Showing posts with label EVR. Show all posts
Showing posts with label EVR. Show all posts

December 18, 2013

Noncompliance with guidelines for the treatment of hepatitis C is frequent in daily practice

Eur J Gastroenterol Hepatol. 2014 Jan;26(1):65-73. doi: 10.1097/MEG.0b013e328362dd03.

Niederau C, Mauss S, Böker K, Lutz T, Heyne R, Moog G, John C, Witthöft T, Alshuth U, Hüppe D.

Abstract

PURPOSE: In trials of pegylated interferons (PEG-IFNs), the lack of an early virological response (EVR) was associated with sustained virological response (SVR) rates of only 0-3%. The rates were similarly low when hepatitis C virus (HCV)-RNA was positive at week 24. Treatment guidelines therefore recommend 'stop rules' on the basis of HCV-RNA levels at weeks 12 and 24 of treatment. We analyzed the use of these rules under 'real-life' conditions.

PATIENTS AND METHODS: This was a prospective, community-based cohort study involving 467 physicians from institutions throughout Germany, including 4727 treatment-naive genotype-1 patients who received a full course of treatment with PEG-IFN α-2a plus ribavirin between 2003 and 2009.

RESULTS: The overall SVR rate was 43.1%. Failure to determine EVR decreased from 20% in 2003-2004 to 10% in 2006-2007. Unexpectedly, treatment was continued in 86.1% of patients without an EVR and in those who had an EVR but were HCV-RNA positive at week 24 (67.5%), resulting in SVR rates of 15.7 and 40.9%, respectively. Between 77.5 and 95.3% of physicians did not follow prescribed recommendations to reduce PEG-IFN or ribavirin in cases of hematological abnormalities.

CONCLUSION: Although recommendations to assess EVR and HCV-RNA at week 24 were increasingly observed in daily practice, the corresponding 'stop rules' in nonresponders were neglected. The subsequent SVR was 5-10 times higher than that reported in controlled trials. This may partly be because of the fact that reductions in PEG-IFN or ribavirin dose were not performed despite recommendations. The issue of stop rules will gain even more interest since the first HCV protease inhibitors have been approved. Prolongation of treatment beyond the new stop rules is associated with risks of resistant HCV variants. Thus, the new stop rules are to be observed more strictly when compared with previous therapy with interferons and ribavirin.

PMID: 23751351 [PubMed - in process]

Source

November 17, 2013

A simple rule to personalize standard dual therapy across all genotypes in naive chronic hepatitis C patients: The TT4 randomized trial

Digestive and Liver Disease

Available online 13 November 2013

In Press, Corrected ProofNote to users

Liver, Pancreas and Biliary Tract

Simona FranciosoaCristiana Almerighia, Paolo Forteb, Franco BandieracLorenzo NosottidRaffaella Lionettie, Gloria Talianif, Maria Rosaria Pirasg, Maria Laura Pontig, Giustino Parrutih, Francesco Di Candiloi, Silvia Gentilea, Paola Piccoloa, Angela Salsoa, Francesca Riccobellia, Sara Renzib, Maria Antonella Longoe, Marzia Montalbanoe, Salvatore Zaruc, Elisa Biliottif, Francesco Di Masih, Francesco Santopaoloa, Mario Angelicoa

a Hepatology and Liver Transplantation Unit, Department of Experimental Medicine and Surgery, Tor Vergata University, Rome, Italy
b G. Careggi Hospital, University of Florence, Italy
c SS Annunziata Hospital, Sassari, Italy
d National Institute for Health Migration and Poverty (NIHMP), Rome, Italy
e National Institute of Infectious Diseases, L. Spallanzani Hospital, Rome, Italy
f Department of Infectious and Tropical Diseases, Sapienza University, Rome, Italy
g G. Brotzu Hospital, Cagliari, Italy
h Ospedale Civile, Pescara, Italy
i S.M. Misericordia Hospital, Perugia, Italy

Abstract

Background Rapid and early virological responses to peginterferon-alpha and ribavirin are predictive of sustained virological response (SVR) in hepatitis C virus (HCV) infection. We aimed at finding a simple rule to determine the shortest duration of dual therapy for all HCV genotypes, obtained by multiplying time to Initial Viral Response, IVR (first undetectable HCV-RNA) by 4 (Tailored Therapy-4, or TT4).

Method 267 naïve HCV-infected patients with compensated liver disease were randomized (2:1) to the TT4 (n = 180) or current standard-of-care (SoC, n = 87) and received peginterferon-alpha plus ribavirin. Patients with HCV-RNA decrease ≤2 log10 at week 12 or detectable HCV-RNA at week 24 discontinued treatment.

Results Both groups had comparable baseline characteristics, SVR rates were similar in the whole population (60.6% vs. 60.9%) and within each genotype subgroup (G1: 46.6% vs. 55.6%; G2: 90.2% vs. 94.4%; G3: 74.1% vs. 58.3%; G4: 45.8% vs. 33.3%). Relapse rate was higher in G1-TT4 than G1-SoC. Treatment duration in SVR patients was shorter in TT4 compared to SoC, both overall [25 ± 15 vs. 36 ± 12.1 weeks], and for subgroups: G1 [35.3 ± 16.7 vs. 47.3 ± 2.6 weeks], G2 [18.3 ± 7.5 vs. 24 ± 2.8 weeks], G3 [15.2 ± 8.7 vs. 22.8 ± 3 weeks] and G4 [26.9 ± 13 vs. 48 weeks].

Conclusions In HCV-naive patients, TT4-rule treatment yields similar SVR rates compared to SoC but with shorter treatment duration and remarkable cost reduction.

Keywords HCV treatment; Dual therapy; Pegylated interferon; Ribavirin; Rapid viral response; Response-guided therapy; Individualized therapy

Source

August 31, 2013

Safety and Efficacy of Protease Inhibitors to Treat Hepatitis C After Liver Transplantation: a Multicenter Experience

Journal of Hepatology

Article in Press

Coilly Audrey, Roche Bruno, Dumortier Jérôme, Leroy Vincent, Botta-Fridlund Danielle, Radenne Sylvie, Pageaux Georges-Philippe, Si-Ahmed Si-Nafaa, Guillaud Olivier, Antonini Teresa Maria, Haim-Boukobza Stéphanie, Roque-Afonso Anne-Marie, Samuel Didier, Duclos-Vallee Jean-Charles

Received 18 February 2013; received in revised form 16 July 2013; accepted 15 August 2013. published online 30 August 2013.
Accepted Manuscript

Abstract

Background

Protease inhibitors (PI) with peg-interferon/ribavirin have significantly improved SVR rates in HCV G1 patients. Their use to treat HCV recurrence after liver transplantation (LT) is a challenge.

Methods

This cohort study included 37 liver transplant recipients (male: 92%, age 57±11years), treated with boceprevir (n=18) or telaprevir (n=19). The indication for therapy was HCV recurrence (fibrosis stage > than or equal to F2 (n=31, 83%) or fibrosing cholestatic hepatitis (n=6, 16%).

