Showing posts with label HCV Treatment. Show all posts
Showing posts with label HCV Treatment. Show all posts

April 23, 2015

Study reveals impact of delaying HCV treatment

50thcongress

Published on April 23, 2015 at 4:01 AM

Data revealed today at The International Liver Congress™ 2015 highlights the impact of delaying treatment for the hepatitis C virus (HCV). Researchers found that treatment delays have a serious detrimental effect on treatment efficacy, increasing the risk of morbidity and mortality among patients.

The study was conducted using retrospective patient data from the Veterans Administration in the USA to estimate the impact on risk of morbidity and death depending on whether treatment was initiated before or after a patient's FIB4 levels became elevated. The FIB4 index is a simple formula used to predict liver damage (fibrosis) based on standard biochemical values and age.

Researchers found that delaying treatment until after a patient's FIB4 level exceeds 3.25 has a clear detrimental effect on treatment effectiveness. Delaying therapy until after the patient's FIB4 level exceeds 1.45 or 1.00 has a smaller detrimental effect on treatment effectiveness.

The study demonstrates that delaying HCV treatment in an attempt to save costs has a serious adverse impact on patients, with the most serious effect being the speeding up of time to death. Once HCV diagnosis has been confirmed the most suitable treatment should be initiated as soon as feasible balancing budgetary cash-flow issues against adverse impacts on patients.

Source: European Association for the Study of the Liver

Source

April 16, 2015

Cirrhosis Regression in Hepatitis C Patients With Sustained Virological Response After Antiviral Therapy

Liver International

A Meta-analysis

Ehsaan Akhtar, Vignan Manne, Sammy Saab

Liver International. 2015;35(1):30-36.

Abstract and Introduction

Abstract

Background & Aims Chronic hepatitis C may be associated with cirrhosis, liver failure and hepatocellular carcinoma. Studies have demonstrated improved clinical outcome in patients who achieved a sustained viral response (SVR).

Methods A systematic literature search was performed to identify studies that assessed the association between SVR and cirrhosis regression. The main outcome studied was cirrhosis regression in patients with a SVR as compared with patients without a SVR. Six studies totalling 443 patients were included. Dichotomous outcomes were reported as risk ratios (RR) with 95% confidence intervals (CI).

Results Of the 443 patients with cirrhosis, 137 achieved a SVR. Of these 137 patients who achieved an SVR, 73 (53%) patients had regression of cirrhosis. The risk ratio of cirrhosis regression was 2.69 [Confidence Interval (CI) 1.45–4.97, P < 0.01] in patients who achieved a SVR. The risk of cirrhosis regression was consistently in favour of patients who achieved a SVR regardless of the length of the biopsy or whether the biopsy was reviewed by a single or multiple pathologists. The risk ratio of cirrhosis regression was related to the duration of follow-up between biopsies. The relative risk for regression of cirrhosis in studies in which the mean or median time for the follow-up liver biopsy was greater than 36-month was 4.33 (CI 1.1–17.0, P = 0.04) as compared to a relative risk of 1.79 (CI 1.26–2.29, P < 0.01) in studies with a mean or median time between the follow-up biopsy of less than 36-month.

Conclusions Our results suggest that the majority of patients with cirrhosis who achieve a SVR develop cirrhosis regression. Time between biopsies appears to be an important determinant of the likelihood of cirrhosis regression.

Introduction

Hepatitis C is one of the leading causes of cirrhosis in the United States.[1] Estimates of the number of Americans infected with hepatitis C range from 3 to 7 million people.[2,3] The public burden is increasingly realized as the percentage of patients with hepatitis C today with cirrhosis is between 15% and 20%.[4] Patients with cirrhosis are at risk of liver failure and hepatocellular carcinoma. Indeed, HCV is currently the most common indication for transplantation in the United States.[5]

The end point of successful antiviral therapy is achieving Sustained Virological Response (SVR).[6] Sustained virological response has been associated with arrest of disease progression; and improvements in quality of life and reduction of liver-related complications and hepatocellular carcinoma risk.[7–9] A number of studies have also documented improvement in liver histology after sustained virological response.[10–17] Histological improvement has been noted even in the context of cirrhosis.[14] While a large meta-analysis has previously demonstrated reduction of cirrhosis-related complications in patients achieving SVR,[18] no previous meta-analysis has examined the likelihood of cirrhosis regression in patients who achieved a SVR.

Cirrhosis has been regarded as the final common pathway of liver disease.[19] Multiple studies have successfully challenged the premise that cirrhosis is irreversible particularly when the liver disease culprit is eliminated.[20–23] In this meta-analysis, we sought to better understand the relationship between SVR and cirrhosis regression in patients with HCV treated with antiviral therapy.

Methods

Objective

To perform a systematic review of the literature and meta-analysis to determine whether cirrhosis is reversible in hepatitis C patients with sustained virological response to antiviral therapy.

Selection of Studies

Trials that met the following criteria were included: (a) prospective or retrospective cohort studies as well as randomized, controlled, open or blinded trials pertinent to the subject matter and published as an article or abstract, (b) studies that reported follow-up data on patients greater than or equal to 6 months, (c) studies including subjects with serological confirmation of chronic HCV infection, (d) SVR defined as no detectable levels of HCV RNA by PCR at least 24 weeks after antiviral treatment, (e) studies that included paired liver biopsies and data regarding histological preparation of biopsies, such as biopsy length, time between biopsies, presence of central pathologist and a validated method of staging cirrhosis, (f) studies that included at least 10 patients. Articles excluded were (a) studies looking specifically at causes of cirrhosis other than Hepatitis C, including Wilson's disease, PSC, PBC, haemochromatosis, alpha-1 antitrypsin and alcoholic cirrhosis, (b) studies including patients with immunosuppression secondary to chronic steroid use, HIV, or any other aetiology, (c) studies in which data could not be extracted for a subset of cirrhotic patients with and without SVR.

Search Strategy

A comprehensive search of the MEDLINE database and the Cochrane Database of Systematic Reviews was performed to find studies published in the English language up to October 2013 that investigated cirrhosis regression in Hepatitis C end-stage liver patients treated with antiviral therapy. We used combinations of the keywords Hepatitis C, antiviral agents, liver cirrhosis, SVR, viral suppression, histology,revers*, regression and improvement. We also manually searched manuscript references to identify additional studies that may have been missed with a MEDLINE-assisted strategy. Medical science liaisons for the appropriate antiviral therapies were contacted to assess for additional studies to review.

Data Extraction

Studies were subjected to inclusion and exclusion criteria. Two reviewers (EA and VM) independently and in duplicate assessed the eligibility and quality of trials. A formal scoring system to rate the study quality of each individual study was not used. Reviewers noted patient liver biopsy length, duration between biopsies, fibrosis scoring system, baseline biopsy score, antiviral therapy, length of treatment and regression of cirrhosis. Three of the six studies examined cohorts of patients with any amount of liver fibrosis on histology.[26–28] In these studies, only data regarding cirrhotic patients were extracted from the text. Efforts were made to contact the authors for demographic and clinical characteristics of cirrhotic patients. Collaboration was established with one author. Regression of fibrosis was defined individually for each scoring modality and is noted in the results section below.

Statistical Analysis

We used the statistical package RevMan (Review Manager, Version 5.2. Copenhagen: The Nordic Cochrane Centre, The Cochrane Collaboration,v2012). RevMan software was developed by the Cochrane Collaboration to facilitate development of systematic reviews and meta-analyses. The Mantel–Haenszel procedure for binary data was used to determine clinical significance of effect. Sensitivity analysis was two-tailed and set at P ≤ 0.05. A random-effects model was employed because of the anticipated variability between trials in terms of patient populations, interventions and concomitant interventions. Heterogeneity between trials was assessed by the chi-squared test with significance set at P ≤ 0.10. The approximate proportion of total variability in point estimates attributed to heterogeneity was calculated by use of the I 2 statistic.[25]

Results

Number of Studies

A total of 172 relevant articles were identified using the search criteria detailed above. Twenty-one manuscripts were reviewed in full. After applying the inclusion criteria, six studies[12,14,24,26–28] were used in the final analysis (Fig. 1). The six studies included a total of 443 cirrhotic patients. The median number of patients across each study was 62.5 (range 15–153).[12,14,24,26–28]

839337-fig1

Figure 1. Study selection – Algorithm depicting the literature search flow chart and why studies were included or excluded.

