Showing posts with label RVR. Show all posts
Showing posts with label RVR. Show all posts

December 18, 2013

The treatment efficacy of pegylated interferon plus ribavirin therapy in chronic hepatitis C patients with mixed genotype 1/2 infection

J Gastroenterol Hepatol. 2013 Dec 10. doi: 10.1111/jgh.12467. [Epub ahead of print]

Huang CI, Huang CF, Huang JF, Dai CY, Yeh ML, Hsieh MY, Lin ZY, Chen SC, Wang LY, Yu ML, Chuang WL.

Abstract

BACKGROUND: The treatment efficacy of patients with mixed HCV genotype 1/genotype 2 (HCV-1/2) remains unknown.

AIM: We aimed to elucidate the sustained virological response (SVR) rate in patients with HCV-1/2 infection.

METHODS: 110 HCV-1/2 patients treated with response-guided peginterferon/ribavirin therapy (24 weeks for patients with a rapid virological response [RVR] and low viral loads; 48 weeks for patients without a RVR or high viral loads) were allocated. 200 HCV-1 patients were selected as a historical control. Interleukin-28B (IL-28B) rs8099917 genotype was tested for the association with an SVR.

RESULTS: The rates of RVR, SVR and relapse rate were 71.8%, 87.3% and 11.1%, respectively. The SVR rate was significantly higher in patients with an abbreviated regimen as compared with those with 48-week regimen (95.5% vs. 75.0 %, P=0.002), and both were similar to the HCV-1 historical control. Stepwise logistic regression analysis revealed that lower baseline viral loads was the single factor predictive of an RVR (odds ratio/95% confidence intervals [OR/CI] of 41.62/9.72-178.19, P<0.001). The achievement of an RVR was the single best factor predictive of an SVR (OR/CI: 7.5/1.33-42.27, P=0.02). Nevertheless, an abbreviated regimen became the single factor associated with an SVR if treatment regimen was taken into consideration (OR/CI: 11.0/1.25-96.79, P=0.03). The SVR rate did not differ between patients with rs8099917 TT and TG/GG genotype (91.7% vs. 87.5%, P=0.63).

CONCLUSIONS: The treatment efficacy of patients with HCV-1/2 was satisfactory. The role of IL-28B genetic variants in the population with response guided therapy was limited.

This article is protected by copyright. All rights reserved.

KEYWORDS: HCV, IL-28B, RGT, mixed infection, treatment

PMID: 24325201 [PubMed - as supplied by publisher]

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November 19, 2013

Hepatitis C genotype 1 virus with low viral load and rapid virologic response to peginterferon/ribavirin obviates a protease inhibitor

Hepatology

Early View (Online Version of Record published before inclusion in an issue)

Viral Hepatitis

Brian L. Pearlman1,2,3,4,*, Carole Ehleben2

Article first published online: 18 NOV 2013

DOI: 10.1002/hep.26624

Copyright © 2013 by the American Association for the Study of Liver Diseases

Potential conflict of interest: Dr. Pearlman has been on the speaker's bureau for Merck; C.E. has no conflicts of interest.

Abstract

The new standard of care for treatment-naïve patients with hepatitis C virus (HCV) genotype 1 includes triple therapy with peginterferon, ribavirin, and a protease inhibitor. However, patients who achieve a rapid virologic response after 4 weeks of peginterferon and ribavirin therapy are likely to achieve a sustained virologic response (SVR), and we hypothesized that protease inhibitor therapy may be unnecessary in these patients. Treatment-naïve, noncirrhosis patients infected with genotype-1 HCV and a low viral load at baseline were considered for inclusion (n = 233). After 4 weeks of lead-in therapy with peginterferon α-2b and ribavirin, 101 patients (48%) had a rapid virologic response (defined as undetectable levels of hepatitis C virus RNA at 4 weeks) and were eligible to participate. Patients were randomized 1:1 to 20 weeks of additional therapy with peginterferon α-2b and ribavirin (double therapy) or to 24 weeks of peginterferon α-2b, ribavirin, and boceprevir (triple therapy). There was no significant difference in rates of SVR-12 in patients treated with double versus triple therapy. This similarity persisted regardless of viral subtype (genotype 1a or 1b), interleukin (IL)−28b genotype (CC or non-CC), or ethnicity (African American versus non-Hispanic white). Conclusion: Protease inhibitor therapy could be obviated in genotype 1-infected treatment-naïve patients with low viral load at baseline who achieve undetectable viremia after 4 weeks of peginterferon/ribavirin.(Hepatology 2013)

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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

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November 12, 2013

Triple combination therapy for hepatitis C with telaprevir exhibits greater early antiviral activity than with boceprevir

Original article

José M Benito, Clara Sánchez-Parra, Ivana Maida, Antonio Aguilera, Norma I Rallón, Fernanda Rick, Pablo Labarga, José V Fernández-Montero, Pablo Barreiro, Vincent Soriano

Corresponding author name: Pablo Barreiro
Corresponding author e-mail: pmbarreiro@gmail.com

doi: 10.3851/IMP2614

Date accepted: 01 April 2013
Date published online: 03 May 2013

Abstract

Background: Achievement of early viral suppression is important in patients with chronic HCV infection treated with telaprevir (TLV) or boceprevir (BOC) to avoid selection of drug resistance and attain cure. No head-to-head studies comparing TLV and BOC have been performed so far.

Methods: All consecutive individuals who initiated triple HCV therapy with TLV or BOC outside clinical trials at three European clinics were evaluated. Rapid virological response (RVR) was defined as unquantifiable HCV RNA (<25 IU/ml) at week 4 for TLV and at week 8 for BOC (4 weeks after lead-in).

Results: A total of 106 patients were evaluated, 33 treated with BOC and 73 with TLV. Median age, gender, body mass index, baseline HCV RNA, HCV subtype 1a (45% versus 42%) and IL28B-CC alleles (29% versus 23%) did not differ significantly in BOC and TLV groups, respectively. HIV coinfection was more prevalent in patients on TLV than BOC (24% versus 44%). Conversely, more patients on BOC than TLV had previously failed pegylated interferon plus ribavirin (82% versus 64%). RVR was achieved by 82% of patients on TLV versus 59% on BOC (P=0.001). Multivariate logistic regression analysis confirmed that TLV use was the strongest predictor of RVR (OR 3.54 [95% CI 1.23, 10.24]; P=0.02), others being HCV subtype 1b versus 1a (OR 3.26 [95% CI 1.17, 9.09]; P=0.02) and low baseline HCV RNA (OR 0.41 [95% CI 0.16, 1.03]; P=0.06). Prior interferon exposure, HIV coinfection or absence of advanced liver fibrosis did not influence the likelihood of RVR.