Results

Eighteen patients were treatment-naive, five were relapsers and 14 were non-responders to dual therapy after LT. Twenty-two patients received cyclosporine and 15 tacrolimus. After 12 weeks of PI therapy, a complete virological response was obtained in 89% of patients treated with boceprevir, and 58% with telaprevir (P=0.06). The end of treatment virological response rate was 72% (13/18) in the boceprevir group and 40% (4/10) in the telaprevir group (P=0.125). A sustained virological response 12 weeks after treatment discontinuation was observed in 20% (1/5) and 71% (5/7) of patients in the telaprevir and boceprevir groups, respectively (P=0.24). Treatment was discontinued in 16 patients (treatment failures (n=11), adverse events (n=5)). Infections occurred in ten patients (27%), with three fatal outcomes (8%). The most common adverse effect was anemia (n=34, 92%), treated with erythropoietin and/or a ribavirin dose reduction; thirteen patients (35%) received red blood cell transfusions. The cyclosporine dose was reduced by 1.8±1.1-fold and 3.4±1.0-fold with boceprevir and telaprevir, respectively. The tacrolimus dose was reduced by 5.2±1.5-fold with boceprevir and 23.8±18.2-fold with telaprevir.

Conclusions

Our results suggest that triple therapy is effective in LT recipients, particularly those experiencing a severe recurrence. The occurrence of anemia and drug-drug interactions, and the risk of infections, require close monitoring.

Keywords: Abbreviations

Keywords: ALT, alanine aminotransferase, AFEF, French Association for the Study of the Liver, AUC, area under the curve, BID, twice daily (bis in die), BOC, boceprevir, cEVR, complete early virological response, CNI, calcineurin inhibitors, CYP, cytochrome P450, EPO, erythropoietin, EOT, end of treatment response rate, EVR, early virological response, F, female, FCH, fibrosing cholestatic hepatitis, G1, genotype 1, GGT, gamma-glutamyl transferase, HBV, hepatitis B virus, HCC, hepatocellular carcinoma, HCV, hepatitis C virus, HIV, human immunodeficiency virus, IL, interleukin, INR, International Normalized Ratio, IS, immunosuppressive drugs, Kg, Kilogram, LT, liver transplantation, M, male, MELD, Model for End-stage Liver Disease, MMF, mycophenolate mofetil, NA, not available, NR, non-response, PCR, polymerase chain reaction, PEG-IFN, pegylated interferon, PI, protease inhibitors, QD, once a day (quaque die), RBV, ribavirin, RVR, rapid virological response, SVR12, sustained virological response 12 weeks after the end of therapy, TBC, trough blood concentration, TID, three times a day (ter in die), TVR, telaprevir, VB, virological breakthrough, VL, viral load, VR, virological response.

Keywords: Boceprevir, Drug-drug interaction, Early virological response, HCV recurrence, Liver transplantation, Protease inhibitors, Sustained virological response, Telaprevir

PII: S0168-8278(13)00613-2

doi:10.1016/j.jhep.2013.08.018

© 2013 Published by Elsevier Inc.

Source

July 30, 2013

Telaprevir safe, effective among older patients with chronic HCV

Provided by Healio

Furusyo N. J Hepatol. 2013;59:205-212.

July 30, 2013

Advanced age did not impact the efficacy of triple therapy with pegylated interferon, ribavirin and telaprevir among patients with hepatitis C genotype 1b in a recent study.

In a prospective study, researchers evaluated 120 patients with chronic hepatitis C genotype 1b, including 64 participants aged older than 60 years. All patients received peginterferon alfa-2b, ribavirin and telaprevir for 12 weeks, then 12 weeks of peginterferon and ribavirin. During prior therapy 53.3% of participants had relapsed, 22.5% were treatment-naive, 20.8% were prior nonresponders and 3.3% had an unknown prior response.

Undetectable HCV RNA (rapid virological response) was observed at 4 weeks in 73.4% of older patients and 73.2% of patients aged younger than 60 years. Sustained virological response at 24 weeks post-treatment occurred similarly between groups: 76.6% of older patients vs. 83.9% of younger patients (P=.314 for difference). Investigators said SVR was more common among all patients with the IL28B TT allele (89.4% of older and 91.9% of younger patients vs. 41.2% and 68.4% among those without; P<.05 for both comparisons).

Multivariate analysis indicated associations between SVR and RVR (OR=7.498; 95% CI, 1.014-65.42) and IL28B TT genotype (OR=14.93; 95% CI, 1.6-142.9), as well as prior nonresponse (OR=8.403; 95% CI, 1.025-66.667), among older patients. Independent associations with RVR and TT genotype also were noted among younger patients.

Treatment discontinuation for adverse events occurred in 12.5% of all cases. Hemoglobin decreases for levels of 100 g/L or more were observed in 41.1% of younger and 9.4% of older patients; between 85 g/L and 100 g/L in 25% and 40.6%, and less than 85 g/L was present in 33.9% and 50% of younger and older patients, respectively (P=.0006).

“This study shows there is no impact by age on the virological outcome of TVR-based triple therapy for HCV genotype 1b chronic hepatitis C,” the researchers concluded. “We found that older patients achieve a better virological outcome by TVR-based triple therapy than with the traditional dual therapy. IL28B genotyping and EVR indicate the potential to achieve an SVR in these difficult-to-treat older patients.”

Disclosure: The researchers report no relevant financial disclosures.

Source

June 13, 2013

Noncompliance with guidelines for the treatment of hepatitis C is frequent in daily practice

Eur J Gastroenterol Hepatol. 2013 Jun 6. [Epub ahead of print]

Niederau C, Mauss S, Böker K, Lutz T, Heyne R, Moog G, John C, Witthöft T, Alshuth U, Hüppe D.

aDepartment of Medicine, Katholische Kliniken Oberhausen, St Josef Hospital, Oberhausen bCenter for HIV and Hepatogastroenterology, Düsseldorf cCenter for Hepatology, Hannover dInfektiologikum Frankfurt, Frankfurt eLiver and Study Center Checkpoint fCenter of Gastroenterology, Berlin gMedical Office for Gastroenterology and Hepatology, Kassel hMedical Office for Gastroenterology and Hepatology, Stade iRoche Pharma AG, Virology, Grenzach-Wyhlen jCenter for Gastroenterology and Hepatology, Herne, Germany.

Abstract

PURPOSE: In trials of pegylated interferons (PEG-IFNs), the lack of an early virological response (EVR) was associated with sustained virological response (SVR) rates of only 0-3%. The rates were similarly low when hepatitis C virus (HCV)-RNA was positive at week 24. Treatment guidelines therefore recommend 'stop rules' on the basis of HCV-RNA levels at weeks 12 and 24 of treatment. We analyzed the use of these rules under 'real-life' conditions.

PATIENTS AND METHODS: This was a prospective, community-based cohort study involving 467 physicians from institutions throughout Germany, including 4727 treatment-naive genotype-1 patients who received a full course of treatment with PEG-IFN α-2a plus ribavirin between 2003 and 2009.

RESULTS: The overall SVR rate was 43.1%. Failure to determine EVR decreased from 20% in 2003-2004 to 10% in 2006-2007. Unexpectedly, treatment was continued in 86.1% of patients without an EVR and in those who had an EVR but were HCV-RNA positive at week 24 (67.5%), resulting in SVR rates of 15.7 and 40.9%, respectively. Between 77.5 and 95.3% of physicians did not follow prescribed recommendations to reduce PEG-IFN or ribavirin in cases of hematological abnormalities.

CONCLUSION: Although recommendations to assess EVR and HCV-RNA at week 24 were increasingly observed in daily practice, the corresponding 'stop rules' in nonresponders were neglected. The subsequent SVR was 5-10 times higher than that reported in controlled trials. This may partly be because of the fact that reductions in PEG-IFN or ribavirin dose were not performed despite recommendations. The issue of stop rules will gain even more interest since the first HCV protease inhibitors have been approved. Prolongation of treatment beyond the new stop rules is associated with risks of resistant HCV variants. Thus, the new stop rules are to be observed more strictly when compared with previous therapy with interferons and ribavirin.