Diagnosis of Cirrhosis

Cirrhosis was diagnosed by liver biopsy in all studies. Biopsies were evaluated by Metavir score in five studies.[12,14,24,27,28] The remaining study used the Ishak scoring method to evaluate cirrhosis. A Metavir score of F4 or an Ishak fibrosis score of ≥5 was used to define cirrhosis. All studies reported results for paired biopsies. One biopsy was taken prior to antiviral therapy and one biopsy was taken after antiviral therapy. Biopsy length was reported in five of the six studies.[12,14,24,26,27] The time between each biopsy was listed for all studies (Table 1). A central pathologist was used for diagnosis in two of the six studies.[26,27] These data were not reported in one study.[14] The remaining studies used 2–3 independent reviewers.[24,27,28]

Capture

Antiviral Therapy

All studies used interferon-based regimens. Five of the six studies treated patients using interferon or pegylated interferon with or without the addition of ribavirin.[12,14,24,26,27] In Shiratori et al., patients were treated solely with interferon.[28] Duration of therapy across studies varied from 8 to 48 weeks. Specific details regarding antiviral therapy and treatment duration for each study are noted in the table (Table 1). Many of the studies were retrospective analyses of prior randomized controlled trials comparing antiviral dosages and length of therapy (Table 1).[12,14,27,28] The median number of patients achieving sustained virological response across studies was 34% (range 24–44%).[12,14,24,26–28]

Regression of Cirrhosis

Regression of cirrhosis was defined as reduction in Metavir stage to ≤F3 or Ishak fibrosis score to ≤4. Median regression of cirrhosis in patients with SVR across studies was 55% (range 24–83%). Overall, a total of 73 patients with SVR had regression of cirrhosis of a total of 137 patients with SVR (53%). Of note, regression of cirrhosis in patients who did not achieve SVR was also observed. Median regression of cirrhosis in these patients was 19.5% (range 2–44). Risk ratios were calculated to compare regression of cirrhosis in patients with SVR against regression of cirrhosis in patients without SVR. Relative risk for regression of cirrhosis across all studies was 2.69 (95% CI 1.45–4.97, P < 0.01) (Fig. 2).

839337-fig2

Figure 2.

Meta-analysis overall result – Cirrhosis regression in patients with and without a sustained viral response.

Subgroup Analysis

A number of subgroup analyses were also performed. The relative risk ratio for studies that studied only cirrhotic or advanced fibrosis patients was 6.15 (95% CI: 3.18–11.91, P < 0.01).[12,14,24] The relative risk ratio for studies utilizing a central pathologist to review liver biopsy slides as compared with studies without a central pathologist was 1.60 (95% CI: 1.20–2.13, P < 0.01)[26,27] and 3.97 (95% CI: 1.51–10.45, P = 0.005)[12,14,24,28] respectively. Studies in which the mean biopsy length or median biopsy length of liver samples was less than 15 mm had a relative risk ratio of 1.91 (95% CI: 1.18–3.09, P = 0.008),[24,26,28] whereas studies that had mean biopsy length or median biopsy length greater than 15 mm had a relative risk ratio of 4.38 (95% CI: 0.95–20.25, P = 0.06)[12,14,27] for regression of cirrhosis. Subgroup analyses were also performed comparing studies in which the mean time between liver biopsies or median time between liver biopsies was less than 36-month or greater than 36-month. The relative risk ratio for cirrhosis regression in these studies was 1.79 (95% CI: 1.26–2.29, P < 0.01) (Fig. 3)[24,26,27] and 4.33 (95% CI: 1.1–17.0, P < 0.05) (Fig. 4)[12,14,28] respectively.

839337-fig3

Figure 3.

Follow-up biopsy time mean or median <36-month subgroup analysis – Cirrhosis regression in patients with and without a sustained viral response in trials in which the follow-up biopsy had mean or median time of <36-month.

839337-fig4

Figure 4.

Follow-up biopsy time mean or median >36-month subgroup analysis – Cirrhosis regression in patients with and without a sustained viral response in trials in which the follow-up biopsy had a mean or median time of >36-month.

Discussion

Overall, there was considerable variability in the amount of cirrhosis regression across studies (Median 55%, range: 24–83%). When the data were pooled and analysed, we obtained a relative risk of 2.96 indicating that achieving sustained virological response (SVR) led to an almost three-fold increase in chance of cirrhosis regression than not achieving SVR. Half the trials in this analysis studied not just regression of cirrhosis but also improvement in histological score for non-cirrhotics.[26–28] When our analysis was performed only in manuscripts that specifically studied antiviral therapy in patients with severe fibrosis or cirrhosis, a greater likelihood of cirrhosis regression was noted – 6.15.

The severity of liver disease is a well-known predictor of antiviral response, even with newer direct-acting agents.[29] Potentially, regression may be less likely in patients with more advanced or established cirrhosis. Differences in patient selection may help explain the greater likelihood of cirrhosis regression in studies focusing on patients with advanced liver disease. For instance, it is possible that more stringent entry criteria were utilized in studies focused specifically on patients with severe fibrosis or cirrhosis. We were unable to cumulatively analyse steatosis, comorbidities, alcohol among studies to determine their association with cirrhosis regression.

An important finding in our analysis is that the likelihood of cirrhosis regression may increase over time after SVR is achieved. This is highlighted by the fact that the risk ratio for regression is 4.13 when the follow-up biopsy is taken ≥36-month as compared to a risk ratio of 1.79. These results are consistent with studies identifying SVR as a statistically significant predictor of histological response to antiviral therapy.[30,13] Individual studies have demonstrated reduced liver-related morbidity and mortality in patients with advanced hepatic fibrosis or cirrhosis and SVR.[31,32] These results were further supported by a recent meta-analysis demonstrating a significant risk reduction in hepatic decompensation, hepatocellular carcinoma and liver-related mortality in patients with SVR.[18] The histological outcomes observed in this meta-analysis may provide an explanation for the clinical outcomes observed in previous studies.

A noteworthy finding in our analysis is that cirrhosis regression was seen even among treated patients who did not achieve a SVR.[12,14,24,26–28] There are several potential explanations for this. First, the 'Non-SVR' comparative group in our analysis did receive interferon.[12,14,24,26–28] Poynard et al. noted identified factors other than SVR that were associated with decreased fibrosis after treatment, including age <40, lower BMI, and mild or no activity of the virus in a multivariate analysis.[27] In addition, it is possible that other factors promoting cirrhosis such as alcohol consumption may have improved in the 'Non-SVR' group. Indeed, 25% of the patients in the study by Shiratori et al. reported alcohol prior to the study initation.[28] But, the majority of the patients had completely stopped drinking at study completion.

Optimal liver biopsy length has been a subject of intense controversy because of the risk of sampling variation and interpretation.[34] Biopsy sampling variation can limit the interpretation of results. Studies have shown that this sampling variation can lead to ≥1 stage change in fibrosis score when biopsies are taken from different lobes of the liver or even when taken through the same skin puncture site.[35–38] Within our analysis, we found that the cirrhosis regression was better documented when a minimal biopsy length was utilized in the analysis. Although there was a trend, the difference was not statistically significant. To reduce further discrepancies, AASLD has issued a Class IC recommendation that liver biopsy length be at least 2–3 cm.[34] Analysis by an experienced pathologist or consensus reading between pathologists has been associated with increased agreement.[39] Interestingly, studies that used more than one pathologist had a higher regression of cirrhosis benefit as compared with those studies using a central pathologist (RR 3.96 vs. 1.71).

There are a number of limitations to this study. Heterogeneity between studies is an important limitation of this meta-analysis. Possible factors accounting for the heterogeneity may include relatively small study size, antiviral therapy, patient population, prevalence in confounding factors or duration of follow-up. It is not possible to extrapolate our results to patients with decompensated liver disease. All studies limited clinical trial entry to patients with compensated cirrhosis. This may be secondary to the risk of hepatic decompensation and worsening cytopenias with interferon-based therapy. Now with the introduction of non-interferon-based therapy for hepatitis C, the pool of patients with advanced liver disease who are eligible for treatment will expand.[40,41] A third limitation is the utilization of only two literature databases – Cochrane and Medline. We may have missed studies not found in those indices. However, we searched through the references of all identified manuscripts to be as complete as possible. Our results may also be subject to publication bias in that authors were more likely to publish if there was a cirrhosis regression than not.

With the emergence of new therapies and better therapies for hepatitis C upcoming, further study into whether these new therapies may lead to different cirrhosis regression rates must be evaluated.[41] Patients with advanced liver disease are more likely to undergo therapy with non-interferon based therapy. For instance, moderate thrombocytopenia is not necessarily an absolute contraindication with the newer therapies.[40–42] We believe that with the advent of the newer therapies, previously interferon ineligible patients may be candidates for antiviral therapy but the rate of cirrhosis regression remains to be seen when treating patients with more advanced liver disease.

References

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2.Alter MJ. The epidemiology of acute and chronic hepatitis C. Clin Liver Dis 1997; 1: 559–68.

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6. Liang TJ, Ghany MG. Current and future therapies for hepatitis C virus infection. N Engl J Med 2013; 368: 1907–17.