Conclusions: Compared to BOC, triple therapy with TLV produces greater RVR rates. TLV might be a better option in more difficult-to-cure patients, such as those with high baseline HCV RNA and/or HCV 1a subtype. HIV coinfection does not influence early HCV RNA responses.

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October 28, 2013

Temperature rise after peginterferon alfa-2a injection in patients with chronic hepatitis C is associated with virological response and is modulated by IL28B genotype

J Hepatol. 2013 Nov;59(5):957-63. doi: 10.1016/j.jhep.2013.07.004. Epub 2013 Jul 10.

Han H, Noureddin M, Witthaus M, Park YJ, Hoofnagle JH, Liang TJ, Rotman Y.

Liver Diseases Branch, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD, United States.

Abstract

BACKGROUND & AIMS: Interferon treatment for chronic hepatitis C is associated with non-specific symptoms including fever. We aimed to determine the association of temperature changes with interferon antiviral activity.

METHODS: 60 treatment-naïve patients with chronic hepatitis C (67% genotype 1/4/6, 33% genotype 2/3) were admitted to start peginterferon alfa-2a and ribavirin in a clinical trial. Temperature was measured at baseline and 3 times daily for the first 24h and the maximal increase from baseline during that time (ΔTmax) was determined. Serum HCV-RNA, interferon-gamma-inducible protein-10 (IP-10) and expression of interferon-stimulated genes (ISGs - CD274, ISG15, RSAD2, IRF7, CXCL10) in peripheral blood mononuclear cells (PBMCs) were measured at very early time points, and response kinetics calculated. The IL28B single nucleotide polymorphism, rs12979860, was genotyped.

RESULTS: Temperatures rose by 1.2±0.8°C, peaking after 12.5h. ΔTmax was strongly associated with 1st phase virological decline (r=0.59, p<0.0001) and was independent of gender, cirrhosis, viral genotype or baseline HCV-RNA. The association with 1st phase decline was seen in patients with rs12989760CC genotype (r=0.65, p<0.0001) but not in CC/CT (r=0.13, p=0.53) and patients with CC genotype had a higher ΔTmax (1.4±0.8°C vs. 0.8±0.6°C, p=0.001). ΔTmax was associated with 6- and 24-h induction of serum IP-10 and of PBMC ISG expression, but only in patients with rs12989760CC. ΔTmax weakly predicted early virological response (AUC=0.68, CI 0.49-0.88).

CONCLUSIONS: Temperature rise following peginterferon injection is closely associated with virological response and is modulated by IL28B polymorphism, reflecting host interferon-responsiveness.

Published by Elsevier B.V.

KEYWORDS: EVR, Fever, HCV, Hepatitis C, IFN, IL28B, IP-10, ISG, Interferon alfa, PGE2, PegIFN, RVR, SVR, Temperature, Treatment, early virological response, hepatitis C virus, interferon, interferon-gamma-inducible protein-10, interferon-stimulated gene, peginterferon alfa 2a, prostaglandin E2, rapid virological response, sustained virological response

PMID: 23850879 [PubMed - in process]

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October 20, 2013

Video: Study determines SVR predictors in HIV/HCV coinfected patients

Provided by Healio

October 19, 2013

BRUSSELS — Christoph Boesecke, MD, an infectious disease specialist at Bonn University Hospital in Germany, reviews his poster presentation here at EACS 2013 on factors associated with treatment response in patients with HIV/HCV coinfection. Study results indicate that rapid virological response 4 weeks after the initiation of dual treatment (pegylated interferon and ribavirin) and genotypes 2 and 3 predicted SVR in patients.

Disclosure: Boesecke reports no relevant financial disclosures.

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October 11, 2013

Various predictors of sustained virologic response in different age groups of patients with genotype-1 chronic hepatitis C

J Clin Gastroenterol. 2013 Oct;47(9):794-9. doi: 10.1097/MCG.0b013e31829d2064.

Lin CY, Sheen IS, Chen JY, Huang CW, Huang CH, Jeng WJ, Chen WT.

Departments of *Gastroenterology and Hepatology ‡Rheumatology, Allergy and Immunology, Linkou Medical Center, Chang Gung Memorial Hospital †School of Medicine, College of Medicine, Chang Gung University, Taoyuan, Taiwan.

Abstract

BACKGROUND: Age is one of the sustained virologic response (SVR) predictors for genotype-1 chronic hepatitis C patients treated with pegylated interferon-α/ribavirin. However, variation of SVR predictors in different age groups was not explored before. We therefore conducted this study for investigating this issue.

METHODS: We retrospectively analyzed 265 genotype-1 chronic hepatitis C patients who received pegylated interferon-α/ribavirin treatment. These patients were divided into 3 age groups. Clinical parameters including the genotype of rs12979860 were analyzed.

RESULTS: SVR rate was highest in patients younger than 45 years and lowest in patients older than 65 years even through propensity score matching analysis. As for rapid virologic response (RVR) predictors, genotype of rs12979860 was the predictor for the patients younger than 45 years and patients aged between 45 and 65 years, but no RVR predictor was found for patients older than 65 years. As for the SVR predictors, HbA1c, baseline viral load, and RVR but not genotype of rs12979860 were the predictors in patients younger than 45 years. For patients between 45 and 65 years, the predictors for SVR were liver fibrosis, genotype of rs12979860, and RVR. For patients older than 65 years, RVR was the only predictor for SVR.

CONCLUSIONS: SVR predictors are various in different age groups. RVR is the SVR predictor for all age groups, but the genotype of rs12979860 is the SVR predictor only for patients with age between 45 and 65 years but not younger or older patients.

PMID: 23842218 [PubMed - in process]

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September 6, 2013

RVR, baseline characteristics identify patients who will benefit from dual HCV therapy

Provided by Healio

Andriulli A. J Hepatol. 2013;doi:10.1016/j.jhep.2013.07.040.