Source

May 7, 2013

Early HCV Response More Likely With Peg-Interferon Alpha-2a Than -2b

Reuters Health Information

May 03, 2013

By Will Boggs, MD

NEW YORK (Reuters Health) May 03 - Patients with hepatitis C virus (HCV) are more likely to have an early response to pegylated interferon alpha-2a than alpha-2b, a new meta-analysis has found.

"The Cochrane meta-analysis about sustained virological response and our meta-analysis taking into account rapid virological response and early virological response (show that) the efficacy of peg-a-2a is superior to peg-a-2b and thus it is the first choice in the management of hepatitis C," Dr. Manuel Romero-Gomez from Valme University Hospital in Seville, Spain, told Reuters Health by email.

Dr. Romero-Gomez and colleagues pooled data from eight randomized trials that compared peginterferon alpha-2a and alpha-2b in 4,566 patients.

A complete early virological response (EVR) was achieved by 53.3% of patients treated with peginterferon alpha-2a and 43.8% of those treated with alpha-2b (p=0.0028), the authors reported April 14 online in Alimentary Pharmacology & Therapeutics.

Results were similar in a sub-analysis of patients infected with HCV genotypes 1 and 4, but the difference fell short of statistical significance.

Crude rates of rapid virological response (RVR) were higher for peginterferon alpha-2a than alpha 2-b (25.0% vs 16.8%; p=0.0056), and results were also significantly better for alpha-2a in a sub-analysis of patients infected with HCV genotypes 1 and 4 (p=0.0048).

"RVR and EVR are crucial in the management of therapy in hepatitis C because they allow us to make decision about futility rules, saving cost and adverse events," Dr. Romero-Gomez said. "Using peg-a-2a we can treat more patients with double therapy if they reach RVR or add boceprevir/telaprevir in patients without RVR."

"We need more data to define which patients have to be treated with peg-a-2a or peg-a-2b," Dr. Romero-Gomez cautioned. "According to baseline characteristics, pega-a-2a seems to be better in very difficult-to-cure patients (genotype 1 with advanced fibrosis and metabolic derangements), but this point needs to be confirmed in further studies."

SOURCE: http://bit.ly/11lmZED

Aliment Pharmacol Ther 2013.

Source

May 4, 2012

Standardization of Terminology of Virological Response in the Treatment of Chronic Hepatitis C

From Journal of Viral Hepatitis

Panel Recommendations

M. Jacobson; F. Poordad; R. S. Brown Jr; P. Y. Kwo; K. R. Reddy; E. Schiff

Posted: 05/03/2012; J Viral Hepat. 2012;19(4):236-243. © 2012 Blackwell Publishing

Abstract and Introduction
Abstract

Summary. The treatment paradigm for hepatitis C virus (HCV) infection is at a critical point in its evolution. The addition of a protease inhibitor to peginterferon plus ribavirin has become the new standard-of-care treatment for most patients. Data from clinical trials of new antivirals have been difficult to interpret and compare, partly because of heterogeneity in trial design, and partly because of inconsistencies in terminology used to define viral responses and the populations evaluated. Present definitions of viral responses for treatment with peginterferon and ribavirin are insufficient for novel treatment paradigms. Further, categorization of prior patient treatment experience in clinical trials, particularly of nonresponders to prior therapy, is inconsistent. Existing terms and definitions must be updated, standardized and/or redefined for easier interpretation of data and effective communication among clinicians. A panel of experts in HCV infection treatment met on 3 December 2009. Goals of the panel were to evaluate terms and definitions used traditionally in treatment with peginterferon and ribavirin, to refine and clarify definitions of existing terms that have varying meanings and to propose new terms and definitions appropriate for novel treatment paradigms emerging with development of new agents. A number of recommendations were accepted unanimously by the panel. Adoption of these terms would improve communication among investigators, enhance comparability among clinical trials, facilitate development of therapeutic guidelines and provide a standardized terminology for use in clinical practice.

Introduction

Over the past decade, the standard of care for the treatment of infection with HCV – 48 weeks of peginterferon alfa-2a or 2b plus ribavirin – yielded overall sustained virological response (SVR) rates of 42–46%.[1,2] The recent approval of direct-acting antiviral agents (DAA), such as the protease inhibitors telaprevir and boceprevir, represent a new standard of care for treatment-naïve and experienced patients. Many other DAAs are in development as well.

Not unexpectedly, these new agents have brought with them novel study designs, patient categorizations and treatment paradigms, which has led to some confusion over the terminology used at scientific meetings and in published articles, especially for terms relating to on-treatment virological response. The desirability of a standardized set of terms to allow comparisons between clinical trials led to the roundtable discussion among the investigators described herein. The purpose of the discussion was to evaluate, refine and standardize the definitions of existing terminology and to propose, where necessary, new terms and definitions appropriate for the novel treatment paradigms resulting from the next generation of antiviral agents.

Diagnostic Precision of Hepatitis C Virus RNA Assays

When seeking to apply standardized terminology that focuses on the presence, absence or degree of virological response experienced in patients with HCV, it is important to consider the diagnostic tests used to detect and quantify viral load. Previous qualitative HCV assays (e.g. Roche HCV Amplicor 2.0, Pleasanton, CA, USA) that measured viral load using endpoint polymerase chain reaction (PCR) have been replaced by quantitative assays that utilize real-time PCR (e.g. Roche COBAS TaqMan, Pleasanton, CA, USA; Abbott Realtime HCV RNA, Des Plaines, IA, USA) and transcription-mediated amplification technology (Quest Diagnostics Heptimax, Madison, NJ, USA). These newer commercial assays allow for the more accurate representation of HCV RNA levels given their high sensitivity, broad dynamic range and improved lower limits of detection (Table 1).[3–7] Given these differences, it is important to consider which HCV RNA assay is being used when utilizing the nomenclature or making cross-study comparisons of efficacy.

Table 1. Commercially available diagnostic assays for HCV3–7

 

Diagnostic assay* Lower limit of detection (IU/mL) Dynamic range of quantitation (IU/mL)
Roche HCV Amplicor 2.0 50 600–500 000
Roche COBAS TaqMan 2.0 HCV 10 25–390 000 000
Abbott Realtime HCV RNA 12 12–100 000 000 begin_of_the_skype_highlighting 12–100 000 000 end_of_the_skype_highlighting
Quest Diagnostics Heptimax 5 5–69 000 000

HCV, hepatitis C virus. *The COBAS Ampliprep is often used for sample preparation (i.e. automated vs manual RNA extraction) in conjunction with the listed diagnostic assays.