7. Hung CH, Lee CM, Lu SN, et al. Long-term effect of interferon alpha-2b plus ribavirin therapy on incidence of hepatocellular carcinoma in patients with hepatitis C virus-related cirrhosis. J Viral Hepat 2006; 13: 409–14.

8. Kasahara A, Tanaka H, Okanoue T, et al. Interferon treatment improves survival in chronic hepatitis C patients showing biochemical as well as virological responses by preventing liver-related death. J Viral Hepat 2004; 11: 148–56.

9. Veldt BJ, Saracco G, Boyer N, et al. Long term clinical outcome of chronic hepatitis C patients with sustained virological response to interferon monotherapy. Gut 2004; 53: 1504–8.

10. Marcellin P, Boyer N, Gervais A, et al. Long-term histologic improvement and loss of detectable intrahepatic HCV RNA in patients with chronic hepatitis C and sustained response to interferon-alpha therapy. Ann Intern Med 1997; 127: 875–81.

11. Maylin S, Martinot-Peignoux M, Moucari R, et al. Eradication of hepatitis C virus in patients successfully treated for chronic hepatitis C. Gastroenterology 2008; 135: 821–9.

12. Pol S, Carnot F, Nalpas B, et al. Reversibility of hepatitis C virus-related cirrhosis. Hum Pathol 2004; 35: 107–12.

13. Camm_a C, Di Bona D, Schepis F, et al. Effects of peginterferon alfa-2a on liver histology in chronic hepatitis C: a meta-analysis of individual patient data. Hepatology 2004; 39: 333–42.

14. Mallet V, Gilgenkrantz H, Serpaggi J, et al. Brief communication: the relationship of regression of cirrhosis to outcome in chronic hepatitis C. Ann Intern Med 2008; 149: 399–403.

15. D'Ambrosio R, Aghemo A, Rumi MG, et al. A morphometric and immunohistochemical study to assess the benefit of a sustained virological response in hepatitis C virus patients with cirrhosis. Hepatology 2012; 56: 532–43.

16. George SL, Bacon BR, Brunt EM, et al. Clinical, virologic, histologic, and biochemical outcomes after successful HCV therapy: a 5-year follow-up of 150 patients. Hepatology 2009; 49: 729–38.

17. Bruno S, Battezzati PM, Bellati G, et al. Long-term beneficial effects in sustained responders to interferon-alfa therapy for chronic hepatitis C. J Hepatol 2001; 34: 748–55.

18. Singal AG, Volk ML, Jensen D, Di Bisceglie AM, Schoenfeld PS. A sustained viral response is associated with reduced liver-related morbidity and mortality in patients with hepatitis C virus. Clin Gastroenterol Hepatol March 2010; 8: 280–8.

19. Schuppan D, Afdhal NH. Liver cirrhosis. Lancet 2008; 371: 838–51.

20. Dufour JF, DeLellis R, Kaplan MM. Reversibility of hepatic fibrosis in autoimmune hepatitis. Ann Intern Med 1997; 127: 981–5.

21. Dixon JB, Bhathal PS, Hughes NR, O'Brien PE. Nonalcoholic fatty liver disease: improvement in liver histological analysis with weight loss. Hepatology 2004; 39: 1647–54.

22. Wakim-Fleming J, Mullen KD. Long-term management of alcoholic liver disease. Clin Liver Dis 2005; 9: 135–49.

23. Kral JG, Thung SN, Biron S, et al. Effects of surgical treatment of the metabolic syndrome on liver fibrosis and cirrhosis. Surgery 2004; 135: 48–58.

24. Abergel A, Darcha C, Chevallier M, et al. Histological response in patients treated by interferon plus ribavirin for hepatitis C virus-related severe fibrosis. Eur J Gastroenterol Hepatol 2004; 16: 1219–27.

25. Higgins JPT. Commentary: heterogeneity in meta-analysis should be expected and appropriately quantified. Int J Epidemiol 2008; 37: 1158–60.

26. Arif A, Levine RA, Sanderson SO, et al. Regression of fibrosis in chronic hepatitis C after therapy with interferon and ribavirin. Dig Dis Sci 2003; 48: 1425–30.

27. Poynard T, McHutchison J, Manns M, et al. Impact of pegylated interferon alfa-2b and ribavirin on liver fibrosis in patients with chronic hepatitis C. Gastroenterology 2002; 122: 1303–13.

28. Shiratori Y, Imazeki F, Moriyama M, et al. Histologic improvement of fibrosis in patients with hepatitis C who have sustained response to interferon therapy. Ann Intern Med 2000; 132: 517–24.

29. Bourli_ere M, Wendt A, Fontaine H, et al. How to optimize HCV therapy in genotype 1 patients with cirrhosis. Liver Int 2013; 33(Suppl. 1): 46–55.

30. Pockros PJ, Hamzeh FM, Martin P, et al. Histologic outcomes in hepatitis C-infected patients with varying degrees of virologic response to interferon-based treatments. Hepatology 2010; 52: 1193–200.

31. Morgan TR, Ghany MG, Kim HY, et al. Outcomes of sustained virological responders with histologically advanced chronic hepatitis C. Hepatology 2010; 52: 833–44.

32. Cardoso AC, Moucari R, Figueiredo-Mendes C, et al. Impact of peginterferon and ribavirin therapy on hepatocellular carcinoma: incidence and survival in hepatitis C patients with advanced fibrosis. J Hepatol 2010; 52: 652–7.

33. McCombs J, Matsuda T, Tonnu-Mihara I, et al. The risk of long-term morbidity and mortality in patients with chronic hepatitis C: results from an analysis of data from a department of veterans affairs clinical registry. JAMAIntern Med 2014; 174: 204–12.

34. Rockey DC, Caldwell SH, Goodman ZD, Nelson RC, Smith A. D: American association for the study of liver disease. Liver biopsy. Hepatology 2009; 49: 1017–44.

35. Colloredo G, Guido M, Sonzogni A, Leandro G. Impact of liver biopsy size on histological evaluation of chronic viral hepatitis: the smaller the sample, the milder the disease. J Hepatol 2003; 39: 239.

36. Fanning L, Loane J, Kenny-Walsh E, et al. Tissue viral load variability in chronic hepatitis C. Am J Gastroenterol 2001; 96: 3384–9.

37. Siddique I, El-Naga HA, Madda JP, Memon A, Hasan F. Sampling variability on percutaneous liver biopsy in patients with chronic hepatitis C virus infection. Scand J Gastroenterol 2003; 38: 427–32.

38. Regev A, Berho M, Jeffers LJ, et al. Sampling error and intraobserver variation in liver biopsy in patients with chronic HCV infection. Am J Gastroenterol 2002; 97: 2614–8.

39. Rousselet MC, Michalak S, Dupre F, et al. Sources of variability in histological scoring of chronic viral hepatitis. Hepatology 2005; 41: 257

40. Osinusi A, Meissner EG, Lee YJ, et al. Sofosbuvir and ribavirin for hepatitis C genotype 1 in patients with unfavorable treatment characteristics: a randomized clinical trial. JAMA 2013; 310: 804–11.

41. Lawitz E, Mangia A, Wyles D, et al. Sofosbuvir for previously untreated chronic hepatitis C infection. N Engl J Med 2013; 368: 1878–87.

42. Jacobson IM, Gordon SC, Kowdley KV, et al. Sofosbuvir for hepatitis C genotype 2 or 3 in patients without treatment options. N Engl J Med 2013; 368: 1867–77.

Source

March 20, 2015

Delay HCV Tx and Watch Patients Die

by Michael Smith
North American Correspondent, MedPage Today

Meeting Coverage 03.01.2015

-- Even successful treatment carries risk if it is delayed, model suggests.

SEATTLE -- Delaying hepatitis C (HCV) treatment in patients who also have HIV increases the risk of liver complications and death even if the therapy is successful, a researcher said.

In a computer modeling study, treating a patient in METAVIR stage F3 disease instead of stage F2 increased the risk of liver-related death from 5% to 10%, according to Cindy Zahnd, a research assistant at the University of Bern in Switzerland.

And if successful HCV treatment was delayed until stage F4, the risk of liver-related death rose to 25%, compared with therapy at stage F2, Zahnd said here at the 2015 Conference on Retroviruses and Opportunistic Infections.

That's because "people who are living with HIV have many other risk factors that maintain them at a certain risk even after HCV clearance," Zahnd said.

It might seem obvious that delayed treatment increases the risk of complications or death, Zahnd told MedPage Today, but there is little long-term follow-up of actual patients that quantifies that danger.

"The point of this exercise was to project the long-term risk," she said.

The issue is important, especially in the U.S. where there is "push-back" against paying for some of the new and expensive anti-HCV agents early in the disease course, commented David Thomas, MD, of Johns Hopkins University School of Medicine, who moderated a media conference at which the data was discussed.