September 3, 2013

A model incorporating IL28B genotype, fibrosis stage, viral load and rapid virologic response was predictive of benefit from dual therapy among patients with chronic hepatitis C in a recent study.

In a retrospective analysis, researchers evaluated 1,045 treatment-naïve Caucasian patients with chronic HCV genotype 1 treated with pegylated interferon and ribavirin according to two models: The first incorporated only baseline variables associated with sustained virologic response at 24 weeks post-treatment (SVR), with the second model also included rapid virologic response at 4 weeks of therapy (RVR).

SVR occurred in 39.6% of participants, while RVR occurred in 24.4% of cases. Patients who achieved RVR also achieved SVR in 80% of cases, while SVR without RVR occurred in 26.6% of participants.

During analysis using the baseline predictor-only model, factors associated with SVR via multivariate analysis included IL28B CC genotype (OR=5.082, 3.637-7.101), viral load below 400,000 IU/mL (OR=2.907, 2.111-4.004), fibrosis of stage 2 or lower (OR=1.631, 1.122-2.372) and diabetes (OR=0.528, 0.286-0.972). Analysis according to the second strategy also indicated that RVR was significantly associated with SVR (OR=6.273, 4.274-9.208), along with CC genotype (OR=3.306, 2.301-4.751), low viral load (OR=2.175, 1.542-3.07) and fibrosis stage 0-2 (OR=1.506, 1.012-2.242), along with RVR (OR=6.273, 4.274-9.208) (95% CI for all).

According to the first model, SVR probability ranged from 42.4% to 83.3% based on which predictors are present in the patient, with 83.3% probability observed among participants with CC genotype, early-stage fibrosis and low viral loads. According to the second model, patients who achieved RVR had a 100% chance of also achieving SVR if both CC genotype and low viral load were present, regardless of fibrosis stage, and approximately 80% probability with one predictor. Using this model, 19.1% of patients at week 4 had an 80% chance of achieving SVR.

“Until peginterferon and ribavirin constitute the backbone [of] new, triple therapies, we have to consider that conventional dual therapies are still effective and less expensive than triple therapies,” researcher Angelo Andriulli, MD, chief of the gastroenterology division at Csa Sollievo Sofferenza Hospital in San Giovanni Rotondo, Italy, told Healio.com. “The crucial point is to select patients most suitable to benefit from conventional dual therapies. … While the evaluation of baseline features may help to select the subset of patients with a high likelihood of viral clearance after therapy, attainment of viral clearance by the initial month of therapy is the strongest predictor of response.”

Disclosure: The researchers report no relevant financial disclosures.

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August 15, 2013

Polypharmacy and Comorbidity Are Associated with a Lower Early Virologic Response in Hepatitis C Patients Treated with First Generation Protease Inhibitor Triple Therapy: A Preliminary Analysis

Dig Dis Sci. 2013 Aug 8. [Epub ahead of print]

Juneja M, Euliano R, Satoskar R, Lewis JH.

Department of Medicine, Medstar Georgetown University Hospital, 3800 Reservoir Road, NW, G3041 Gorman Bldg, 3rd floor, Washington, DC, 20007-2113, USA, Manie.Juneja@gunet.georgetown.edu.

Abstract

BACKGROUND AND AIMS: The protease inhibitors (PIs) boceprevir and telaprevir are currently standard treatment as part of triple therapy regimens (TTx) for chronic HCV genotype 1 (GT1) patients. In this preliminary analysis, we have compared demographic variables, polypharmacy, and Charlson's comorbid index (CCI) with Rapid Virological Response (RVR) and extended RVR (eRVR) rates in HCV GT1 patients receiving PI containing TTx.

METHODS: Retrospective descriptive cohort study.

RESULTS: Among 74 HCV patients (46 M, 28 F; age: 54.43 ± 9.52 years; African Americans: 59.5 %) in this initial analysis, 44 % achieved RVR. All these RVR patients also achieved eRVR. Patients achieving RVR and eRVR were 50 ± 11.7 (mean ± SD) years old, compared to 58 ± 5.2 years without an RVR (p < 0.005). The average number of medications taken by patients achieving RVR and eRVR was 5 ± 2.7 compared to 9.24 ± 3.4 in patients not achieving RVR and eRVR (p < 0.005). Twenty-five percent of patients who were not on CYP3A4 inhibitors had an RVR and eRVR compared to 63.2 % who were taking CYP3A4 inhibitors (p = 0.001). Patients achieving RVR and eRVR had a lower CCI (1.61 ± 1.37) compared to those not achieving RVR and eRVR (2.8 ± 2.7; p = 0.02). Multivariate analysis also revealed a significant correlation between increased polypharmacy and CCI with lower RVR and eRVR rates.

CONCLUSIONS: These preliminary treatment data demonstrate that increased polypharmacy and higher degrees of comorbidity decrease RVR and eRVR rates among patients receiving first generation PI-containing TTx regimens.

PMID: 23925819 [PubMed - as supplied by publisher]

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July 30, 2013

Hepatitis C genotype 1 virus with low viral load and rapid virologic response to peginterferon/ribavirin obviates a protease inhibitor

Hepatology

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

Viral Hepatitis

Brian L. Pearlman1,2,3,4,*, Carole Ehleben2

DOI: 10.1002/hep.26624

© 2013 by the American Association for the Study of Liver Diseases

Publication History Accepted manuscript online: 19 JUL 2013 10:11AM EST, Manuscript Accepted: 3 JUL 2013, Manuscript Revised: 12 JUN 2013 , Manuscript Received: 6 MAY 2013

Abstract

Keywords: Sustained virologic response; rapid virologic response; African American; IL-28B; boceprevir