Current Terminology in the Context of Novel Therapies

In the two decades since the advent of interferon-based therapy for hepatitis C, investigators have developed terminology to characterize patient response to treatment. The term 'SVR' has been defined as being HCV RNA negative 6 months following treatment cessation. This became the standard endpoint for clinical trials and, given exceedingly low rates of relapse after that time point, has been interpreted as a 'cure'.[8] Other terms are associated with specific milestones in viral response that have been shown to be predictive of eventual SVR and are listed in Table 2.[8]

Table 2. Current definitions for virological response8

 

Virological response Definition Clinical utility
Rapid virological response (RVR) HCV RNA negative at treatment week 4 by a sensitive PCR-based quantitative assay May allow shortening of course for genotype 2 and 3 and possibly genotype 1 with low viral load
Early virological response (EVR) ≥2 log reduction in HCV RNA level compared with baseline HCV RNA level (partial EVR) or HCV RNA negative at treatment week 12 (complete EVR) Predicts lack of SVR
End-of-treatment response (ETR) HCV RNA negative by a sensitive test at the end of 24 or 48 weeks of treatment  
Sustained virological response (SVR) HCV RNA negative 24 weeks after cessation of treatment Sustained clearance or cure
Breakthrough Reappearance of HCV RNA in serum while still on therapy  
Relapse Reappearance of HCV RNA in serum after therapy is discontinued  
Nonresponder Failure to clear HCV RNA from serum after 24 weeks of therapy  
Null responder Failure to decrease HCV RNA by >1 log10 at 4 weeks or >2 log10 at 12 weeks of therapy  
Partial responder 2-log10 decrease in HCV RNA, but still HCV RNA positive at week 24  

HCV, hepatitis C virus; PCR, polymerase chain reaction.

The existing terminology has, for the most part, proved adequate for use in the development of study designs, communication of results and patient management in the context of peginterferon and ribavirin treatment. However, with new treatment paradigms and the introduction of new terms in recent studies of novel drugs, limitations of the current terminology have become apparent.

One example of this new terminology involves phase 3 studies of the protease inhibitor telaprevir, in which treatment-naïve patients evaluated response-guided therapy, with HCV RNA levels measured at weeks 4 and 12 (Fig. 1a,b). Patients with undetectable levels at each time point were said to have achieved 'extended rapid viral response' (eRVR),[9,10] which was required to stop therapy after a 24-week course instead of the 48-week course non-eRVR patients received.

762505-fig1

Figure 1. (a) ADVANCE and (b) ILLUMINATE study design. eRVR, extended rapid viral response (undetectable hepatitis C virus RNA at week 4 and week 12); PEG, peginterferon alfa-2a; RBV, ribavirin; TVR, telaprevir.

Lead-in dosing with peginterferon and ribavirin, used in the phase 3 development programme for boceprevir and incorporated into its approved treatment regimen, also poses particular terminological challenges because of potential ambiguity in designating response at various time points (Fig. 2a,b).[11,12] In the phase 3 SPRINT-2 trial, rapid virological response (RVR) criteria differed from the standard used in peginterferon/ribavirin trials: HCV RNA negativity by PCR after 4 weeks of peginterferon plus ribavirin treatment.[12] Instead, the SPRINT-2 trial criterion for the equivalent of 'RVR' was HCV RNA negativity at week 4 of boceprevir treatment, which was overall treatment week 8. For patients who achieved this milestone and remained negative at treatment week 24, all therapy was stopped. Meanwhile, patients with detectable HCV RNA at week 4 of boceprevir treatment to week 20, yet had undetectable HCV RNA at week 24, continued to receive peginterferon plus ribavirin alone for a total treatment duration of 48 weeks (Fig. 2b).[12] Thus, referring to response at week 4 of boceprevir as RVR may be confusing because that term refers to response at week 4 of treatment overall.

762505-fig2

Figure 2. (a) SPRINT-1 and (b) SPRINT-2 study design.11,12 Patients in all arms were followed for 24 weeks after the end of treatment. Lead-in = peginterferon alfa-2b (1.5 μg/kg/week) + ribavirin (800–1400 mg/day) for 4 weeks. BOC, boceprevir; PEG, peginterferon alfa-2b; RBV, ribavirin; TID, 3 times daily; 4/24/48, 4-week/24-week/48-week treatment duration; TW, treatment week.

With such challenges in mind, the panel proposed recommendations for terminology to be used in the reporting of clinical data pertaining to the treatment of chronic HCV infection, particularly data generated from studies of the new antiviral agents

Recommendations
Terminology for New Treatment Paradigms in Development

Two general terms have been widely used to describe new antiviral agents for the treatment of HCV infection. One is 'specifically targeted antiviral therapy for hepatitis C' (STAT-C), and the other is 'DAAs'. While STAT-C has appeal from the standpoint of pronunciation and specificity for the context of HCV therapy, the term 'DAA' has been adopted by the European Medicines Agency (EMEA) as its term of choice.[13] The US Food and Drug Administration has also used 'DAA' in the HIV arena and, more recently, in the HCV arena.[14] In recognition of the need to align with the terminology that appears likely to be adopted by regulatory agencies and others, the panel supports the future use of 'DAA'.

Terminology Relating to Treatment Experience

While the panel agreed that the term 'treatment naïve' is clear, 'treatment failure' was the subject of some debate. First, it does not adequately describe patients who stop therapy for reasons other than lack of response, such as discontinuation of treatment because of adverse events. Second, patient advocates argue that the word 'failure' should be avoided because of its pejorative connotations. While an alternative term 'treatment experienced' was discussed by the panel, it was decided to be too vague with regard to prior treatment success/failure. Therefore, the panel recommended that the term 'treatment failure' be retained but that physicians remain aware that this term may be perceived to have a negative connotation by patients or their families.

Recommendation 1: The terms 'treatment naïve' and 'treatment failure' should be retained in their current usages. The term 'treatment failure' may be refined with specific information about the nature of the failure (e.g. the regimen on which the patient failed and the nature of the failure – relapse, nonresponse and premature discontinuation for adverse events).

Definitions of Response

Sustained Virological Response The most common primary endpoint for clinical trials is SVR, which is defined as undetectable HCV RNA at 24 weeks after the end of treatment. Panel members felt that adding a number to the end of the acronym to represent the time of last-confirmed viral negativity, as has already been adopted in some presentations, would provide added clarity (e.g. SVR12 would stand for viral negativity at week 12 post-treatment). This may be important as the duration of therapy continues to shorten and late relapse may be seen beyond 24 weeks. The panel believes that a minimum follow-up period of 12 weeks is required before any terminology related to 'SVR' is used.

Recommendation 2: SVR is defined as undetectable HCV RNA levels at 24 weeks post-treatment. The term may be modified by adding a number to the end to indicate the time of the last documented negative HCV RNA result (e.g. SVR12 would mean negative HCV RNA levels at 12 weeks post-treatment).

End-of-treatment Response End-of-treatment response has been defined previously as HCV RNA negativity at the completion of treatment. The panel supported the continued use of this definition and agreed that the abbreviation 'end-of-treatment response' (ETR) is most appropriate.

Recommendation 3: An ETR is defined as undetectable HCV RNA levels at the end of treatment regardless of treatment duration.

Rapid Virological Response and Complete Early Virological Response Rapid virological response is generally defined as undetectable HCV RNA using a sensitive PCR assay at week 4 of therapy, while a complete early virological response (EVR) is defined as undetectable HCV RNA at week 12 of therapy. To simplify the nomenclature, the panel suggested that a new term be established: complete virological response (CVR), defined as an undetectable level of HCV RNA while the patient is still on treatment. To clarify the time point at which a patient achieves CVR, a number can be added to indicate the week of treatment (e.g. CVR4 and CVR12). Under this scheme, the term RVR will be replaced by CVR4, and complete EVR will be replaced by CVR12. These new terms will be very relevant to clinical studies of the DAAs, because in many trials complete viral suppression within a certain time frame will be required to allow continuation of therapy. Given the central role accorded 'extended' RVR (eRVR, attainment of RVR with maintenance of HCV RNA undetectability at subsequent time points) in studying response-guided therapy in major DAA trials to date, the term CVR allows for greater precision because it may be followed by a designation of the weeks at which HCV undetectability is required to have been demonstrated. Thus, HCV RNA undetectability at weeks 4 and 12 would be designated 'CVR4,12', while its undetectability at multiple time points, for example, weeks 4, 12, 16, 20, could be designated 'CVR4–20'.