"Sometimes drugs aren't paid for in patients in a lower stage of disease," he said, because of a "mental model that someone would have to go to F4 before they get into trouble."

So insurers and other payers are often content to wait, he said, especially since some newer agents have been controversial because of their costs.

What the study shows, he added, is that "this approach has consequences."

The researchers used data from the Swiss Hepatitis C Study for the period before the newer agents were available to obtain estimates of the risk of progression in coinfected patients, Zahnd said.

In those days, treatment was with pegylated interferon and ribavirin, only about 60% of patients attempted the treatment, and only about 40% were able to clear HCV, she noted.

Those data suggested, however, that successful treatment would reduce the risk of liver fibrosis progression by a factor of 10, the risk of decompensated cirrhosis by the same factor, and the risk of hepatocellular carcinoma by a factor of 2.6.

Their model assumed that uptake of treatment with newer agents would be 100% and that cure rates would be about 90%, Zahnd said.

In that scenario, if treatment is provided soon after diagnosis -- between a month and a year later -- less than 3% of patients would die of liver complications, the model showed.

On the other hand, if treatment was delayed until METAVIR stage F2 or higher, the risks gradually increased, reaching 25% in those treated at stage F4, Zahnd said.

The investigators were "a bit surprised" to find that the proportion of liver-related deaths was so high despite successful treatment in most patients, Zahnd said, and concluded that some of the events would have taken place after the HCV was cleared.

Indeed, at the higher stages, most liver-related deaths would occur after the patient had cleared HCV, she said. In some patients, she reported, fibrosis progression would be maintained through persistent risk factors, such as drug toxicity, coinfections, or metabolic liver disease.

One implication of the analysis, Zahnd said, is that delaying treatment -- aside from the individual risks -- also increases the risk of transmitting HCV to others.

Indeed, she said, delaying treatment until METAVIR stage F4 would quadruple the infectious period.

She cautioned that the study had heterogeneous data sources, and also explained that it modeled a closed cohort with no transmission so the analysis probably under-estimates the positive impact of early HCV treatment.

And the model did not include the possibility of re-treatment, Zahnd said, which might have led to an over-estimate of the number of people experiencing liver-related complications.

The analysis was part of the Swiss HIV and the Swiss Hepatitis C Cohort studies. Zahnd did not disclose any relevant relationships.

Thomas disclosed no relevant relationships.

Reviewed by F. Perry Wilson, MD, MSCE Assistant Professor, Section of Nephrology, Yale School of Medicine and Dorothy Caputo, MA, BSN, RN, Nurse Planner

last updated 03.02.2015

Primary Source

Conference on Retroviruses and Opportunistic Infections

Source Reference: Zahnd C, et al "Impact of deferring HCV treatment on liver-related events in HIV+ patients" CROI 2015; Abstract 150.

Source

May 16, 2014

Methadone programs can be key in educating, treating patients with hepatitis C virus infection

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Research by Andrew Talal shows that people who inject drugs want to be educated about hepatitis C and are willing to be treated.

More effective, new medications for HCV infection with fewer side effects also are causing a shift in patients’ attitudes

By Ellen Goldbaum

Release Date: May 16, 2014

People who inject drugs and are enrolled in a drug treatment program are receptive to education about, and treatment for, hepatitis C virus, according to a study by researchers at several institutions, including the University at Buffalo.

That finding, published online this week in the Journal of Addiction Medicine will be welcome news to health care providers. The paper notes that injection drug use is a primary mode of infection, making for an HCV infection prevalence as high as 80 percent among people who inject drugs.

"One of the most important findings of this work is that people who inject drugs do want to be educated about the disease and that education is associated with willingness to be treated," says senior author Andrew H. Talal, MD, professor of medicine in the Division of Gastroenterology, Hepatology and Nutrition at UB and adjunct associate professor of medicine at Weill Cornell Medical College. First author is Marija Zeremski, PhD, senior research associate in medicine at Weill Cornell Medical College and research assistant professor of medicine at UB.

Talal and colleagues previously demonstrated that treatment of addiction significantly enhances the ability of people who use drugs to complete HCV therapy.

"These new findings support the premise that addiction-treatment facilities can help provide sustained HCV treatment for this population," Talal says. "These facilities have the added advantage of being able to link HCV care to drug treatment, allowing for closer patient evaluation, which will likely lead to improved adherence to treatment regimens."

HCV infection often is asymptomatic, but 75 to 80 percent of those infected will develop chronic infection that can progress to liver cirrhosis and/or liver cancer, potentially requiring liver transplantation as a life-saving intervention. However, in order to be considered for a liver transplant, people who use drugs must remain "clean" for at least six months.

The study was based on a survey of 320 patients enrolled in a New York City-based methadone treatment program (START Treatment and Recovery Centers). Nearly half of them reported that they had tested positive for HCV infection.

Seventy-eight percent of respondents expressed willingness to participate in HCV-related education and to receive treatment for HCV. More than half of those surveyed correctly responded to at least five of seven questions assessing their knowledge about HCV.

"People who inject drugs have always wanted to be treated for hepatitis C, but there have been a variety of barriers at the patient, provider and institutional levels," says Talal. "Most importantly, there has been a lack of education about the disease, a fear of side effects of interferon, discomfort in conventional health care venues and a lack of awareness of the status of the infection."

In some cases, the percentage of HCV-infected people who use drugs that show up for HCV-related medical appointments is as low as 10 percent, according to Talal.

In the current research, patients cited fear of side effects from interferon, which remains as part of the standard treatment regimen for genotype 1 infection, as a key barrier to their willingness to accept HCV treatment. Interferon can cause multiple side effects, ranging from fatigue, fever, nausea, anorexia, muscle pain and hair loss, to insomnia, depression and irritability. In addition, interferon-based therapies are only effective in eliminating infection in half of those who take it.

"A major change in the attitudes of people who use drugs is due to knowledge about greatly improved treatment efficacy and the ability to provide HCV treatment at the same site as the substance abuse treatment," says Talal.

Talal adds that the New York State law mandating that all individuals born between 1945 and 1965 be offered HCV screening is increasing the number of people diagnosed with the infection, thereby also making them more receptive to HCV education and treatment.

This study, funded by the Viral Hepatitis Action Coalition and performed in collaboration with the Centers for Disease Control and Prevention, documents the initial phase of a project called Prevention, Evaluation and Treatment of Hepatitis C in Opiate Agonist Treatment (PET-C). Led by Talal, the project's goal is to assess how telemedicine can be used to evaluate a model of HCV treatment for people who inject drugs and are enrolled in a drug treatment program.

Talal conducts research on HCV in UB's Clinical and Translational Research Center and he sees patients as a physician with UBMD, the practice plan of the UB School of Medicine and Biomedical Sciences. He previously served on the advisory board for Abbott Molecular, received support from Gilead Sciences and disclosed a prior relationship with Vertex Pharmaceuticals, all of which helped sponsor the study.

Media Contact Information
Ellen Goldbaum Senior Editor, Medicine
Tel: 716-645-4605
goldbaum@buffalo.edu
Twitter: @egoldbaum

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May 5, 2014

Preparing for the uncertain yet inevitable: Off-label combinations of antiviral agents in hepatitis C virus

Provided by NATAP

Download the PDF here

Hepatology March 1 2014
Andrew Aronsohn,1,2 Nancy Reau,1 and Donald Jensen1

The next generation of direct-acting antiviral agents (DAAs) will change the landscape of hepatitis C virus (HCV) therapy. Approval of complimentary oral agents will also introduce new opportunities for off-label treatment. Off-label therapy in HCV will include (1) combinations of approved drugs, used for the approved indication in an unapproved combination, such as combining two DAAs in an interferon (IFN)-sparing regimen, and (2) combinations of approved drugs used in an unapproved combination for an unapproved indication, such as using two available DAAs to treat patients post-LT (liver transplantation). Both providers and patients might find off-label combinations attractive; however, there may be limited data to support safety and efficacy. These treatment choices may also go against the recommendations published in therapeutic guidelines.

This article will address anticipated issues regarding off-label use of HCV medications, including the role of the U.S. Food and Drug Administration (FDA), consumer pressure, medical society guidelines, and third-party payers. Off-label issues specific to the United States will be described; however, many concepts, such as uncertainties of cost, label regulation, and reimbursement, can be applied to health care systems globally.

