation that all “baby boomers” born between 1945 and 1965 get a test for HCV antibodies and, if positive, a viral load test to determine if they’re still infected. “You may not remember what you did in the 60s and 70s, but your liver does,” said CDC director Thomas Frieden.

Testing is crucial because chronic HCV infection can lead to cirrhosis, liver cancer, and death. Now is a good time because better hepatitis C treatments that can stop liver disease progression are on the way.

Interferon Add-Ons

The current standard of care adds one of the first approved DAAs—boceprevir (Victrelis) or telaprevir (Incivek)—to pegylated interferon and ribavirin. Triple therapy works better than interferon/ribavirin alone, but comes with added side effects.

Some people with advanced liver disease cannot wait for better options, but data presented at the EASL meeting show that these regimens carry a high risk of serious complications for patients with cirrhosis and liver transplant recipients.

For people who can wait a bit longer, several studies showed promising outcomes when adding more effective and better-tolerated second-generation DAAs to interferon-based therapy:

  • Daclatasvir (HCV NS5A inhibitor)
  • Faldaprevir (HCV protease inhibitor)
  • MK-5172 (HCV protease inhibitor)
  • Simeprevir (HCV protease inhibitor)
  • Sofosbuvir (nucleotide analog HCV polymerase inhibitor)
  • Vaniprevir (HCV protease inhibitor)

These new drugs produced cure rates in the 80% to 90% range even for difficult-to-treat patients. They can often shorten treatment to three to six months (down from six months to a year) and generally do not cause more side effects than interferon and ribavirin alone. (For more detailed coverage of this study and others presented at EASL 2013, visit HIVandHepatitis.com.)

“DAAs are ready for prime time,” EASL Secretary General Mark Thursz said at an April 24 press conference kicking off the congress.

The first new DAAs are expected to become available by late 2013 or early 2014, initially for use with interferon. Simeprevir and sofosbuvir were submitted for FDA approval in March and April, with a review timeline of six months.

“Interferon is not dead yet,” Thursz emphasized. “Twelve weeks of an interferon triple regimen is tolerable for a large number of patients…and it may be better than waiting another year for a suitable all-oral regimen.”

Interferon-Free Combos

People with early or stable liver disease may be able to wait for all-oral regimens that eliminate interferon, which can cause flu-like symptoms and depression. Some combos also dispense with ribavirin, which can cause anemia.

All-oral regimens have gotten the lion’s share of attention at recent conferences (including the Conference on Retroviruses and Opportunistic Infections in March). While several interferon-free regimens continue to look good, enthusiasm at EASL was somewhat tempered by setbacks among difficult-to-treat patients.

A quad regimen containing DAAs developed by AbbVie (formerly Abbott)—HCV protease inhibitor ABT450 boosted with ritonavir + NS5A inhibitor ABT-267 + non-nucleoside polymerase inhibitor ABT-333 + ribavirin—cured 96% of treatment-naive patients with HCV genotype 1 and 93% of prior interferon non-responders treated for 12 weeks in the Aviator study.

This combo is especially promising because it worked for more than 90% of previously untreated or treatment-experienced patients, people with harder-to-treat HCV subtype 1a or easier-to-treat 1b, and those with mild or moderate liver fibrosis, though people with cirrhosis—who have the poorest response—were excluded.

AbbVie announced this week that the FDA has given this regimen a “breakthrough therapy” designation, intended to speed development and review of promising drugs for serious or life-threatening conditions.

Gilead’s sofosbuvir/ribavirin 12-week dual regimen previously demonstrated 100% sustained virological response (SVR) for previously untreated people with HCV genotypes 2 or 3 and no liver cirrhosis. SVR at 12 or 24 weeks after completing treatment (known as SVR12 and SVR24) is considered a cure.

But researchers at EASL reported lower cure rates in the larger treatment-naive FISSION and treatment-experienced FUSION trials, in which 20%–30% of participants had cirrhosis. SVR12 rates were 67% using a 12-week regimen in FISSION, and 50% with a 12-week regimen or 73% with a 16-week regimen in FUSION.

The major surprise was that people with genotype 2 and genotype 3—usually considered together as a single “easier-to-treat” category compared with genotype 1—responded differently.