Recommendation 4: A complete virological response (CVR#) is defined as an undetectable HCV RNA level during treatment, where # is the total treatment week at which time a negative HCV RNA level is first documented. CVR4 should thus replace the term 'RVR', and CVR12 should replace the term 'complete EVR'. The term eRVR should be replaced by CVR at the intended time points, starting with the first time point at which HCV RNA became undetectable.

Partial Early Viral Response and Partial Responder The panel agreed that that the term partial EVR has been a useful clinical tool. Clinicians have typically stopped peginterferon/ribavirin treatment for patients who fail to achieve at least a partial EVR because their likelihood of achieving an SVR is extremely low, but patients who do achieve a partial EVR still have a chance for SVR and may benefit from an extended treatment period. A partial responder has usually been defined as a patient who achieves at least a 2-log10 decline in HCV RNA level at treatment week 12 but who does not achieve an undetectable viral level by the end of treatment. However, this does not specify the duration of therapy to which the term applies. The panel proposed that the terms 'partial EVR' and 'partial responder' be supplanted by the more precise term 'partial virological response' (PVR), defined as a 2-log10 decline in HCV RNA level with detectable viraemia at a given treatment week. A number can be added to indicate the first or any subsequent treatment week at which the latest HCV RNA level was documented (e.g. PVR12). Using this nomenclature, the term 'partial EVR' is replaced by 'PVR12'. A partial response that persists to a subsequent time point can be designated by the addition of a second number, for example, a partial response that occurred at week 12 and persisted to week 24 could be designated as PVR12, 24. Note that the designation of PVR# can be adapted to novel treatment regimens using other criteria for degree of viral decline that may be more suitable in the context of such therapies.

Recommendation 5: A partial response (PVR#) is defined as a ≥ 2-log10 decrease in HCV RNA level but with detectable viraemia at treatment week #. A 'partial EVR' on peginterferon and ribavirin should be referred to as a PVR12.

Slow responder The term 'slow responder' has been used to describe a patient with detectable viraemia at treatment week 12 (generally with at least a 2-log10 decline) and whose HCV RNA level is undetectable at treatment week 24. Studies have suggested that extending therapy to 72 weeks can increase the chance of SVR in such patients.[15–17] However, some studies evaluating prolongation of extended therapy have used different criteria, such as failure to attain HCV RNA undetectability by week 4[18] or initial undetectability at week 12 after HCV RNA was positive at week 8.[19] The panellists decided there was no need for a term that is open to various interpretations when the time point can be specified in the term itself. The proposed term CVR24 clearly indicates that the first documentation of an undetectable HCV RNA level occurred at treatment week 24. In this context, a 'slow responder' would be referred to as 'PVR12, CVR24'. This terminology can be readily adapted to the study of other time points for initial HCV RNA undetectability as a determinant of treatment duration.

Recommendation 6: Use the term 'CVR24' to indicate the initial attainment of a complete response by treatment week 24 instead of 'slow responder'.

Nonresponder The panel agreed that the term should be defined as a patient who never achieved an undetectable (i.e. CVR) level of HCV RNA during or at the end of treatment.

Recommendation 7: A nonresponder is defined as any patient who never achieved undetectable serum HCV RNA level on treatment or at the end of treatment.

Null Responder The historical definition of a null responder has been either a patient who achieves less than a 1-log10 decline in HCV RNA level at treatment week 4 or one who achieves less than a 2-log10 decline in HCV RNA at treatment week 12. The panel proposed using the term 'null response' (NuR) followed by a number indicating the last time point of evaluation, with the following definitions:

Recommendation 8: NuR is defined as:

  • NuR4 = <1-log10 decline in HCV RNA level at treatment week 4.
  • NuR12 = <2-log10 decline in HCV RNA level at treatment week 12.

The patient should be categorized by last time point of evaluation. When used in clinical trials on retreatment, study investigators should define patients' degree of exposure to prior treatment. The use of these terms allows for additional refinement of patient groups. Thus, the term NuR4PVR12 denotes a patient with <1-log decline in HCV RNA at treatment week 4 but a ≥ 2-log decline by week 12.

Breakthrough and Viral Rebound The panel noted that there has been much confusion about the precise definition of the terms 'breakthrough' and 'viral rebound'. In the past, both 'breakthrough' and 'viral rebound' have been defined as greater than a 1-log10 increase in HCV RNA from nadir and a minimum level of 1000 IU/mL. Others have used the term 'breakthrough' to indicate at least a 2-log10 increase in HCV RNA level from nadir and a minimum level of 50 000 IU/mL. Still another definition of 'breakthrough' has been a greater than 1-log10 increase in HCV RNA from nadir or an increase to >100 IU/mL, provided that the HCV RNA level had been undetectable at some point during treatment. The panel suggested that the key difference between the terms 'breakthrough' and 'rebound' is whether the patient has achieved HCV RNA negativity (a CVR) at any point on treatment. A patient who has had a CVR on treatment but then becomes viraemic would fall into the category of breakthrough, but a patient who has had a decline in HCV RNA levels that stops short of a CVR and then experiences a rise in HCV RNA level would fall into the category of viral rebound.

Recommendation 9: Breakthrough is defined as the on-treatment presence of detectable HCV RNA on 2 consecutive serum tests conducted after a previous on-treatment serum test showed an undetectable level of HCV RNA with a real-time quantitative PCR or similarly sensitive test. The HCV RNA level must be at least 100 IU/mL on the second positive serum test.

Recommendation 10: Viral rebound is defined as an on-treatment 1-log10 increase in HCV RNA level from nadir and an absolute level of at least 1000 IU/mL in a patient who has not achieved an undetectable HCV RNA level during the current treatment regimen.

Terminology for Agents Utilizing the Lead-in Strategy

There was much discussion among the panel members about clarifying the terminology for the lead-in strategy. There was a consensus that the language must facilitate comparisons of clinical trial results among various agents, both those that are dosed with and without a lead-in strategy of peginterferon and ribavirin alone. Further, it was unanimously agreed that the new terminology should not create the misperception that treatment begins with the initiation of the targeted antiviral; the panel was definitive that treatment begins at the start of the lead-in period. It was agreed that the abbreviation Li4 (lead-in 4) before an abbreviation for response (e.g. Li4-CVR8) would be a clear way to indicate the exact time point during treatment at which the HCV RNA test was conducted. Another example of defining patterns of response using the terminologies proposed in this manuscript would be the term Li4-NuR4 (see 'recommendation 8'). This would indicate that at the end of a 4-week lead-in phase, the patient has had <1 log decline in HCV RNA. To stratify treatment outcomes between patients with intrinsically poor vs better interferon responsiveness, one could apply the terms Li4-NuR4 or Li4-R4, where the latter denotes a ≥ 1 log decline in HCV RNA after 4 weeks of lead-in therapy.

Recommendation 11: The abbreviation Li4 should be added as a prefix to on-treatment response terminology when the clinical study utilizes the lead-in strategy in which patients receive 4 weeks of treatment with peginterferon and ribavirin before the addition of the DAA to the regimen. Under this system, Li4-CVR8 would indicate an undetectable level of HCV RNA at triple therapy week 4 and total treatment week 8. As another example, Li4-CVR8, 24 would indicate an absence of detectable HCV RNA at total treatment weeks 8 and 24 after 4 weeks of lead-in therapy followed by the addition of a protease inhibitor, as is currently required to stop all therapy at total treatment week 28 in a response-guided therapy regime containing boceprevir. Finally, Li4-NuR4 would indicate a failure of HCV RNA to decline by at least 1 log after 4 weeks of lead-in therapy.