The FDA

Regulation of Off-Label Use

The FDA regulates market entry for all new prescription drugs in the United States. Once approved, physicians are not bound to prescribe according to the label-in many cases, off-label prescriptions may be part of best practice or standard of care. Off-label prescribing is legal and has been shown to occur in over one fifth of office-based prescriptions.[1] Upcoming generations of DAAs represent robust therapeutic innovation, which will likely outpace the breadth and capacity of the FDA-approved label. Prescribing already approved agents in an off-label combination may be desired to improve efficacy. In addition, safety may also be improved using these combinations by potentially eliminating drugs with toxicity, such as IFN. FDA approval for these combinations would require a new and unique application for the combined regimen, which would be costly and would require partnership between separate manufacturers. As a result, although the FDA will not regulate a provider's ability to prescribe off-label HCV treatment as they see fit, appropriate applications of use may be ambiguous because they will ultimately be based on a combination of opinion and potentially limited available data.

Defining the Need for Off-Label Combinations

Over 185 million people are infected with HCV worldwide.[2] It has surpassed human immunodeficiency virus (HIV) as a cause for mortality and has been linked to higher all-cause mortality and diminished quality of life.[3, 4] Despite data showing that sustained viral response (SVR) reduces mortality, relatively few patients have undergone successful treatment.[5] Historically, suboptimal efficacy and toxicity of IFN-based therapy has limited therapeutic options for many; however, opportunity is on the horizon. Multiple agents are in the late stages of development. These drugs will target various aspects of the HCV life cycle, making combinations of these agents a natural strategy to more effectively treat HCV and eliminate intolerable side effects or adverse events. Data involving various combinations of DAAs, often from different manufacturers, is rapidly becoming available; however, many of these studies are performed as proof of concept and are unlikely to progress to FDA-approved combinations. Combining DAAs based on these data in an off-label manner may be an attractive option for patients unwilling to undergo IFN-based therapy in addition to patients with comorbidites that have previously disqualified candidacy for standard-of-care therapy. This strategy is not without risk. Insurers may be unwilling to pay for off-label therapy,[6] and these combinations may have inadequate supporting safety and efficacy data.

Recent Centers for Disease Control and Prevention and U.S. Preventive Services Task Force guidelines to screen all patients born between 1945 and 1965 will help identify many patients who have been infected for decades and are at risk for developing complications of chronic liver disease. Although most of these patients are candidates for standard-of-care therapy, with anticipated rates of SVR reaching 75%,[7, 8] many patients and providers have chosen to defer therapy in anticipation for IFN-free regimens. Deferring therapy comes with risk, which includes progression of disease, change in health status, which may make future treatment impossible, possibility of infecting others, and change in patient insurance status, making therapy unaffordable. Although FDA-approved IFN combinations will likely be available in upcoming years, patients and providers may begin to feel restless, deferring therapy, and opt for a readily available off-label IFN-free combination. This patient population will likely represent a Òshort-termÓ utilization of off-label DAA combinations, which will diminish as IFN-free regimens come to market.

Alternatively, there are many subsets of individuals with HCV that that are in need of DAA-based treatment, but will be excluded from upcoming FDA labels because of limitations in supporting data. These patients include those with decompensated cirrhosis, first-generation protease inhibitor failures, chronic kidney disease, pediatric populations, HIV coinfection, and post-LT. Because many of these populations represent relatively small numbers of patients with HCV, it may be difficult to accumulate requisite data and possibly cost prohibitive for manufacturers to apply for FDA approval. These patients may represent Òlonger-termÓ utilization of off-label treatment.

Is There Precedent for Off-Label Use of Therapy?

The Human Immunodeficiency Virus Paradigm

Acquired immune deficiency syndrome (AIDS) was identified in 1981; however, zidovudine was not available until 1987. Between 1987 and 2008, 25 anti-HIV (human immunodeficiency virus) compounds were licensed for use. Similar to HCV, these agents directly target various aspects of the HIV life cycle. As single agents were approved, there was pressure by clinicians and advocates to find off-label combinations that would prevent emergence of viral resistance. By 1996, combination regimens were widely accepted, although the first regimen, Combivir (zidovudine and lamivudine), was not FDA approved until September 26, 1997.[9] The turning point in therapeutics began in 1996, when data presented at the 11th International Conference on AIDS in Vancouver, British Columbia, Canada, represented HIV as a highly efficient virus, producing 10 billion virions per day. Several key publications followed, illustrating the substantial benefit of three agent-based highly active antiretroviral therapies.[10] Although multiagent therapy was quickly incorporated into clinical practice and eventually established as the standard of care, this principle was first supported by expert opinion and guidelines-not necessarily the package insert. In most instances, payers reimbursed these off-label combinations and the Ryan White Comprehensive AIDS Resources Emergency (CARE) Act provided support. A loud and vocal advocacy campaign provided the necessary impetus for this outcome.

Experience With Hepatitis B

Before the approval of entecavir and tenofovir for hepatitis B virus (HBV), the combination of adefovir and lamivudine was used to control HBV resistant to monotherapy, as well as to prevent the development of resistance in those considered at high risk. Tenofovir, commercially available as an approved drug for HIV, was used off label in the management of hepatitis B well before the FDA approved the drug for this indication. Truvada (tenofovir in combination with emtracitabine) continues to be used off label in the management of HBV. Clinical guidelines advocate for off-label combinations of these medications to manage resistant HBV.[11]

HCV Therapy May Be Different

Although there is precedent for off-label therapy in many diseases, HCV has unique considerations. First, unlike HIV, in patients without advanced fibrosis there is often no urgency to initiate therapy. Progression to clinically significant disease in HCV often takes decades, and patients and providers may be less willing to take on the risk of off-label treatment when an approved regimen is only months to years away. Second, for many patients, the current standard-of-care HCV treatment is safe and offers high rates of SVR. Alternatively, drug-resistant HBV, HIV, and many cancers may have limited, if any, FDA-approved treatments, making an off-label therapy the only option. Finally, there is not the same intensity of HCV advocacy as there had been for HIV, a pivotal factor in swaying third-party reimbursement.

Practical Considerations in Off-Label Use of DAAs

How Much Supporting Data Will Be Required?

Off-label use of upcoming DAAs will certainly occur; however, the degree of utilization will rely on availability of safety and efficacy data. One emerging source of data may come from prospective observational studies, such as HCV TARGET and CUPIC. These multicenter studies enroll large numbers of patients undergoing HCV therapy and have the potential to capture vast amounts of off-label therapeutic data. If a high level of evidence from observational studies or well-controlled clinical trials is available, it is possible that off-label combinations may be advocated by authoritative guidelines from well-respected academic associations. More likely, especially in understudied populations, robust data will not be available. In these cases, providers and patients will have to determine their minimal threshold of safety and efficacy data to initiate off-label therapy without the assistance of guidelines or a package insert. Treatment based on limited data will require extensive communication and understanding of therapeutic options between the patient and provider.

What Will Be the Role of Industry and How Will It Be Regulated?

Although prescribing practices are unregulated, industry promotion of off-label use is highly restricted. Pharmaceutical companies are required to submit final promotional materials to the FDA for review at the time of public dissemination. Off-label promotion in these materials is strictly prohibited and is subject to FDA regulatory action. In contrast, the FDA has taken a more lenient position on activities that fall under the safe harbor of Òscientific exchangeÓ of information. Recent guidelines allow for industry dissemination of scientific literature of non-FDA-approved drug use, provided it is in an unabridged form, published in a peer-reviewed journal, and accompanied by a clear statement that indicates the study involves off-label use of a given therapy.[12] Another potential outlet for marketing will be industry-sponsored continuing medical education activities, which may include nonpromotional discussion of off-label use of a therapy. Both of these practices are already highly utilized in the HCV therapy market and will likely increase in volume as new agents prepare to come to market and are approved. Providers who treat HCV will encounter vast amounts of data presented in these formats that are unregulated by the FDA and will be required to critically evaluate the quality and utility of these data before integrating it into clinical practice.

Reimbursement of Off-Label Therapy

Opportunities for off-label HCV treatment with newer DAAs will only be realized if payers reimburse drug costs. Because most health plans rarely publicize policy regarding off-label reimbursement, there tends to be heterogeneity among plans with regard to reimbursement procedures. In general, the likelihood of reimbursement can be thought of as a continuum in which FDA-approved use has the highest probability of reimbursement; mention of an off-label use in society guidelines, compendia, or peer-reviewed literature are less likely to be reimbursed, and expert opinions of off-label use, including data presented in non-peer-reviewed abstract form being least likely to be reimbursed. This continuum is affected by both cost of drug and availability of therapeutic alternatives. In 2009, 34 third-party payers representing approximately one quarter of Medicare and Medicaid beneficiaries nationwide were surveyed regarding practices in off-label reimbursement.[13] Approximately 25% of these payers refused payment for off-label therapy of any kind. Of those who did reimburse off-label therapy, data sources that were felt to be Òvery importantÓ in determining eligibility for reimbursement included peer-reviewed literature (74%), clinical practice guidelines (53%), and cost-effectiveness data (21%). In instances where off-label reimbursement was allowed, restrictions of use were reported to be imposed 85% of the time. Examples of restrictions included requirement for previous authorization, step therapy (i.e., failing less costly treatment first), and quantity limits.