Among those with genotype 2, SVR rates were excellent: 97% in FISSION and 86%–94% in FUSION. People with genotype 3 did not fare as well, with cure rates of 56% and 30%–62%—no better than pegylated interferon/ribavirin. The difference was even more pronounced among people with cirrhosis, with cure rates falling as low as 34% in FISSION and 19% in FUSION.

Presenter Edward Gane from Auckland City Hospital suggested that genotypes 2 and 3 should no longer be lumped together, as genotype 3 is “behaving as a harder-to-treat virus.”

Turning to genotype 1, further results from the ELECTRON trial confirmed that sofosbuvir/ribavirin alone is not adequate for such patients. Adding the NS5A inhibitor ledipasvir, however, raised the cure rate to 100% for both treatment-naives and prior null responders.

Gilead announced last week that a coformulation of sofosbuvir/ledipasvir without ribavirin for eight or 12 weeks led to 95%–100% sustained response at four or eight weeks post-treatment—promising, but too soon to declare a cure.

Study findings reported in 2012 showed that sofosbuvir plus Bristol-Myers Squibb’s NS5A inhibitor daclatasvir cured 100% of treatment-naive genotype 1 patients. Gilead decided not to pursue this combination in Phase 3 trials in favor of its own ledipasvir, but some smaller studies have gone forward.

Mark Sulkowski from Johns Hopkins University reported that sofosbuvir plus daclatasvir cured all previously treated genotype 1 patients who did not respond to interferon-based triple therapy using boceprevir or telaprevir, providing some of the first data on “rescue therapy” after failure of the current standard-of-care.

Finally, a three-drug DAA combo containing daclatasvir, the HCV protease inhibitor asunaprevir, and the non-nucleoside polymerase inhibitor BMS-791325, taken for 12 or 24 weeks, cured 88%–94% of previously untreated genotype 1 patients without cirrhosis, with treatment “failures” mostly due to missing data rather than viral breakthrough or relapse.

Taken together, these findings add to the evidence that effective and well-tolerated DAA therapy will be able to cure most people with chronic hepatitis C within the coming years.

“If a patient has early stage [liver disease], lots of physicians are recommending their patients wait” for all-oral regimens, Thursz summarized. For those with more advanced disease, “treating with the standard of care is probably the way to go”—unless they have very advanced disease, in which case they have “significant risk of dying from septic complications” if treated with current triple therapy.

Liz Highleyman (liz (at) hivandhepatitis.com) is a freelance medical writer and editor-in-chief of HIVandHepatitis.com.

Selected Sources

AbbVie. AbbVie’s Investigational HCV Regimen Receives Breakthrough Therapy Designation from the U.S. Food and Drug Administration. Press release. May 6, 2013.

Bristol-Myers Squibb. High Rates of SVR Demonstrated in Phase II Study with Investigational Triple DAA Regimen of Daclatasvir, Asunaprevir and BMS-791325 in Treatment-Naive Patients with Genotype 1 Chronic Hepatitis C Infection. Press release. April 23, 2013.

Everson, G. and others. Interim analysis of an interferon (IFN)- and ribavirin (RBV)-free regimen of daclatasvir (DCV), asunaprevir (ASV), and BMS-791325 in treatment-naive, hepatitis C virus genotype 1-infected patients. 48th Annual Meeting of the European Association for the Study of the Liver (EASL 2013). Amsterdam. April 24–28, 2013. Abstract 1423.

Ferenci, P. and others. Faldaprevir plus pegylated interferon alfa-2A and ribavirin in chronic HCV genotype-1 treatment-naive patients: final results from STARTVerso1, a randomised double blind placebo-controlled phase III trial. Abstract 1416.

Fontaine, H. and others. SVR12 rates and safety of triple therapy including telaprevir or boceprevir in 221 cirrhotic non responders treated in the French Early Access Program (ANRS CO20-CUPIC). EASL 2013. Abstract 60.

Gane, E. and others. Phase 3 randomized controlled trial of all-oral treatment with sofosbuvir+ribavirin for 12 weeks compared to 24 weeks of peg+ribavirin in treatment-naive GT2/3 HCV-infected patients (FISSION). EASL 2013. Abstract 5.

Gane, E. and others. All-oral sofosbuvir-based 12-week regimens for the treatment of chronic HCV infection: the ELECTRON study. EASL 2013. Abstract 14.