A summary of recommended terminology, with definitions, is presented in Table 3.

 

Table 3. Summary of recommendations for updated terminology

Term Definition
Treatment failure Patient who failed to achieve sustained virological response
Sustained virological response (SVR) Undetectable HCV RNA level at 24 weeks post-treatment
End-of-treatment response (ETR) Undetectable HCV RNA level at end of treatment regardless of treatment duration
Complete virological response (CVR); number at end represents week at which HCV RNA negativity is noted Undetectable HCV RNA level during treatment CVR4 should replace the old term RVR CVR12 should replace the old term cEVR CVR24 should replace the old term slow responder CVRx,y or x-y should replace the term eRVR
Partial virological response (PVR) ≥2-log10 decrease in HCV RNA level but with detectable viraemia at treatment week no. PR12 should replace the old term pEVR
Nonresponder Any patient who never achieved undetectable serum HCV RNA level on treatment or at the end of treatment
Null response (NuR) NuR4 = <1-log10 decline in HCV RNA level at treatment week 4 NuR12 = <2-log10 decline in HCV RNA level at treatment week 12
Breakthrough On-treatment presence of detectable HCV RNA on two consecutive serum tests conducted after a previous on-treatment serum test showed an undetectable level of HCV RNA with a real-time quantitative PCR or similarly sensitive test. The HCV RNA level must be at least 100 IU/mL on the second positive serum test
Viral rebound On-treatment 1-log10 increase in HCV RNA level from nadir and an absolute level of at least 1000 IU/mL in a patient who has not achieved an undetectable HCV RNA level during the current treatment regimen
Lead-in 4 (Li4) The abbreviation Li4 should be added as a prefix to on-treatment response terminology when the clinical study utilizes the lead-in strategy in which patients receive 4 weeks of treatment with peginterferon and ribavirin before the addition of the DAA to the regimen. Li4-CVR8 indicates an undetectable level of HCV RNA at triple therapy week 4 and total treatment week 8

DAA, direct-acting antiviral agent; HCV, hepatitis C virus; PCR, polymerase chain reaction; eRVR, extended rapid viral response.

Conclusions

The changing treatment landscape of HCV infection has highlighted a number of difficulties with the current definitions and terminology used in the standard-of-care HCV treatment paradigm. The authors of this report have presented recommendations that are intended both to clarify historical terminology and introduced new terms. The definitions contained in this report were designed to reflect current and future clinical practice and to standardize clinical trial design. It is of note that unanimous agreement was obtained on all issues in the present report. Although this proposal is not intended to represent guidelines for diagnosis or treatment, it is the hope of the panel that these recommendations will prove valuable for the development of a language common to clinical trials, the dissemination and comparison of clinical trial data, the development of new clinical guidelines, as well as for everyday use in clinical practice. It is very possible that future treatment paradigms will require a further modification of the nomenclature used to describe various scenarios in the treatment of hepatitis C.

References
  1. Fried MW, Shiffman ML, Reddy KR et al. Peginterferon alfa-2a plus ribavirin for chronic hepatitis C virus infection. N Engl J Med 2002; 347: 975–982.
  2. Manns MP, McHutchison JG, Gordon SC et al. Peginterferon alfa-2b plus ribavirin compared with interferon alfa-2b plus ribavirin for initial treatment of chronic hepatitis C: a randomised trial. Lancet 2001; 358: 958–965.
  3. Halfon P, Bourlière M, Pènaranda G, Khiri H, Ouzan D. Real-time PCR assays for hepatitis C virus (HCV) RNA quantitation are adequate for clinical management of patients with chronic HCV infection. J Clin Microbiol 2006; 44: 2507–2511.
  4. Gourlain K, Soulier A, Pellegrin B et al. Dynamic range of hepatitis C virus RNA quantification with the Cobas Ampliprep-Cobas Amplicor HCV Monitor v2.0 assay. J Clin Microbiol 2005; 43: 1669–1673.
  5. Quest Diagnostics Heptimax. Available at: http://www.questdiagnostics.com/hcp/intguide/jsp/showintguidepage. jsp?fn=TS_Heptimax.htm (accessed 30 August 2011).
  6. COBAS Taqman HCV test v2.0. Available at: http://molecular.roche.com/assays/Pages/COBASTaqMan HCVTestv20HPS.aspx (accessed 6 September 2011).
  7. Abbott press release. Available at: http://www.abbottmolecular.com/products/infectious-diseases/realtime-pcr/hepatitis-hcv-assay.html (accessed 12 September 2011).
  8. Ghany MG, Strader DB, Thomas DL, Seeff LB; American Association for the Study of Liver Diseases. Diagnosis, management, and treatment of hepatitis C: an update. Hepatology 2009; 49: 1335–1371.
  9. Jacobson IM, McHutchinson JG, Dusheiko G et al. Telaprevir for previously untreated chronic hepatitis C virus infection. N Engl J Med 2011; 364: 2405–2416.
  10. Sherman KR, Flamm SL, Afdhal NH et al. Response-guided telaprevir combination treatment for hepatitis C infection. N Engl J Med 2011; 365: 1014–1024.
  11. Kwo PY, Lawitz EJ, McCone J et al. Efficacy of boceprevir, an NS3 protease inhibitor, in combination with peginterferon alfa-2b and ribavirin in treatment-naive patients with genotype 1 hepatitis 1 infection (SPRINT-1): an open-label, randomised, multicentre phase 2 trial. Lancet 2010; 376: 705–716.
  12. Poordad F, McCone Jr J, Bacon BR et al. Boceprevir for untreated chronic HCV genotype 1 infection. N Engl J Med 2011; 364: 1195–1206.
  13. European Medicines Agency. Guideline on the clinical evaluation of direct acting antiviral agents intended for treatment of chronic hepatitis C. 2008. Available at: http://www.ema.europa.eu/docs/en_GB/document_library/Scientific_guide line/2009/09/WC500003401.pdf (accessed 3 January 2011).
  14. US Department of Health and Human Services, Food and Drug Administration (FDA), Center for Drug Evaluation and Research (CDER). Public hearing: expanded access to direct-acting antiviral agents for the treatment of chronic hepatitis C infection in patients with unmet medical need. 2010. Available at: http://www.fda.gov/downloads/Drugs/NewsEvents/UCM2134 44.pdf (accessed accessed 30 August 2011).
  15. Berg T, von Wagner M, Nasser S et al. Extended treatment duration for hepatitis C virus type 1: comparing 48 vs 72 weeks of peginterferon alfa-2a plus ribavirin. Gastroenterology 2006; 130: 1086–1097.
  16. Pearlman BC, Ehleben C, Saifee C. Treatment extension to 72 weeks of peginterferon and ribavirin in hepatitis C genotype 1 infected slow responders. Hepatology 2007; 46: 1688–1694.
  17. Ferenci P, Laferi H, Scherzer TM et al. Austrian Hepatitis Study Group. Peginterferon alfa-2a/ribavirin for 48 or 72 weeks in hepatitis C genotype 1 and 4 patients with slow virologic response. Gastroenterology 2010; 138: 503–512.
  18. Sánchez-Tapias JM, Diago M, Escartin P et al. TeraViC Study Group. Peginterferon alfa-2a plus ribavirin for 48 versus 72 weeks in patients with detectable hepatitis C virus RNA at week 4 of treatment. Gastroenterology 2005; 131: 451–460. Erratum in: Gastroenterology 2006; 131: 1363.
  19. Mangia A, Minerva N, Bacca D et al. Individualized treatment duration for hepatitis C genotype 1 patients: a randomized controlled trial. Hepatology 2008; 47: 43–50.