The new standard of care for treatment-naïve patients with hepatitis C virus (HCV) genotype 1 includes triple therapy with peginterferon, ribavirin, and a protease inhibitor. However, patients who achieve a rapid virologic response after 4 weeks of peginterferon and ribavirin therapy are likely to achieve a sustained virologic response (SVR), and we hypothesized that protease inhibitor therapy may be unnecessary in these patients. Treatment-naïve, noncirrhosis patients infected with genotype-1 HCV and a low viral load at baseline were considered for inclusion (n = 233). After 4 weeks of lead-in therapy with peginterferon α-2b and ribavirin, 101 patients (48%) had a rapid virologic response (defined as undetectable levels of hepatitis C virus RNA at 4 weeks) and were eligible to participate. Patients were randomized 1:1 to 20 weeks of additional therapy with peginterferon α-2b and ribavirin (double therapy) or to 24 weeks of peginterferon α-2b, ribavirin, and boceprevir (triple therapy). There was no significant difference in rates of SVR-12 in patients treated with double versus triple therapy. This similarity persisted regardless of viral subtype (genotype 1a or 1b), interleukin (IL)−28b genotype (CC or non-CC), or ethnicity (African American versus non-Hispanic white). Conclusion: Protease inhibitor therapy could be obviated in genotype 1-infected treatment-naïve patients with low viral load at baseline who achieve undetectable viremia after 4 weeks of peginterferon/ribavirin. (Hepatology 2013;)

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July 11, 2013

Simeprevir Shines in Hep C Trial

Gastroenterology and Endoscopy News

In the News

ISSUE: JULY 2013 | VOLUME: 64:7

by David Wild

Orlando, Fla.—Of patients who relapsed following treatment with peginterferon (PEG-IFN)-based therapy for chronic genotype 1 (GT1) hepatitis C virus (HCV) infection, 80% experienced rapid and sustained virologic response with triple therapy including PEG-IFN-2a, ribavirin (RBV) and simeprevir, an experimental oral, once-daily HCV NS3/4A protease inhibitor (PI). Results from the Phase III PROMISE study were presented at the 2013 Digestive Disease Week meeting (abstract 869b).

The findings led Gregory Gores, MD, executive dean for research at Mayo Clinic, Rochester, Minn., to speculate that simeprevir will soon be added to the clinician’s HCV treatment toolbox.

“The surprising efficacy of simeprevir triple therapy in patients who had relapsed after prior RBV plus PEG-IFN therapy, and in patients with advanced liver fibrosis, along with its once-daily dosing, minimal drug–drug interactions and good safety profile, make it likely the drug will be approved by the FDA for use in HCV patients,” said Dr. Gores, who was not involved in the research.

Eric Lawitz, MD, professor of medicine at the University of Texas Health Science Center and vice president of scientific and research development at the Texas Liver Institute in San Antonio, and his colleagues randomized 260 patients with HCV GT1 to receive the triple therapy and 133 similar patients to receive an oral placebo with PEG-IFN/RBV, both for 12 weeks, in a double-blind fashion. Simeprevir recipients who experienced a drop in HCV RNA below 25 IU/mL after four weeks of treatment and who had undetectable HCV RNA at 12 weeks received an additional 12 weeks of PEG-IFN/RBV alone, whereas those who did not meet these criteria received an additional 36 weeks of PEG-IFN/RBV treatment, for a total of 48 weeks. All placebo recipients received 36 weeks of PEG-IFN/RBV after the initial 12 weeks of placebo plus PEG-IFN/RBV treatment.

Dr. Lawitz reported that 77% of patients who received simeprevir experienced a rapid virologic response (RVR), and 79% had a sustained virologic response 12 weeks after treatment completion (SVR12). In contrast, 3% of placebo recipients achieved RVR, and 37% achieved SVR12 (P<0.001 for simeprevir vs. placebo).

SVR12 rates among various patient subgroups were higher in the simeprevir arm compared with the placebo arm, Dr. Lawitz reported. These included patients with METAVIR scores of F0-F2 (82% vs. 41%), METAVIR scores of F3 (73% vs. 20%), METAVIR scores of F4 (74% vs. 26%), HCV GT1a (70% vs. 28%), HCV GT1b (86% vs. 43%), interleukin-28 B (IL28B) genotype CC (89% vs. 53%), IL28B genotype GT CT (78% vs. 33%) and IL28B genotype GT TT (65% vs. 19%; P<0.001 for all).

Only 7% of simeprevir recipients required 48 weeks of treatment, and rates of on-treatment failure and post-treatment relapse with the drug were 3% and 19%, respectively, compared with 27% and 48% with placebo.

There were no differences in serious adverse events in the simeprevir and placebo groups.

Dr. Lawitz said the study participants were a difficult-to-treat population and included those with prior treatment failure and compensated and fibrotic liver disease.

“Hepatitis C is a complex disease, and we need multiple treatment options in order to provide our patients with the best possible chance of successful therapy,” he concluded.


Dr. Lawitz has received research support from Abbott Laboratories, Achillion Pharmaceuticals, Boehringer Ingelheim, Bristol-Myers Squibb, Gilead Sciences, GlaxoSmithKline, GlobeImmune, Idenix Pharmaceuticals, Idera Pharmaceuticals, Intercept Pharmaceuticals, Janssen Pharmaceuticals, Medtronic, Merck & Co., Novartis, Presidio, Roche, Santaris Pharmaceuticals, Scynexis and Vertex Pharmaceuticals. Dr. Gores has no conflicts of interest.

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June 16, 2013

Therapy of chronic hepatitis C with PEG-IFN α-2b plus ribavirin in patients with genotype 2 or 3: 16 versus 24 weeks, clinical outcome and direct cost analyses

Fabris P, et al. Show all

Fabris P, Carlotto A, Bianco TD, Malfatti F, Tramarin A, Miotti MA, Baldo V, Floreani A, Giordani TM, Grasso A.

Journal

Eur J Gastroenterol Hepatol. 2013 Jun 5. [Epub ahead of print]

Affiliation

aDepartment of Infectious Diseases and Tropical Medicine, S. Bortolo Hospital bDepartment of Infectious Diseases, Schio, Vicenza cGastroenterology Unit, Gorizia Hospital, Gorizia dDepartment of Gastroenterology, AASL2, San Paolo Hospital, Savona eInstitute of Hygiene fDepartment of Surgery, Oncology and Gastroenterology, University of Padova, Padova, Italy.

Abstract

INTRODUCTION: Short antiviral therapy has been proposed for patients with chronic hepatitis C, easy genotypes, low fibrosis score, low viral load at baseline, and rapid virological response (RVR). However, this approach is not completely accepted.