Gilead Sciences. Gilead reports interim data from Phase 2 LONESTAR study. Press release. May 2, 2013.

Jacobson, I. and others. Sofosbuvir for hepatitis C genotype 2 or 3 in patients without treatment options. New England Journal of Medicine. April 23, 2013 (Epub ahead of print).

Jacobson, I. and others. Treatment with sofosbuvir+ribavirin for 12 weeks achieves SVR12 of 78% in GT2/3 interferon-ineligible, -intolerant, or -unwilling patients: results of the phase 3 POSITRON trial. EASL 2013. Abstract 61.

Jacobson, I. and others. Simeprevir (TMC435) with peginterferon/ribavirin for treatment of chronic HCV genotype 1 infection in treatment-naïve patients: results from QUEST-1 a phase III trial. EASL 2013. Abstract 1425.

Kowdley, K. and others. Safety and efficacy of interferon-free regimens of ABT-450/r, ABT-267 and ABT-33 +/- ribavirin in patients with chronic genotype 1 infection: results from the Aviator study. EASL 2013. Abstract 3.

Lawitz, E. and others. Sofosbuvir for previously untreated chronic hepatitis C infection. New England Journal of Medicine. April 23, 2013 (Epub ahead of print).

Lawitz, E. and others. Sofosbuvir + peginterferon + ribavirin for 12 weeks achieves 90% SVR12 in genotype 1, 4, 5, or 6 HCV infected patients: the NEUTRINO study. EASL 2013. Abstract 1411.

Manns, M. and others. High sustained viral response at 12- and 24-week follow-up of MK-5172 with pegylated interferon alfa-2b and ribavirin (PR) in HCV genotype 1 treatment-naive non-cirrhotic patient. EASL 2013. Abstract 66.

Manns, M. and others. Simeprevir (TMC435) with peginterferon/ribavirin for treatment of chronic HCV genotype 1 infection in treatment-naive patients: results from QUEST-2 a phase III trial. EASL 2013. Abstract 1413.

Nelson, D. and others. All oral therapy with sofosbuvir+ribavirin for 12 or 16 weeks in treatment experienced GT2/3 HCV-infected patients: results of the phase 3 FUSION trial. EASL 2013. Abstract 6.

Rutter, K. and others. Safety of triple therapy with telaprevir or boceprevir in hepatitis C patients with advanced liver disease – predictive factors for sepsis. EASL 2013. Abstract 65.

Sulkowski, M. and others. Sustained virologic response with daclatasvir plus sofosbuvir +/-± ribavirin (RBV) in chronic HCV genotype (GT) 1-infected patients who previously failed telaprevir (TVR) or boceprevir (BOC). EASL 2013. Abstract 1417.

Verna, E. and others. A multicenter study of protease inhibitor-triple therapy in HCV-infected liver transplant recipients: report from the CRUSH-C group EASL 2013. Abstract 23.

Source

April 13, 2013

Merck to Present New Data on VICTRELIS® (boceprevir) and Investigational Compounds MK-5172 and Vaniprevir for Chronic Hepatitis C Virus at The International Liver CongressTM / 2013 EASL Annual Meeting

logo_Merck_no_be_well

Monday, April 8, 2013 10:37 am EDT

WHITEHOUSE STATION, N.J.--(BUSINESS WIRE)--

Merck (NYSE: MRK), known as MSD outside of the United States and Canada, announced today that two analyses of VICTRELIS (boceprevir) and data from Phase II studies of two of Merck’s investigational medicines for chronic hepatitis C virus (HCV) genotype 1, MK-5172 and vaniprevir (MK-7009), will be presented at the 2013 International Liver Congress (EASL) Annual Meeting. The meeting will take place in Amsterdam from April 24-28, 2013.

Key Presentations About VICTRELIS 200 mg Capsules

  • Safety And Efficacy Of Boceprevir/Peginterferon/Ribavirin (Boc/P/R) Combination Therapy For Chronic HCV G1 Patients With Compensated Cirrhosis: A Meta-Analysis Of Five Phase III Clinical Trials, J.M. Vierling et al. Late Breaker. Thursday, April 25, 9:00- 18:00. RAI Convention Centre.
  • Virologic Response Rates Are Similar In Previously Untreated And Previously Treated And Relapsed Patients Receiving Boceprevir Triple Therapy: A Retrospective Analysis. Bacon, B. et al. Poster 791. Friday, April 26, 12:30-14:00. RAI Convention Centre.