Off-label uses of therapies supported by high-quality evidence and seen as standard of care are more likely to be reimbursed by payers. The competitive development of HCV therapy is unique and may uncover exceptions to this rule. First, the rapid progress of the HCV therapeutic pipeline combined with the chronic nature of HCV and a highly effective standard-of-care therapy may deincentivize payers to reimburse off-label treatment when similar FDA-approved therapeutic regimens are projected to be only months away. For example, payers may be reluctant to allow for payment for both simeprevir and sofosbuvir based on the COSMOS trial when IFN-free regimens, offering similar safety and efficacy data, are under consideration for FDA approval in the near future.[14]In addition, as newer agents continue to minimize toxicity and optimize efficacy, payers will be less likely to reimburse potentially costly off-label regimens that offer only incremental benefits of efficacy, safety, or duration of therapy. Finally, because price will be independently negotiated on a per-drug basis, mixing different agents may skew cost/efficacy ratios and threaten to increase financial burden to payers.

Off-label HCV therapy will offer a unique opportunity for providers to use innovative combinations of drugs to treat patients in need; however, this treatment will come at a cost. To mitigate this cost, we can expect increasing payer requirements to justify off-label use. Ironically, third-party payers may become a de facto regulatory body by making decisions on which off-label regimens will be allowed.

Summary

The availability of new DAAs will provide unprecedented opportunities for off-label HCV therapies in many patients. These patients will include those who are unwilling to take, or intolerant of, IFN and those in need of HCV therapy with no other treatment options. For many, this will ultimately be tempered by FDA-approved all-oral options, but until that time, patients, prescribers, and payers will struggle in an environment where more questions exist than answers. There are no rules, and thus there will be little consistency. Historical precedent only serves as proof of concept. Hepatitis C therapy is not offered under the Ryan White CARE Act rules, and as a consequence, HCV treatment will certainly become polarized. No standard for the minimal amount of safety and efficacy data exists, and in many cases, providers will make treatment decisions without the support of the FDA or treatment guidelines. Patient communication, critical evaluation of available evidence, and meticulous management of off-label treatment recipients will be of paramount importance as we enter into the next era of on- and off-label DAA therapy.

Source

May 4, 2014

We Are on the Precipice of Treating Virtually Everyone with HCV – Dr. Donald Jensen

Originally posted on DDW Blog

Posted by Rachel Steigerwald on May 4, 2014 in Explore Sessions, Featured, Watch Videos | 0 comments

DDW TV interviewed Donald Jensen, MD, about his State-of-the-Art Lecture, Treatment of Hepatitis C: Interferon-Free at Last, taking place at DDW 2014. Dr. Jensen highlights the progress made in treating hepatitis C and how new therapies discussed at this session will change patient care.

Source

Hepatitis C, A Global Issue: Access to Care and New Therapeutic and Preventive Approaches in Resource-Constrained Areas

Maud Lemoine, MD, PhD1 Mark Thursz, MD, PhD1

1Hepatology & Gastroenterology Section, Imperial College, London, United Kingdom

Semin Liver Dis 2014;34:89–97.

Address for correspondence Mark Thursz, MD, PhD, Hepatology & Gastroenterology Section, Imperial College, Norfolk Place, London W2 1NY, United Kingdom (e-mail: m.thursz@imperial.ac.uk).

Abstract

With the advent of all oral direct-acting antiviral drugs with a broad range of genotypic activity and a low incidence of side effects, we are entering an exciting new era in the therapeutics of hepatitis C virus (HCV). However, it is not yet clear who will benefit from these innovations: Will the advantages be limited to HCV patients in industrialized nations or could the whole community of HCV-infected individuals be given access to treatment? As the majority of people infected with HCV live in resource-limited settings it is important to overcome the barriers that restrict access to treatment in these areas. Drug costs, public and professional education, simplified diagnostics, and political imperative all need to be addressed before the majority of HCV-infected individuals can benefit from the new generation of HCV antivirals.

Hepatitis C virus (HCV) infection is prevalent in every country where it has been sought making it a global health problem with an estimated prevalence of over 184 million people worldwide.1 However, the prevalence rates of infection are highly heterogeneous with a disproportionate burden of infection in countries with limited health care resources. In addition to heterogeneity in the prevalence of infection there is also heterogeneity in the distribution of viral genotypes; in most developed countries genotypes 1 and 3 dominate whereas genotypes 4, 5, and 6 aremore common in countries with limited healthcare resources.2

Over the past 15 years HCV genotype 1 has been regarded as themost difficult to treat, requiring 48 weeks of pegylated interferon and ribavirin (PegIFN/RBV) and achieving sustained virological response (SVR) rates of only 45%. However, the development of new direct-acting antivirals (DAAs) which are frequently targeted at genotype 1 have made this genotype easier to treat. New IFN-free DAA combinations have also significantly improved SVR rates in HCV genotype 2 and 4 infected patients. However, results are still unsatisfactory in genotype 3 and data in genotypes 5 and 6 are limited.

There are important differences in the dominant routes of transmission between geographical regionswith intravenous drug use being the most common route of transmission in Europe, North America, and Australasia and iatrogenic transmission being more important in most resource-limited settings.3 Preventive strategies are essential to the control of the HCV epidemic, but the variation in routes of transmission will require a tailored approach to infection control according to the local population needs. The priority in resource-limited countries will be control of transmission in health care facilities whereas the priority in affluent countries will be the interruption of transmission among people who inject drugs (PWID).

Although there is significant variation between countries in the routes of transmission, prevalence and burden of disease there is consistency in resource-limited settings for the poor access to treatment.

Continue reading full article here – PDF (Free)

April 10, 2014

Why Hepatitis C Is Vastly Underreported

Provided by Albert Einstein College of Medicine -- The Doctor's Tablet Blog

by Kristina R. Chacko, M.D. on April 10, 2014

Hepatitis-C-text

Hepatitis C virus (HCV) continues to be the number one cause of cirrhosis and liver cancer and the primary indicator for liver transplantation in the United States, yet it remains vastly underdiagnosed.

More than three million people in the U.S. are infected. Guidelines support widespread screening for HCV, and excellent treatments are now available.

So the question remains: why is HCV underreported?

When “Good” News Disguises Bad
A recently published study in the Annals of Internal Medicine found that, according to the National Health and Nutrition Examination Survey (NHANES), the estimated prevalence of chronic HCV infection has decreased from 1.3 percent of the population (3.2 million persons) to 1.0 percent (2.7 million persons).

That would seem like a sign of notable progress. But the study has important limitations.

One major limitation of this estimate is that it excludes the homeless and people who are incarcerated. In a recently published systemic review and meta-analysis in Hepatology, approximately 668,500 prisoners and others in enclosed environments in North America were projected to be HCV antibody positive. That’s 24 percent of the entire North American prison population.

While the study in question focused on the United States, it’s useful to look at global trends. According to the Global Burden of Diseases, Injuries and Risk Factors 2010 Study, the prevalence of HCV rose from 2.3 to 2.8 percent globally (>122 million to >185 million) between 1990 and 2005.

The NHANES findings also suggest that the decrease in disease prevalence appears to be related to an increase in HCV-related deaths rather than to cured infections. Since 2006, deaths related to HCV have outnumbered those from HIV infection, according to an analysis by the Centers for Disease Control (CDC). Several studies have shown a marked increase in the number of HCV-associated hospitalizations and deaths over the past decade, and most experts suspect that this is a gross underestimate.

While the CDC estimates that from 2.7 to 3.9 million people in the United States are chronically infected with HCV, most remain unaware that they are infected. I’ve seen this firsthand, as many newly diagnosed patients who present with advanced liver disease say “My liver tests were always normal.” Patients who are chronically infected are frequently asymptomatic, with normal or only mildly elevated liver enzymes.

Chronic HCV infection is an indolent infection (meaning it’s slow to develop) that causes ongoing inflammation and scarring in the liver, with complications from chronic infection, including cirrhosis and liver cancer, appearing after several decades of living with the virus.

More Rigorous HCV Testing Needed
More effective and rigorous screening with HCV antibody testing is necessary to identify asymptomatic individuals. The CDC published guidelines for screening in 1998, recommending that doctors test individuals for HCV if they have used intravenous drugs, have certain medical conditions or received a blood transfusion or transplant before 1992. Subgroups of the population with a high prevalence of HCV infection include HIV-positive people, Vietnam-era veterans, incarcerated persons and black males ages 40 to 49, with prevalence rates ranging from 11 to 15 percent.