OBJECTIVES: The aims of this study were (a) to evaluate the sustained virological response (SVR) in noncirrhotic patients with genotype 2 or 3, achieving an RVR, randomized to receive pegylated-interferon (IFN) α-2b plus ribavirin for either 16 or 24 weeks and (b) to carry out direct cost analysis comparing patients treated for 16 versus 24 weeks.

RESULTS: Of the 142 initially evaluated patients, 130 were enrolled according to the selection criteria, but independent of the viral load. According to the intention-to-treat analysis, SVR was achieved in 104 patients (80%). Logistic regression analysis showed that RVR (P<0.001) and genotype 2 (P<0.03) were the most important factors independently associated with SVR. Among patients with RVR, SVR was comparable between patients treated for 16 weeks and those treated for 24 weeks (86.2 vs. 89.7%, P=NS). The mean direct costs were &OV0556;4003.7 for patients treated for 16 weeks and &OV0556;5676.7 for those treated for 24 weeks, with a 30% difference between the two arms.

CONCLUSION: In patients achieving an RVR, a 16-week treatment with pegylated-interferon plus ribavirin was comparable to a 24-week treatment. Short treatment in patients with RVR allows us to save 30% of the direct costs, independent of the viral load at baseline.

PMID
23743559 [PubMed - as supplied by publisher]

Full text: Lippincott Williams & Wilkins

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June 4, 2013

IL-28B Polymorphisms and the Response to Antiviral Therapy in HCV Genotype 2 and 3 Varies by Ethnicity

Journal of Viral Hepatitis

A Meta-Analysis

A. S. Rangnekar, R. J. Fontana

J Viral Hepat. 2013;20(6):377-384.

Abstract and Introduction
Abstract

Studies of IL-28B genotype in patients with hepatitis C virus (HCV) genotype 2/3 infection have yielded conflicting results. The aim of this meta-analysis was to obtain a pooled odds ratio (OR) of the impact of IL-28B genotype on achieving sustained virologic response (SVR) in patients with HCV genotype 2/3 infection treated with pegIFN and ribavirin. A meta-analysis with a random effects model was performed, and study heterogeneity and publication bias were assessed. Forty-three percent of the Caucasians (11 studies) and 86% of Asians (five studies) had the favourable IL-28B genotype. In Caucasians, the pooled OR of SVR with the favourable IL-28B genotype was 1.36 (95%CI: 0.98–1.88, P = 0.07) in all patients and 1.55 (95%CI: 1.10–2.18, P = 0.01) in patients treated with pegIFN and ribavirin for ≥24 weeks. In Asians, the pooled OR of SVR in patients with the favourable IL-28B genotype was 1.99 (95%CI: 0.94–4.25, P = 0.07). The favourable IL-28B genotype was also significantly associated with rapid virologic response (RVR) in both groups (Caucasians: OR: 1.82, 95%CI: 1.12–2.96, P = 0.02; Asians: 2.39, 95%CI: 1.39–4.11, P = 0.002), as well as the likelihood of an SVR in a subgroup of 350 Caucasian patients without an RVR (OR: 3.29, 95%CI: 1.67–6.51, P = 0.001). The favourable IL-28B genotype is a statistically significant predictor of SVR and RVR in Caucasian patients treated with pegIFN and ribavirin for 24 weeks. In contrast, the favourable IL-28B genotype is associated with RVR, but not SVR in Asian HCV genotype 2 patients.

Introduction

A single nucleotide polymorphism (SNP) upstream of the interleukin 28B (IL-28B) gene is associated with hepatic responsiveness to interferon therapy in hepatitis C virus (HCV) genotype 1 patients.[1] The highly variable prevalence of the favourable IL-28B genotype in patients of varying ethnicity, in part, explains differences in the observed sustained virologic response (SVR) rates. Although other host, viral and treatment factors may influence a patient's chance of SVR, the favourable IL-28B genotype is the single most important pretreatment predictor of achieving SVR with peginterferon (pegIFN) and ribavirin therapy in genotype 1 patients.[2] In contrast, the association of IL-28B and SVR in patients with HCV genotype 2/3 infection remains unclear.[3–5]

Although patients with HCV genotype 2/3 are more responsive to pegIFN and ribavirin, up to 30% of treated patients will not achieve SVR.[6] Furthermore, the new direct acting antiviral agents (DAAs), boceprevir and telaprevir, are not approved for the use in patients with HCV genotype 2/3 infection.[7] As such, pegIFN and ribavirin remain the only currently approved treatment for these patients. This meta-analysis was undertaken to better quantify the effect of the favourable IL-28B genotype on achieving SVR after treatment with pegIFN and ribavirin in patients with chronic HCV genotype 2/3 infection. In addition, the effect of IL-28B on achieving a week 4 rapid virologic response (RVR) as well as the impact of patient ethnicity on SVR was evaluated.

Materials and Methods
Literature Search

A search of the MEDLINE, PUBMED and EMBASE computer databases was performed of manuscripts published between January 2000 and January 2012, using the text words IL-28B, IL28B, IL28 and interleukin 28. Additional electronic and manual searches of abstracts presented at the American Association for the Study of Liver Diseases and American Gastroenterological Association meetings were undertaken from 2007 to 2012. Finally, consultation with expert hepatologists and recursive manual searches of references from published studies were performed.

Study Selection Criteria

Criteria for study inclusion were as follows: (i) published studies of IL-28B genotyping in adults with HCV genotype 2 or 3 infection; (ii) treatment with pegIFN and ribavirin and (iii) a reported outcome of SVR. All published studies were included regardless of sample size, but studies published solely as abstracts were excluded due to a lack of extractable data for SVR stratified by IL-28B genotype. The following exclusion criteria were applied: (i) human immunodeficiency virus (HIV) co-infection, (ii) prior liver transplantation, (iii) use of DAAs and (iv) use of IL-28B SNPs other than rs12979860 or rs8099917. After reviewing all citations identified in the literature search, two investigators (AS, RF) independently applied these selection criteria and extracted data. Any disagreements were resolved by consensus.