Key Investigational Compound Presentations

  • High Sustained Viral Response at 12- and 24-week follow-up of MK-5172 with Pegylated Interferon alfa-2b and Ribavirin (PR) in HCV Genotype 1 Treatment-naïve Non-cirrhotic Patients. Manns, M. et al. Oral Presentation: Friday, April 26, 16:00-18:00, RAI Convention Centre.
  • MK-5172 In Combination With Peg-Interferon And Ribavirin Elicits Limited Resistance While Demonstrating Robust Efficacy In Treatment Naïve Genotype 1 Chronic HCV-Infected Patients. Howe, A. et al. Poster 1197. Saturday, April 27, 12:30-13:30. RAI Convention Centre.
  • Sustained Viral Response And Safety Of MK-7009 In Cirrhotic Treatment-Experienced Patients With Genotype 1 HCV Infection Who Have Failed Previous Pegylated Interferon And Ribavirin Treatment. Rodriguez-Torres, M. et al. Oral Presentation. Saturday, April 27, 8:30-10:30. RAI Convention Centre.

"We are pleased to present new data on VICTRELIS that will help inform health care professionals as they consider the use of VICTRELIS in appropriate patients," said Eliav Barr, M.D., vice president, Infectious Diseases, Project Leadership and Management, Merck Research Laboratories. "Merck is committed to helping reduce the burden of this serious disease worldwide. We look forward to sharing our new data about VICTRELIS and Merck's investigational medicines for chronic hepatitis C with the global scientific community."

MK-5172 is an investigational, once-daily, oral HCV NS3/4A protease inhibitor currently in Phase II development. Vaniprevir is an oral, twice-daily HCV NS3/4A protease inhibitor in Phase III development in Japan for the treatment of genotype 1 patients.

The abstracts were published today and can be accessed on the EASL website. For program information, please visit http://www2.kenes.com/liver-congress/pages/home.aspx.

Indications and usage for VICTRELIS

VICTRELIS® (boceprevir) is indicated for the treatment of chronic hepatitis C virus (HCV) genotype 1 (G1) infection, in combination with peginterferon alfa and ribavirin (PR), in adult patients (18 years and older) with compensated liver disease, including cirrhosis, who are previously untreated or who have failed previous interferon and ribavirin therapy, including prior null responders, partial responders, and relapsers.

The following points should be considered when initiating VICTRELIS for treatment of chronic HCV infection:

  • VICTRELIS must not be used as monotherapy and should only be used in combination with PR.
  • The efficacy of VICTRELIS has not been studied in patients who have previously failed therapy with a treatment regimen that includes VICTRELIS or other HCV NS3/4A protease inhibitors.
  • Poorly interferon responsive patients who were treated with VICTRELIS in combination with PR have a lower likelihood of achieving a sustained virologic response (SVR), and a higher rate of detection of resistance-associated substitutions upon treatment failure, compared to patients with a greater response to PR.

Important safety information about VICTRELIS

All contraindications to PR also apply since VICTRELIS must be administered with PR. Because ribavirin may cause birth defects and fetal death, VICTRELIS in combination with PR is contraindicated in pregnant women and in men whose female partners are pregnant. Avoid pregnancy in female patients and female partners of male patients. Patients must have a negative pregnancy test prior to therapy; have monthly pregnancy tests; and use 2 or more forms of effective contraception during treatment and for at least 6 months after treatment has concluded. One of these forms of contraception can be a combined oral contraceptive product containing at least 1 mg of norethindrone. Oral contraceptives containing lower doses of norethindrone and other forms of hormonal contraception have not been studied or are contraindicated.

VICTRELIS is contraindicated in patients with a history of a hypersensitivity reaction to VICTRELIS. VICTRELIS is contraindicated in coadministration with drugs that are highly dependent on CYP3A4/5 for clearance, and for which elevated plasma concentrations are associated with serious and/or life-threatening events. VICTRELIS is also contraindicated in coadministration with potent CYP3A4/5 inducers, where significantly reduced VICTRELIS plasma concentrations may be associated with reduced efficacy. Drugs that are contraindicated with VICTRELIS include: alfuzosin, carbamazepine, phenobarbital, phenytoin, rifampin, dihydroergotamine, ergonovine, ergotamine, methylergonovine, cisapride, St. John’s Wort (hypericum perforatum), lovastatin, simvastatin, drospirenone, Revatio® (sildenafil) or Adcirca®(tadalafil) (when used for the treatment of pulmonary arterial hypertension), pimozide, triazolam, and orally administered midazolam.