Source

March 10, 2012

The effect of pegylated interferon-alpha2b and ribavirin combination therapy for chronic hepatitis C infection in elderly patients

Published on: 2012-03-10

The clearance of hepatitis C virus infection by interferon therapy significantly reduces the incidence of hepatocellular carcinoma and death in elderly chronic hepatitis patients. However, there are few reports concerning the efficacy and safety of pegylated interferon-alpha2b plus ribavirin combination therapy in elderly patients.

The aims of the present study were to examine the effect and safety of pegylated interferon-alpha2b plus ribavirin combination therapy in 427 patients with chronic hepatitis C infection. We compared the rates of sustained virological response--defined as the absence of detectable hepatitis C virus in serum 24 weeks after the treatment ended--and the treatment discontinuation rate between 319 younger patients aged <65 years and 108 elderly patients aged [greater than or equal to]65 years.

We also examined the factors contributing to a sustained virological response.

Results: There was no significant difference in the sustained virological response rate between younger patients and elderly patients according to their hepatitis C virus genotype (41.5% (100/241) and 40.7% (35/86) for genotype 1; P = 0.899, 89.7% (70/78) and 86.4% (19/22) for genotype 2; P = 0.703, respectively). There was also no significant difference in the treatment discontinuation rate between the two age groups (10.3% (33/319) and 13.9% (15/108), respectively; P = 0.378).

There were no serious adverse events requiring hospitalization. The factors contributing significantly to a sustained virological response in elderly patients were gender, hepatitis C virus genotype, platelet count, and the presence of a rapid or early virological response (undetectable hepatitis C virus in serum at weeks 4 or 12 of treatment, respectively).

However, upon multivariate analysis, the presence of an early virological response was the only significant factor (odds ratio: 0.115, 95% confidence interval: 0.040-0.330, P <0.001).

Conclusions: The efficacy and safety of pegylated interferon-alpha2b plus ribavirin combination therapy in elderly patients are not always inferior to those in younger patients. Obtaining an early virological response may be essential to achieve a sustained virological response in elderly patients with chronic hepatitis C infection.

Author: Hiroki NishikawaEriko IguchiYorimitsu KoshikawaSoichiro AkoTadashi InuzukaHaruhiko TakedaJun NakajimaFumihiro MatsudaAzusa SakamotoSinichiro HenmiKeiichi HatamaruTetsuro IshikawaSumio SaitoRyuichi KitaToru KimuraYukio Osaki

Credits/Source: BMC

Source

January 9, 2012

Achillion Reports Clinical Data on Portfolio of Protease Inhibitors

Jan 9, 2012 (GlobeNewswire via COMTEX) --
       
Once-daily ACH-1625 safe, well-tolerated and achieves 100% cEVR after 12 weeks of treatment

Pilot study of ACH-1625 in HCV genotype 3 achieves maximal 3.68 log10 reduction

ACH-2684 safe, well tolerated and achieves HCV genotype 1 maximal 4.63 log10 reduction; Additional dosing on-going

NEW HAVEN, Conn., Jan. 9, 2012 (GLOBE NEWSWIRE) -- Achillion Pharmaceuticals, Inc. a leader in the discovery and development of small molecule drugs to combat the most challenging infectious diseases, today reported new clinical trial results on its portfolio of protease inhibitors including: Phase 2 interim 12-week treatment results with ACH-1625 for the treatment of genotype 1 treatment-naive hepatitis C virus (HCV), exploratory data on ACH-1625 for the treatment of HCV genotype 3, and initial proof-of-concept data for ACH-2684. Based upon these results, Achillion is planning further exploration of ACH-1625 in combination with other oral antiviral agents for the treatment of all HCV genotypes and continues to evaluate ACH-2684 in a Phase 1 clinical trial.

Michael D. Kishbauch, President and Chief Executive Officer of Achillion commented, "ACH-1625 is emerging as a fascinating and potentially superior, once-daily protease inhibitor that competes well against all other DAAs in development, regardless of their mechanism, based upon ACH-1625's safety, efficacy, genotypic coverage and emerging resistance mutation profile. Further, ACH-2684 shows preliminary promise in its ability to treat HCV, with a safety profile that looks very good, and over the next few months we will expand our clinical experience to define the dose response for its use across all HCV genotypes."

ACH-1625: Phase 2 12-Week Study Design and Interim Results

In the second segment of this ongoing Phase 2a trial, three doses of once-daily ACH-1625 (200 mg, 400 mg or 800 mg) in combination with pegylated interferon alfa-2a and ribavirin (P/R) were dosed over 12 weeks of therapy in patients with treatment-naive HCV genotype 1. Subjects were randomized and stratified by IL28B genotype, including CT and TT, which is a marker of a patient's diminished response to interferon.

Enrollment in this study of approximately 60 patients has been completed, and data on the first 35 patients enrolled were evaluated in this interim analysis. Of the patients enrolled, the majority had HCV genotype 1a (n=23/35 (66%)), with remaining patients having HCV genotype 1b (n=10) or genotype 1 (n=2). Approximately 66% of the patients were IL28B genotype CT/TT, the more difficult to treat mutation, 74% were male and approximately 14% were African American. No viral breakthroughs were observed during treatment. Preliminary results for the first 35 patients enrolled demonstrated rapid virological response (RVR) at week 4, and complete early virologic response (cEVR) and viral load reduction at week 12 as follows:

(Click on pictures to enlarge)

Ach1

Ach2

"We were pleased to note that regardless of IL28B status, 100% of patients treated through 12 weeks achieved cEVR and remained undetectable at this point in the study, and the potency and unique pharmacokinetic properties of ACH-1625 appear to provide very potent antiviral coverage for all of these genotype 1 patients," commented Dr. Elizabeth A. Olek, Chief Medical Officer of Achillion. "Patients appear to have continued on-treatment viral suppression, and we therefore look forward to determining end-of-treatment response rates for the fully enrolled study and to presenting complete study results in April."

Safety results from this segment of the trial were similar to those observed in the previously reported clinical trials of ACH-1625. Over 12 weeks of co-administration of ACH-1625 plus P/R, there was one reported serious adverse event (SAE) that was deemed unrelated to ACH-1625. Most reported adverse events (AEs) in patients receiving ACH-1625 were classified as mild to moderate and were transient. The most common AEs were consistent with pegylated interferon alfa-2a and ribavirin treatment.

ACH-1625: Pilot Phase 1 Study Evaluating Antiviral Activity against HCV Genotype 3 and Clinical Virology Assessment of HCV Genotype 1

Based upon in vitro virology, as well as evolving clinical pharmacokinetic and pharmacodynamic data, a Phase 1 pilot study was conducted to evaluate the antiviral activity of ACH-1625 for the treatment of HCV genotype 3. A total of seven patients infected with HCV genotype 3 were enrolled and treated with monotherapy consisting of 400 mg ACH-1625 twice daily for 4.5 days. In this exploratory study, ACH-1625 was safe and well tolerated. The maximum HCV genotype 3 RNA viral load reduction achieved was 3.68 log10 among the six out of seven patients that achieved an antiviral response.