Almost half of people with positive HCV antibodies had no known exposure risk, and it has become clear that risk-based approaches are not adequate to identify infected persons in the general population.

In 2012, the screening guidelines were updated to include all adults born between 1945 and 1965, as people born during this time period accounted for up to 75 percent of all chronic HCV infections. In 2013, the U.S. Preventive Services Task Force took note of the CDC’s recommendations and updated its screening guidelines to reinforce the importance of screening for viral hepatitis; its “grade B” recommendation means there is either high certainty that the benefits of such screening are moderate or a moderate certainty that the benefits are moderate to substantial.

This is not enough, though. In a busy primary-care practice, screening for HCV infection often falls by the wayside as doctors manage diabetes and heart disease. In one study, only 36 percent of physicians adhered to the screening guidelines. Outreach efforts are needed to educate patients and physicians regarding the value of early identification of HCV infection and referral for treatment.

More Effective Drugs Can Mean Cure
The landscape of HCV treatment has changed dramatically. For years, patients and physicians struggled to cure the virus with interferon-based therapies that were difficult to tolerate and successful in only 15 to 40 percent of patients. Recent advances in research have given us an understanding of HCV replication, which has led to the development of direct-acting antiviral agents. These medications (two of which, sofosbuvir and simeprevir, were approved by the Food and Drug Administration in late 2013, with many more in the clinical-trial pipeline) have made it possible to treat and cure more patients with much less risk.

With the successful treatment of HCV, there is a clear reduction in all-cause mortality, cirrhosis, liver cancer and the need for liver transplants.

The high cost of this treatment is considered a barrier for some. The regimen can cost $150,000 for a three-month course of treatment, which usually includes more than one antiviral drug. Justifying that cost and exploring ways to increase access to treatment are hotly debated topics.

The burden of HCV is increasing, with an estimated 165,900 deaths from chronic liver disease and $10.7 billion in direct medical expenditures expected to occur between 2010 and 2019. Liver transplantation is a lifesaving operation for patients with advanced liver disease or liver cancer, but due to organ shortages, it remains an option only for a select few.

What I can say, as a Montefiore specialist who treats liver disease and an Einstein assistant professor who joins colleagues in researching the ravages of chronic HCV, is that we need to be aggressive about getting as many people tested as possible (within guidelines) and raising awareness about a virus that is often a silent pathogen until it’s too late.

We have the tests to diagnose HCV and the drugs to cure a high percentage of HCV cases. We should use them fully.

Source

April 9, 2014

WHO issues its first hepatitis C treatment guidelines for the screening, care and treatment of persons with Hepatitis C at EASL

News release

The World Health Organization (WHO) has issued its first guidance for the treatment of hepatitis C, a chronic infection that affects an estimated 130 million to 150 million people and results in 350 000 to 500 000 deaths a year.

9 April 2014 | London, United Kingdom - WHO has issued its first guidance for the treatment of hepatitis C, a chronic infection that affects an estimated 130 million to 150 million people and results in 350 000 to 500 000 deaths a year.

The publication of the "WHO Guidelines for the screening, care and treatment of persons with hepatitis C infection" coincides with the availability of more effective and safer oral hepatitis medicines, along with the promise of even more new medicines in the next few years.

“The WHO recommendations are based on a thorough review of the best and latest scientific evidence,” says Dr Stefan Wiktor, who leads WHO’s Global Hepatitis Programme. “The new guidance aims to help countries to improve treatment and care for hepatitis and thereby reduce deaths from liver cancer and cirrhosis.”

WHO will be working with countries to introduce the guidelines as part of their national treatment programmes. WHO support will include assistance to make the new treatments available and consideration of all possible avenues to make them affordable for all. WHO will also assess the quality of hepatitis laboratory tests and generic forms of hepatitis medicines.

“Hepatitis C treatment is currently unaffordable to most patients in need. The challenge now is to ensure that everyone who needs these drugs can access them,” says Dr Peter Beyer, Senior Advisor for the Essential Medicines and Health Products Department at WHO. “Experience has shown that a multi-pronged strategy is required to improve access to treatment, including creating demand for treatment. The development of WHO guidelines is a key step in this process.”

Nine key recommendations

The new guidelines make nine key recommendations. These include approaches to increase the number of people screened for hepatitis C infection, advice as to how to mitigate liver damage for those who are infected and how to select and provide appropriate treatments for chronic hepatitis C infection.

Screening

WHO recommends a screening test for those considered at high risk of infection, followed by another test for those who screen positive, to establish whether they have chronic hepatitis C infection.

Mitigating liver damage

Since alcohol use can accelerate liver damage caused by hepatitis C, WHO now advises that people with chronic hepatitis C infection receive an alcohol assessment. The Organization also recommends providing counseling to reduce alcohol intake for people with moderate or high alcohol use. In addition, the guidelines provide advice on the selection of the most appropriate test to assess the degree of liver damage in those with chronic hepatitis C infection.

Treatment

The guidelines provide recommendations on existing treatments based on interferon injections as well as the new regimens that use only oral medicines. WHO will update recommendations on drug treatments periodically as additional antiviral medicines are registered on the market and new evidence emerges.

Prevention

The 2014 recommendations also summarize for policy makers and health care workers interventions that should be put in place to prevent transmission of hepatitis C, including measures to assure the safety of medical procedures and injections in health care settings and among persons who inject drugs. Rates of new hepatitis C infections remain unacceptably high in many countries because of the reuse of injection equipment and lack of screening of blood transfusions.

“Many people remain unaware - sometimes for decades - that they are infected with hepatitis C,” says Dr Andrew Ball, Senior Advisor for Policy, Strategy and Equity for WHO’s HIV/AIDS Department where the Global Hepatitis Programme is housed. “Today’s launch highlights the need for more awareness and education on hepatitis for the general public. Greater awareness on the risks associated with hepatitis C should lead to a demand for services and expansion of laboratory capacity and clinical services so that more people can be tested, treated and cured.”

There are five main hepatitis viruses, referred to as types A, B, C, D and E. Hepatitis B and C have the greatest public health impact because they cause chronic infection which can progress to cirrhosis and liver cancer. Hepatitis A and E, spread though unsafe water and contaminated food, have the potential to cause outbreaks in certain populations.

Hepatitis C virus is most commonly transmitted through exposure to contaminated blood. Those at risk include people undergoing invasive medical procedures and therapeutic injections where there is poor infection control. Also at risk are those exposed to contaminated injecting and skin piercing equipment, including through injecting drug use, tattooing and body piercing.

The WHO Guidelines for the screening, care and treatment of persons with hepatitis C infection were launched on the eve of the opening of the 2014 International Liver Congress, attended by around 10 000 delegates in London.

For more information, contact

Glenn Thomas
Mobile: +41 79 509 0677
Telephone.: +41 22 791 3983
Email: thomasg@who.int

Tunga Namjilsuren
WHO Information manager
Telephone: + 41 22 791 1073
Email: namjilsurent@who.int

Source


Guidelines for the screening, care and treatment of persons with hepatitis C infection

Authors: WHO

Guidelines for the screening, care and treatment of persons with hepatitis C infection

Publication details

Number of pages: 124
Publication date: April 2014
Languages: English
ISBN: 978 92 4 154875 5

Downloads

Guidelines pdf, 1.77Mb

Overview

These are the first guidelines dealing with hepatitis C treatment produced by the World Health Organization (WHO) and complement existing guidance on the prevention of transmission of bloodborne viruses, including HCV. They are intended for policy-makers, government officials, and others working in low- and middleincome countries who are developing programmes for the screening, care and treatment of persons with HCV infection.

These guidelines serve as a framework that can allow the expansion of clinical services to patients with HCV infection, as they provide key recommendations in these areas and discuss considerations for implementation. The guidelines are also intended for health-care providers who care for persons with HCV infection in low- and middle-countries and provide them guidance in the management of patients infected with HCV.

Source

EASL publishes online recommendations on the management of hepatitis C

PUBLIC RELEASE DATE: 9-Apr-2014 Contact: Courtney Lock
courtney.lock@cohnwolfe.com
44-789-438-6422
European Association for the Study of the Liver

London, UK, Wednesday 9 April 2014: The European Association for the Study of the Liver (EASL) will this week be announcing new on-line recommendations on the management of hepatitis C (HCV) at the International Liver Congress™ (ILC). These EASL recommendations reflect the approval of three new direct-acting antivirals (DAAs) during 2014 by the European Medicines Agency.

It is estimated that approximately 185 million people are infected with HCV on a global scale, with approximately 150 million people living with chronic infection. In Europe, between 7.3 million and 8.8 million people are infected with HCV and approximately 3-4 million people become newly infected each year.