Anemia and/or Neutropenia – The addition of VICTRELIS to PR is associated with an additional decrease in hemoglobin concentrations compared with PR alone and/or may result in worsening of neutropenia associated with PR therapy alone. Dose reduction or discontinuation of peginterferon alfa and/or ribavirin may be required. If peginterferon alfa or ribavirin is permanently discontinued, VICTRELIS must also be discontinued. Dose reduction of VICTRELIS is not recommended. VICTRELIS must not be administered in the absence of PR.

Complete blood count (with white blood cell differential counts) must be conducted in all patients prior to initiating combination therapy with VICTRELIS. Complete blood counts should be obtained at Treatment Weeks 2, 4, 8, and 12, and should be monitored closely at other time points, as clinically appropriate. Serious acute hypersensitivity reactions (eg, urticaria, angioedema) have been observed during combination therapy with VICTRELIS and PR. If such an acute reaction occurs, combination therapy should be discontinued and appropriate medical therapy immediately instituted.

The most commonly reported adverse reactions (>35%) in clinical trials in adult patients receiving the combination of VICTRELIS with PR were: fatigue, anemia, nausea, headache, and dysgeusia. Of these commonly reported adverse reactions, fatigue, anemia, nausea, and dysgeusia occurred at rates ≥5% above the rates for PR alone in either clinical study. The incidence of these adverse reactions in previously untreated subjects that were treated with combination therapy with VICTRELIS compared with PR alone were: fatigue (58% vs 59%), anemia (50% vs 30%), nausea (46% vs 42%), and dysgeusia (35% vs 16%), respectively. The incidence of these adverse reactions in previous treatment failure patients that were treated with combination therapy with VICTRELIS compared with PR alone were: fatigue (55% vs 50%), anemia (45% vs 20%), nausea (43% vs 38%), and dysgeusia (44% vs 11%), respectively.

VICTRELIS is a strong inhibitor of CYP3A4/5 and is partly metabolized by CYP3A4/5. The potential for drug-drug interactions must be considered prior to and during therapy.

Please see U.S. prescribing information at: http://www.merck.com/product/usa/pi_circulars/v/victrelis/victrelis_pi.pdf

Merck's Global Commitment to Advancing Hepatitis Therapy

Merck is committed to building on its strong legacy in the field of viral hepatitis by continuing to discover, develop and deliver vaccines and medicines to help prevent and treat viral hepatitis. In hepatitis C, company researchers developed the first approved therapy for chronic HCV in 1991 and the first combination therapy in 1998. In addition to ongoing studies for our marketed and investigational medicines for the treatment of chronic HCV, extensive research efforts are underway to develop additional innovative oral therapies for viral hepatitis treatment.

About Merck

Today's Merck is a global healthcare leader working to help the world be well. Merck is known as MSD outside the United States and Canada. Through our prescription medicines, vaccines, biologic therapies, and consumer care and animal health products, we work with customers and operate in more than 140 countries to deliver innovative health solutions. We also demonstrate our commitment to increasing access to healthcare through far-reaching policies, programs and partnerships. For more information, visit www.merck.com and connect with us on Twitter, Facebook and YouTube.

Forward-Looking Statement

This news release includes “forward-looking statements” within the meaning of the safe harbor provisions of the United States Private Securities Litigation Reform Act of 1995. These statements are based upon the current beliefs and expectations of Merck’s management and are subject to significant risks and uncertainties. There can be no guarantees with respect to pipeline products that the products will receive the necessary regulatory approvals or that they will be commercially successful. If underlying assumptions prove inaccurate or risks or uncertainties materialize, actual results may differ materially from those set forth in the forward-looking statements.

Risks and uncertainties include but are not limited to, general industry conditions and competition; general economic factors, including interest rate and currency exchange rate fluctuations; the impact of pharmaceutical industry regulation and health care legislation in the United States and internationally; global trends toward health care cost containment; technological advances, new products and patents attained by competitors; challenges inherent in new product development, including obtaining regulatory approval; Merck’s ability to accurately predict future market conditions; manufacturing difficulties or delays; financial instability of international economies and sovereign risk; dependence on the effectiveness of Merck’s patents and other protections for innovative products; and the exposure to litigation, including patent litigation, and/or regulatory actions.