Data Extraction

All eligible studies were reviewed in an independent and duplicate manner by both investigators (AS, RF). For each study, the following data were collected: (i) Study: year, location, design, publication status; (ii) Patient factors: number, mean age, baseline serum aspartate aminotransferase (AST), baseline alanine aminotransferase (ALT), body mass index (BMI) and percentage with diabetes mellitus, male gender, treatment naïve and HIV co-infection; (iii) HCV factors: HCV genotype, baseline HCV RNA level, number of patients achieving RVR and SVR; (iv) Treatment factors: duration of pegIFN and ribavirin, type of pegIFN, dose reduction of antiviral medications, use of growth factors; and (v) IL-28B: IL-28B SNP tested and number with each IL-28B genotype who achieved RVR and SVR. Discrepancies in data extraction were resolved by discussion between the investigators.

IL-28B Testing

The two IL-28B SNPs reported in the individual studies were rs12979860 and rs8099917. The favourable genotype for rs12979860 is CC, while the unfavourable genotypes are CT and TT. The favourable genotype for rs8099917 is TT, while the unfavourable genotypes are TG and GG.

Primary Outcome

The primary outcome measure was achievement of SVR after pegIFN and ribavirin treatment, defined as undetectable serum HCV RNA by polymerase chain reaction (PCR) testing 24 weeks after treatment.

Secondary Outcome

A secondary outcome measure was achievement of RVR with pegIFN and ribavirin treatment, defined as an undetectable serum HCV RNA at week 4.

Quality Assessment

Study quality was assessed using an 8-item scoring system based on previously validated tools that focused on study design, population homogeneity and potential study biases.[8,9] High quality was defined by a score of ≥6 ().

Statistical Analysis

The estimate of effect was a pooled odds ratio (OR) determined using the DerSimonian and Laird method for a random effects model. Study heterogeneity was assessed by the I 2 test, with I 2 > 50% suggesting substantial heterogeneity. Publication bias was assessed through the Harbord and Peters tests. Influence analysis was performed to determine whether a single study exerted undue influence. Data from the included studies were analysed separately by patient race. Sensitivity and subgroup analyses were performed based on treatment algorithm, prior treatment and study quality score. All statistics were computed using STATA 11.0 (StataCorp LP, College Station, TX, USA).

Results

An initial search revealed 308 studies of IL-28B among which 88 specifically evaluated virologic outcomes in treated patients An additional 63 studies were excluded due to the inclusion of previously treated patients, acute HCV infection, use of alternative IL-28B SNPs, use of DAAs, inclusion of liver transplant recipients, combined ethnicities or nongenotype 2/3 patients. Of the remaining 25 studies, nine were excluded due to redundant study populations, HIV co-infection or use of alternative treatment regimens, leaving 16 studies in the current analysis (Fig. 1).

804135-fig1

Figure 1.

Study selection overview. From a total of 308 studies, 16 studies met the inclusion criteria

Caucasians With HCV Genotype 2/3

SVR Outcome. There were 11 studies of Caucasians with HCV genotype 2/3.[3,10–19] Among 1599 patients, 43% had the favourable IL-28B genotype CC at rs12979860 (). Overall, 83% of patients with the favourable IL-28B genotype achieved SVR as compared to 78% of patients with the unfavourable genotype, with a pooled OR of 1.36 (95%CI: 0.98–1.88, P = 0.07) with low heterogeneity between studies (I 2 = 29%). In a subgroup analysis of eight studies that included only treatment naïve patients, the pooled OR of SVR was 1.21 (95%CI: 0.85–1.74, P = 0.29). Among the eight studies with pegIFN and ribavirin treatment for at least 24 weeks, the pooled OR of SVR was 1.55 (95%CI: 1.10–2.18, P = 0.01) as compared to 1.17 (95%CI: 0.53–2.58, P = 0.70) in the studies with variable duration treatment regimens. Among the four studies that used a ribavirin dose ≥800 mg/day for at least 24 weeks, the pooled OR of SVR was 1.02 (95%CI: 0.55–1.92, P = 0.95). The pooled OR was 1.49 (95%CI: 1.02–2.19, P = 0.04) in the six high-quality studies vs 1.33 (95%CI: 0.72–2.43, P = 0.36) in the five low-quality studies ().

RVR Outcome. Six studies reported RVR data in 1265 Caucasian patients of which 42% had the favourable IL-28B genotype. Seventy-seven percent of patients with the favourable IL-28B achieved RVR as compared to 65% of patients with the unfavourable genotype, with a pooled OR of 1.82 (95%CI: 1.12–2.96, P = 0.02) and moderate heterogeneity between studies (I 2 = 69%).

Among 350 patients who achieved RVR in three studies, 89% of 142 patients with the favourable IL-28B genotype and 85% of 208 patients with the unfavourable IL-28B genotype also achieved SVR (pooled OR: 1.37, 95%CI: 0.71–2.67, P = 0.35). In contrast, among 184 patients who did not achieve RVR, 78% of 68 patients with the favourable IL-28B and 50% of the 116 with the unfavourable IL-28B genotype achieved SVR (pooled OR: 3.29, 95%CI: 1.67–6.51, P = 0.001).

Asians With HCV Genotype 2

SVR Outcome. There were five studies[20–24] of 833 Asian patients with HCV genotype 2 infection, in which 86% had the favourable IL-28B genotype. Overall, 86% of patients with the favourable IL-28B genotype achieved SVR, while 75% of patients with the unfavourable IL-28B genotype achieved SVR with a pooled OR of 1.99 (95%CI: 0.94–4.25, P = 0.07). There was low to moderate heterogeneity between studies (I 2 = 44%). In a subgroup analysis of the two studies that explicitly included only treatment naïve patients, the pooled OR of SVR was 1.54 (95%CI: 0.81–2.93, P = 0.18). Among the four low-quality studies, the pooled OR was 2.22 (95%CI: 01.14–4.35, P = 0.02).

RVR Outcome. In the two studies reporting RVR data, 88% of the 594 patients had the favourable IL-28B genotype. Eighty-two percent of patients with the favourable IL-28B genotype and 62% of patients with the unfavourable genotype achieved RVR, with a pooled OR of RVR of 2.39 (95%CI: 1.39–4.11, P = 0.002).