In addition, clinical virology analysis of patient samples obtained during the first Phase 2 28-day study segment of ACH-1625 in combination with P/R examined the resistance mutation profile following treatment. The results indicated that following 28 days of treatment with ACH-1625 the presence of highly resistant variants were not detected.

"These findings suggest that ACH-1625 maintains high concentrations in the liver, the site of infection, resulting in a unique pharmacokinetic drug profile. These positive clinical results in genotype 3, along with the strong virologic profile of ACH-1625, have led us to take a broad look at the role of ACH-1625 in our future proprietary combination regimen," commented Milind Deshpande, Ph.D., President of Research and Development and Chief Scientific Officer.

ACH-2684: Phase 1 Healthy Volunteers and HCV Genotype 1 and 3 Segments

This Phase 1 clinical study is a randomized, double-blind, placebo-controlled trial to investigate the safety, tolerability, pharmacokinetic profile and antiviral activity of ACH-2684. Healthy volunteers in the single ascending dose (SAD) segment received doses of ACH-2684 ranging from 10 mg once daily to 300 mg twice daily. The first cohorts of HCV-infected patients were enrolled and treated with ACH-2684 administered as 400 mg twice daily for 2.5 days.

ACH-2684 was well tolerated at all doses and there were no serious adverse events, no clinically significant changes in vital signs, ECGs, or laboratory evaluations. All reported adverse events were classified as mild or moderate, were transient and showed no apparent dose relationship.

Proof-of-concept was achieved with ACH-2684 in HCV genotype 1 demonstrating a maximum HCV RNA viral load reduction of 4.63 log10. Antiviral activity with ACH-2684 in HCV genotype 3 was seen with a maximum HCV RVA viral load reduction of 2.03 log10. Additional cohorts of patients with either HCV genotype 1 or HCV genotype 3 are currently being enrolled to further explore doses and viral kinetics for ACH-2684.

All-Oral Protease Inhibitor and NS5A Inhibitor Combination Will Play an Important Role

During 2012 Achillion plans to conduct a number of clinical trials to further characterize its portfolio of protease inhibitors, including ACH-1625 and ACH-2684, and its NS5A inhibitors, including ACH-2928 and ACH-3102. In addition to the ongoing Phase 1 trials with ACH-2684 and ACH-2928, Achillion plans to submit an investigational new drug (IND) application and initiate a Phase 1 clinical trial with ACH-3102 during the second quarter of 2012. During the second half of 2012, Achillion plans to initiate an all-oral interferon-free combination study which will evaluate a protease inhibitor and a NS5A inhibitor, with or without ribavirin, for the treatment of HCV.

"We believe that the protease and NS5A inhibitor combination will play an important role in the future treatment of HCV across all genotypes," commented Mr. Kishbauch. "With the robust portfolio we have discovered and developed here at Achillion, we believe we are uniquely positioned to advance a potentially best-in-class all-oral, interferon-free combination and are looking forward to initiating clinical development with this regimen later in the year."

About ACH-1625

ACH-1625 is a pan-genotypic HCV protease inhibitor designed and synthesized based on crystal structures of enzyme/inhibitor complex. ACH-1625 is an open chain, non-covalent, reversible inhibitor of NS3 protease. In preclinical studies, ACH-1625 demonstrated high potency, unique pharmacokinetic properties and an excellent safety profile at high drug exposures. ACH-1625 has rapid and extensive partitioning to the liver, as well as high liver/plasma ratios. ACH-1625 has shown low single-digit nanomolar potency that is specific to HCV. It is equipotent against HCV genotypes 1a and 1b at IC50 of approximately 1nM. ACH-1625 is currently in a Phase 2 clinical trial and has shown clinical antiviral activity against genotypes 1 and 3. Fast Track status was granted to ACH-1625 in 2012 for the treatment of chronic HCV.

About ACH-2684

ACH-2684 is a next-generation HCV protease inhibitor designed and synthesized based on crystal structures of enzyme/inhibitor complex. ACH-2684 is a macro-cyclic, non-covalent, reversible inhibitor of NS3 protease. In preclinical studies, ACH-2684 demonstrated pico-molar potency, excellent pharmacokinetic properties and safety profile at high drug exposures. ACH-2684 also exhibits rapid and extensive partitioning to the liver, as well as high liver/plasma ratios in preclinical studies. ACH-2684 has shown pico-molar potency against NS3 protease that is specific to HCV. It has preclinical activity against the 6 known genotypes of HCV and exhibits equipotent activity against HCV genotypes 1a and 1b at an IC50 of approximately 100 pico-molar. The drug candidate was discovered internally and is being advanced by Achillion.

About HCV

The hepatitis C virus is the most common cause of viral hepatitis, which is an inflammation of the liver. It is currently estimated that more than 170 million people are infected with HCV worldwide including nearly 4 million people in the United States, more than twice as widespread as HIV. Three-fourths of the HCV patient population is undiagnosed; it is a silent epidemic and a major global health threat. Chronic hepatitis, if left untreated, can lead to permanent liver damage that can result in the development of liver cancer, liver failure or death. Few therapeutic options currently exist for the treatment of HCV infection. The current standard of care is limited by its specificity for certain types of HCV, significant side-effect profile, and injectable route of administration.

About Achillion Pharmaceuticals

Achillion is an innovative pharmaceutical company dedicated to bringing important new treatments to patients with infectious disease. Achillion's proven discovery and development teams have advanced multiple product candidates with novel mechanisms of action. Achillion is focused on solutions for the most challenging problems in infectious disease including hepatitis C and resistant bacterial infections. For more information on Achillion Pharmaceuticals, please visit www.achillion.com or call 1-203-624-7000.

Forward-Looking Statements

This press release includes forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995 that are subject to risks, uncertainties and other important factors that could cause actual results to differ materially from those indicated by such forward-looking statements, including statements with respect to: the potency, safety, tolerability, effectiveness and other characteristics of Achillion's protease inhibitors and NS5A inhibitors; Achillion's expectations regarding timing for the commencement, completion and reporting of results of clinical trials of drug candidates in its protease inhibitor and NS5A inhibitor programs; the potential for its protease and NS5A inhibitor combination to play an important role in the future treatment of HCV across all genotypes; and Achillion's ability to advance a potentially best-in-class all-oral, interferon-free combination protease and NS5A inhibitor. Among the factors that could cause actual results to differ materially from those indicated by such forward-looking statements are risks relating to, among other things Achillion's ability to: replicate in later clinical trials positive results found in earlier stage clinical trials of ACH-1625, ACH-2684 and its other product candidates; advance the development of its drug candidates under the timelines it anticipates in current and future clinical trials; obtain necessary regulatory approvals; obtain patent protection for its drug candidates, and the freedom to operate under third party intellectual property; establish commercial manufacturing arrangements; identify, enter into and maintain collaboration agreements with appropriate third-parties; compete successfully with other companies that are seeking to develop improved therapies for the treatment of HCV; and raise the substantial additional capital needed to achieve its business objectives. These and other risks are described in the reports filed by Achillion with the U.S. Securities and Exchange Commission, including its Annual Report on Form 10-K for the fiscal year ended December 31, 2010 and its subsequent SEC filings.

In addition, any forward-looking statement in this press release represents Achillion's views only as of the date of this press release and should not be relied upon as representing its views as of any subsequent date. Achillion disclaims any obligation to update any forward-looking statement, except as required by applicable law.

This news release was distributed by GlobeNewswire, www.globenewswire.com

SOURCE: Achillion Pharmaceuticals, Inc.

Source