Merck undertakes no obligation to publicly update any forward-looking statement, whether as a result of new information, future events or otherwise. Additional factors that could cause results to differ materially from those described in the forward-looking statements can be found in Merck’s 2012 Annual Report on Form 10-K and the company’s other filings with the Securities and Exchange Commission (SEC) available at the SEC’s Internet site (www.sec.gov).

Please see Prescribing Information for VICTRELIS at http://www.merck.com/product/usa/pi_circulars/v/victrelis/victrelis_pi.pdf and Medication Guide for VICTRELIS at http://www.merck.com/product/usa/pi_circulars/v/victrelis/victrelis_mg.pdf.

Revatio® and Adcirca®are trademarks of their respective owners and are not trademarks of Merck & Co., Inc., Whitehouse Station, N.J., USA.
VICTRELIS®is a trademark of Schering Corp., a subsidiary of Merck & Co., Inc., Whitehouse Station, N.J., USA.

Contact:

Merck
Media:
Caroline Lappetito, 267-305-7369
Sarra Herzog, 908-423-6154
or
Investors:
Carol Ferguson, 908-423-4465
Justin Holko, 908-423-5088

Source

October 3, 2012

Next-Generation Protease Inhibitor Effective for HCV Infection

Patients who received vaniprevir achieved higher rapid virologic response rates than those who received placebo.

Adding telaprevir and boceprevir to standard peginterferon and ribavirin therapy has been shown to significantly improve virologic response rates for patients with genotype 1 hepatitis C virus (HCV) infection (JW Gastroenterol Jul 1 2011 and JW Gastroenterol Mar 30 2011). However, these first-generation HCV nonstructured protein (NS)3/4A protease inhibitors require a complex administration schedule and are associated with additional adverse effects.

To evaluate the efficacy and safety of vaniprevir (MK-7009) — a macrocyclic next-generation HCV NS3/4A protease inhibitor that is administered once or twice daily — investigators conducted an industry-funded, phase II, multicenter, randomized, double-blind, placebo-controlled, dose-ranging study involving 94 treatment-naive adults with chronic HCV genotype 1 infection. Patients were assigned to vaniprevir (300 mg twice daily, 600 mg twice daily, 600 mg daily, or 800 mg daily) or matched placebo in combination with peginterferon (180 μg weekly) and ribavirin (1000–1200 mg daily) for 4 weeks. Thereafter, all patients continued peginterferon and ribavirin for 44 weeks. The primary endpoint was rapid virologic response (RVR); exploratory endpoints included sustained virologic response (SVR).

All 94 patients completed the 4-week triple-dosing regimen. Of these, 78 completed 48 weeks of peginterferon and ribavirin treatment, and 84 completed a 6-month post-therapy follow-up. The rate of viral decline by week 4 was at least 3log10 IU/mL greater in the vaniprevir groups versus the placebo group. Rates of RVR were significantly higher in all vaniprevir groups versus the placebo group (68.8%–83.3% vs. 5.6%; P<0.001). SVR rates were nonsignificantly higher in the vaniprevir groups than the placebo group (61.1%–84.2% and 63.2%, respectively), likely due to the small sample size. Safety profiles were similar between the vaniprevir and placebo groups, except vomiting occurred more often in the vaniprevir groups. HCV resistance variants were noted in three patients receiving vaniprevir.

Comment: This phase II study of vaniprevir shows early promise for a next-generation protease inhibitor–based triple therapy that is easy to administer in a daily or twice-daily dosing schedule. Subsequent vaniprevir studies are needed to identify the optimal dose and duration of therapy to maximize SVR and maintain an excellent safety profile.

Atif Zaman, MD, MPH

Published in Journal Watch Gastroenterology September 28, 2012

Citation(s):

Manns MP et al. Vaniprevir with pegylated interferon alpha-2a and ribavirin in treatment-naïve patients with chronic hepatitis C: A randomized phase II study. Hepatology 2012 Sep; 56:884. (http://dx.doi.org/10.1002/hep.25743)

Medline abstract (Free)

Source