Pooled Analysis

After combining the 16 studies with 2432 patients, the pooled OR of SVR in patients with the favourable IL-28B genotype was 1.48 (95%CI: 1.09–2.02, P = 0.01). There was low heterogeneity between studies (I 2 = 34%). The pooled OR was 1.27 (95%CI: 0.95–1.69, P = 0.11) in the 10 studies with only treatment naïve patients and 1.44 (95%CI: 0.98–2.11, P = 0.06) among the seven high-quality studies. There was no evidence of publication bias by the Harbord or Peters tests (P = 0.69 and P = 0.33, respectively).

Discussion

While IL-28B genotyping has an important role in HCV genotype 1 patients treated with pegIFN and ribavirin, its value in HCV patients with genotype 2/3 remains less clear.[2] This meta-analysis demonstrates that the favourable IL-28B genotype is a significant predictor of SVR in Caucasian patients with HCV genotype 2/3 treated with pegIFN and ribavirin for 24 weeks. Additionally, IL-28B genotype may be predictive of SVR in Asian patients with HCV genotype 2, although the pooled OR of SVR did not reach statistical significance perhaps due to inadequate sample size (Fig. 2).

804135-fig2

Figure 2.

Forest plots of IL-28B genotype and SVR in patients with hepatitis C virus (HCV) genotype 2/3 infection stratified by race. (A) There were 11 studies of 1599 Caucasian HCV genotype 2/3 patientsm and (B) there were five studies of 833 Asian HCV genotype 2 patients. SVR, sustained virologic response.

Our results also suggest that the favourable IL-28B genotype increases the odds of achieving RVR in Caucasian and Asian patients with HCV genotype 2/3 infection, a finding similar to that reported in HCV genotype 1 patients.[2] Furthermore, the results of this study demonstrate that IL-28B genotype may be helpful in stratifying the odds of SVR in patients with HCV genotype 2/3 who do not achieve RVR. Prior data suggest that HCV genotype 2/3 patients with low viral load who achieve RVR may be candidates for a shortened duration of therapy to 12–16 weeks.[25,26] However, it is unclear whether the favourable IL-28B genotype can be used to further identify patients from this group who are more likely to achieve SVR and/or are at lower risk of relapse. Individual studies have not found an association between IL-28B genotype and SVR rates in patients treated for <24 weeks after achieving RVR, but they may be under-powered.[13,19] Therefore, IL-28B testing may play an important role in counselling individual patients that are receiving antiviral therapy and particularly in those experiencing side effects who do not achieve RVR.

In the era of DAAs, IL-28B testing in HCV genotype 1 patients may be limited to specific populations in which DAAs are not yet approved, such as in those with HIV co-infection.[2] In contrast, pegIFN and ribavirin are the only currently approved agents for HCV genotype 2/3 infection. An improved ability to predict SVR may be particularly important for patients intolerant to this regimen, but the absolute difference in response rates in those with and without the favourable IL28-B genotype is small.

In contrast to our results, another recent meta-analysis of IL-28B testing and SVR in patients of combined HCV genotypes reports a statistically significant pooled OR of SVR in Asians with HCV genotype 2 infection,[5] a finding likely due to the inclusion of only two Asian studies. Our own subgroup analysis of five Asian studies identified a strong trend which does not reach statistical significance. The meta-analysis by Chen et al. also demonstrates a lack of association between the favourable IL-28B genotype and SVR in Caucasian patients with HCV genotype 2/3, although only five studies were included. Assessing the role of IL-28B testing in nonCaucasian patients with HCV genotype 2/3 was limited in our study. Among the five pooled Asian studies, two explicitly included some treatment-experienced patients who may have reduced the impact of IL-28B genotyping in predicting SVR. In addition, there were no studies of HCV genotype 2/3 African American patients, a group with traditionally lower response to interferon. However, a substantially lower proportion of African Americans are infected with HCV genotype 2/3 in the general US population compared to Caucasians (i.e. 5% vs 20–30%).[27,28] Because of the lack of stratification by HCV genotype in many studies, we were unable to determine whether IL-28B genotype has greater utility in patients with HCV genotype 2 vs 3. However, this issue is worthy of further study because HCV genotype 3 patients with a high baseline HCV RNA level are more prone to relapse after a 24-week course of treatment compared to those with HCV genotype 3 and low viral load or HCV genotype 2 infection.[29] Finally, how IL-28B testing fits in with other known pretreatment predictors of SVR remains unknown.

In conclusion, this meta-analysis demonstrates that the favourable IL-28B genotype is significantly associated with SVR in Caucasian patients with HCV genotype 2/3 infection treated with pegIFN and ribavirin for 24 weeks. However, the magnitude of the absolute difference in SVR rates (83% vs 78%) is small and may not influence the decision to initiate treatment. In addition, the favourable IL-28B genotype is associated with RVR as well as SVR in patients who do not achieve RVR, and this information may prove useful to clinicians when counselling individual patients during therapy.

References
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Abbreviations
ALT, Alanine aminotransferase; AST, Aspartate aminotransferase; BMI, Body mass index; CI, Confidence interval; DAA, Direct acting antiviral agent; HCV, Hepatitis C virus; HIV, Human immunodeficiency virus; IL-28B, Interleukin 28B; OR, Odds ratio; PCR, Polymerase chain reaction; pegIFN, Peginterferon; RVR, Rapid virologic response; SNP, Single nucleotide polymorphism; SVR, Sustained virologic response.

Author contributions
Amol Rangnekar carried out study concept, design, data acquisition, analysis and interpretation, manuscript drafting and finalization, statistical analyses. Robert J. Fontana performed study concept, design, data acquisition, analysis and interpretation, manuscript drafting and finalization, overall supervision.

J Viral Hepat. 2013;20(6):377-384. © 2013 Blackwell Publishing

Source

May 7, 2013

Triple combination therapy for hepatitis C with telaprevir exhibits greater early antiviral activity than with boceprevir

Antivir Ther. 2013 May 3. doi: 10.3851/IMP2614. [Epub ahead of print]

Benito JM, Sánchez-Parra C, Maida I, Aguilera A, Rallón NI, Rick F, Labarga P, Fernández-Montero JV, Barreiro P, Soriano V.

Department of Infectious Diseases, Hospital Carlos III, Madrid, Spain.

Abstract
BACKGROUND: Achievement of early viral suppression is important in patients with chronic hepatitis C virus (HCV) infection treated with telaprevir (TLV) or boceprevir (BOC) to avoid selection of drug resistance and attain cure. No head-to-head studies comparing TLV and BOC have been performed so far.
METHODS: All consecutive individuals that initiated triple HCV therapy with TLV or BOC outside clinical trials at three European clinics were evaluated. Rapid virological response (RVR) was defined as unquantifiable HCV-RNA (<25 IU/mL) at week 4 for TLV and at week 8 for BOC (4 weeks after lead-in).

RESULTS: A total of 106 patients were evaluated, 33 treated with BOC and 73 with TLV. Median age, gender, BMI, baseline HCV-RNA, HCV subtype 1a (45% vs 42%), IL28B-CC alleles (29% vs 23%) did not differ significantly in BOC and TLV groups, respectively. HIV coinfection was more prevalent in patients on TLV than BOC (24% vs 44%). Conversely, more patients on BOC than TLV had previously failed to peginterferon-ribavirin (82% vs 64%). RVR was achieved by 82% of patients on TLV vs 59% on BOC (p=0.001). Multivariate logistic regression analysis (OR [95% CI], p) confirmed that TLV use was the strongest predictor of RVR (3.54 [1.23-10.24], 0.02), being others HCV subtype 1b vs 1a (3.26 [1.17-9.09], 0.02) and low baseline HCV-RNA (0.41 [0.16-1.03], 0.06). Prior interferon exposure, HIV coinfection or absence of advanced liver fibrosis did not influence the likelihood of RVR.

CONCLUSIONS: Compared to BOC, triple therapy with TLV produces greater RVR rates. TLV might be a better option in more difficult-to-cure patients, such as those with high baseline HCV-RNA and/or HCV 1a subtype. HIV coinfection does not influence early HCV-RNA responses.

Source

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

October 15, 2012

Triple Therapy for Chronic HCV Infection Is Cost-Effective in Some Patients

10/14/2012

Exceptions are patients without rapid viral response to boceprevir or the IL28B genotype, for whom dual therapy is still best.

The new triple therapy regimens with peginterferon alfa, ribavirin, and boceprevir or telaprevir lead to high rates of sustained virologic response (SVR) in patients with hepatitis C virus (HCV) infection (JW Gastroenterol Mar 30 2011 and JW Gastroenterol Sep 16 2011). But, given their adverse effects, drug interactions, potential viral mutations, and expense, it is unclear whether these regimens are more cost-effective than dual therapy.

Now, European investigators have created a Markov decision model — using data from untreated patients with genotype 1 HCV infection and stage 2 liver fibrosis — to evaluate the cost-effectiveness of the following five strategies over a 20-year horizon:

  • Boceprevir response-guided therapy (RGT)
  • Boceprevir IL28B genotype-guided therapy (IL28B)
  • Boceprevir rapid virologic response–guided therapy (RVRT)
  • Telaprevir RGT
  • Telaprevir IL28B

In the IL28B strategies, if the IL28B CC genotype was identified, patients underwent dual therapy. In the boceprevir RVRT strategy, if rapid viral response was achieved during boceprevir lead-in, patients received dual therapy. Outcomes included costs (in 2011 euros), years of life gained, and incremental cost-effectiveness ratio (ICER).

The telaprevir IL28B and boceprevir RVRT strategies were the most clinically effective (survival improvement, 4.42 years and 4.04 years, respectively) and the most cost-effective. For both of these strategies, the quality-adjusted life year (QALY) estimate was improved by about 7 years, thanks to a 25% improvement in SVR rate, compared with dual therapy. This gain in SVR came at a relatively low cost of ICER per QALY of <10,000.

Comment: These results show that HCV triple therapy regimens are more cost-effective than previous dual therapy, especially if RVRT and IL28B data are used. Furthermore, the ICER per QALY was lower than the accepted societal threshold for willingness to pay. As with many modeling studies, the results are highly sensitive to certain assumptions and variables, including the cost of the regimens.

Source: Journal Watch Gastroenterology

October 11, 2012

IL28B and interferon-gamma inducible protein 10 for prediction of rapid virologic response and sustained virologic response in HIV-HCV-coinfected patients

Eur J Clin Invest. 2012 Jun;42(6):599-606. doi: 10.1111/j.1365-2362.2011.02623.x. Epub 2011 Nov 25.

Payer BA, Reiberger T, Aberle J, Ferenci P, Holzmann H, Rieger A, Peck-Radosavljevic M; Vienna HIV-HCV study group.

Source

Division of Gastroenterology & Hepatology, Department of Internal Medicine III, Medical University of Vienna, Vienna, Austria.

Abstract
BACKGROUND: A polymorphism near the IL28B gene has been shown to be associated with virologic response to antiviral treatment in HCV-infected patients. The predictive value of interferon-gamma inducible protein 10 (IP10) on treatment outcome has been described in HCV patients. Data on combining these predictors in HIV-HCV-coinfected patients are not available.

METHODS: Virologic parameters, IL28B single nucleotide polymorphisms (SNP) and pretreatment serum IP10 were determined in HIV-HCV-coinfected patients having completed antiviral therapy with pegylated interferon/ribavirin.

RESULTS: A total of 72 HIV-HCV-coinfected patients were included in the study; 68% had HCV genotype (GT)-1/4 and 32% had HCV GT-2/3 infections. Rapid virologic response (63% vs. 28%; P = 0·023) and sustained virologic response (SVR: 81% vs. 51%; P = 0·008) rates were significantly higher in C/C vs. non-C/C patients. Patients with low pretreatment IP10 levels (< 400 pg/mL) achieved significantly higher SVR rates than patients with high (> 400 pg/mL) IP10 levels (78% vs. 13%; P < 0·0001). C/C SNP and low IP10 levels were associated with higher SVR rates in both patients with GT-1/4 and GT-2/3. The C/C patients with low IP10 achieved SVR rates of 97% compared with SVR rates of 9% in non-C/C patients with high IP10.

CONCLUSION: The IL28B SNP influences rapid viral response, relapse rates and SVR. The combination of IL28B and IP10 represents a predictive model of SVR in HIV-HCV coinfection.

© 2011 The Authors. European Journal of Clinical Investigation © 2011 Stichting European Society for Clinical Investigation Journal Foundation.

PMID: 22117591 [PubMed - indexed for MEDLINE]

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

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.

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