Three new HCV DAAs that are more efficacious and better-tolerated, will be on the European market in the first half of 2014, for use as part of combination therapies for HCV infection. Sofosbuvir, a nucleotide analogue inhibitor of HCV ribonucleic acid (RNA)-dependent RNA polymerase, was approved in January 2014. Simeprevir, a second-wave, first-generation NS3/4A protease inhibitor will be approved in May 2014. Daclatasvir, an NS5A inhibitor, is likely to be approved in August or September 2014.

Coordinator of the recommendations and Director of the French National Reference Centre for Viral Hepatitis Professor Jean-Michel Pawlotsky said: "Since EASL published the HCV Clinical Practice Guidelines in 2013, the treatment paradigm for HCV has changed with three additional direct-acting antivirals - sofosbuvir, simeprevir and daclatasvir –scheduled for approval this year for use in patients infected with HCV genotype 1."

"These groundbreaking drugs continue to revolutionise treatment for HCV patients, including those who failed to respond to previous therapies. The new on-line recommendations provide essential information on the recommended use of these new compounds with and without interferon to help prescribers deliver optimal care for their HCV patients."

Based on a systematic review of existing literature, the new recommendations provide best practice on a number of key areas:

  • Indications for treatment: who should be treated?
  • Available drugs (approved by EMA before the end of 2014)
  • Treatment of chronic hepatitis C
  • Treatment monitoring
  • Measures to improve treatment adherence
  • Post-treatment follow-up of patients who achieve an SVR
  • Retreatment of non-sustained virological responders
  • Treatment of patients with severe liver disease
  • Treatment of special groups

Commenting on the new on-line recommendations, EASL Governing Board member and recommendation panel member Dr. Alessio Aghemo said: "These new EASL on-line recommendations on the management of HCV reflect how the treatment landscape has evolved for this disease, and will further help physicians and other healthcare providers optimise management of patients with acute and chronic HCV."

The new EASL on-line HCV management recommendations will be presented during a session at the ILCTM in London on Saturday 12th April 2014 from 14:00 to 15:00.

###

Disclaimer: the data referenced in this release is based on the submitted abstract. More recent data may be presented at the International Liver Congress™ 2014.

Notes to Editors

About EASL

EASL is the leading European scientific society involved in promoting research and education in hepatology. EASL attracts the foremost hepatology experts and has an impressive track record in promoting research in liver disease, supporting wider education and promoting changes in European liver policy.

EASL's main focus on education and research is delivered through numerous events and initiatives, including:

  • The International Liver CongressTM which is the main scientific and professional event in hepatology worldwide
  • Meetings including Monothematic and Special conferences, Post Graduate courses and other endorsed meetings that take place throughout the year
  • Clinical and Basic Schools of Hepatology, a series of events covering different aspects in the field of Hepatology
  • Journal of Hepatology published monthly
  • Participation in a number of policy initiatives at European level

    About The International Liver CongressTM 2014

The International Liver Congress™ 2014, the 49th annual meeting of the European Association for the study of the Liver, is being held at ExCel London from April 9 – 13, 2014. The congress annually attracts in excess of 9000 clinicians and scientists from around the world and provides an opportunity to hear the latest research, perspectives and treatments of liver disease from principal experts in the field.

For further information on the guidelines, or to request an interview, please do not hesitate to contact the EASL Press Office on:
Email: easlpressoffice@cohnwolfe.com

Helena Symeou +44 7976 562 430
Courtney Lock +44 7894 386 422

1.World Health Organization. WHO Guidelines for the Screening, Care and Treatment of Persons with Hepatitis C Infection. 2014.
2. European Association for the Study of the Liver. Clinical Practice Guidelines - Update on the management of hepatitis C virus infection. Journal of Hepatology, 2014.
3. WebMD. Hepatitis Health Center. Available at http://www.webmd.com/hepatitis/ Accessed 01.04.14

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March 21, 2014

New HCV Guidance: Rapid Updates for Clinicians

Medscape Gastroenterology

Laura A. Stokowski, RN, MS, Helen W. Boucher, MD, Paul Martin, MD
March 21, 2014

HCV Science Catching Up to Medical Need

In just 2 or 3 years, the pace of progress in the treatment of hepatitis C virus (HCV) infection has been fairly dramatic. A swift and steady stream of new drugs has challenged clinicians to keep up with the latest recommendations for therapy, and the pipeline is far from dry. The next wave of direct-acting antivirals will continue to target the HCV life cycle from different angles, and combining molecules with different mechanisms of action, different resistance profile, and high antiviral activity will be the name of the game.[1]

Safer, shorter, and more durable treatments are anxiously awaited by many patients already infected with HCV, who have been forestalling treatment or retreatment while waiting for all-oral, interferon-free regimens that will cure their infections without the adverse effects associated with previous drugs. For the rest of the estimated 2-3 million individuals infected with HCV in the United States, all the new drugs in the world are of scant worth if these infections remain undiagnosed.

The recommendation to add a 1-time HCV birth cohort screening for "baby boomers" to exposure risk-based screening[2] is expected to identify more than 800,000 new cases of chronic HCV infection in the United States.[3] Many clinicians -- from those on the frontlines of primary care to the specialists who are experienced in managing HCV and its complications -- will be needed to cope with the burgeoning newly diagnosed population.

The rapid advances in the field of HCV prompted the Infectious Diseases Society of America (IDSA) and the American Association for the Study of Liver Diseases (AASLD), in collaboration with the International Antiviral Society-USA (IAS-USA), to sponsor an effort to synthesize the current evidence in the field, from which was derived a set of expert-developed recommendations for the management of HCV infection, a feat that was accomplished remarkably quickly. The first phase of the HCV guidance, available online at HCVguidelines.org, details the methodology used to develop the guidance, and covers the following sections related to diagnosis, referral, and management:

  • HCV Testing and Linkage to Care;

  • Initial Treatment of HCV Infection in Patients Starting Treatment;

  • Retreatment of Persons in Whom Prior Therapy Has Failed; and

  • Unique Patient Populations (HIV/HCV coinfection, cirrhosis, transplantation, renal impairment).

Sections ("coming soon") that are now being developed for updates of the guidance include:

  • In Whom and When to Initiate Treatment;

  • Monitoring Patients Who Are On or Have Completed Therapy; and

  • Management of Acute HCV Infection.

Clinicians will appreciate the color-coded treatment guidance within the report, allowing them to distinguish at a glance "recommended" (outlined in green) from the "not recommended" (outlined in red) treatment regimens. Each section of the report ends with a quick reference summary of recommendations, and useful resources are provided at exactly the point they might be needed. For example, the section on testing includes a table of commercially available, US Food and Drug Administration-approved anti-HCV screening assays, and a simple algorithm of the recommended sequence for screening, testing, and linking patients to care for ongoing evaluation and management.

Medscape Talks to Paul Martin, MD, and Helen W. Boucher, MD, for Perspectives on New HCV Guidance

Medscape recently spoke with Dr. Paul Martin, a hepatologist and member of the guidance writing panel, and Dr. Helen W. Boucher, an infectious diseases specialist, about the new HCV guidance, including key points of emphasis about the content of the guidance, the implications for clinical practice, and what clinicians can expect in the way of updates.

Medscape: HCV treatment is still in flux -- it almost seems impossible to settle on treatment guidelines. How did the HCV guidance first come about?
Dr. Boucher: The HCV guidance was sponsored by the IDSA and the AASLD, with IAS-USA as the collaborating partner. The 2 societies have decided that the best way forward with the treatment of hepatitis C infection is to collaborate, and I think what is so exciting about this new guidance is the partnership behind it. We have recognized the need to provide up-to-date information, and that is what our societies have done with this guidance. The speed with which the guidance document was achieved was extremely noteworthy.

Medscape: You refer to the HCV guidance as a "living document." How does this differ from the model that we are accustomed to in medicine?

Dr. Martin: The whole area of hepatitis C treatment is evolving so rapidly that we felt that it was crucial that treating healthcare providers have access to up-to-date information. The more traditional practice guidelines go through a detailed process and take some time to appear in print. Clearly, however, this whole field is moving so rapidly that we felt that it was best to have our recommendations online as soon as possible. As far as updating it, the same panel will be involved, and additional experts may be invited to participate for specific topics. The idea is that this will be updated on a regular basis. We plan to add additional sections later on. Clearly, however, the HCV guidance reflects treatment options in the United States, as these new drugs may not yet be licensed in other countries where different standards of care exist.

I think this is probably going to be the wave of the future, because we are all now so dependent on the Internet for information. We use the Internet in the office to research clinical questions when a patient is being seen, and I think practice guidelines in the future will reflect what we have done and mirror this sort of model. Speed and completeness are going to be the watchwords of the future.

Medscape: Is it significant that the document is called "HCV Guidance" rather than "HCV Guidelines"?

Dr. Martin: Yes. We view it that guidelines are typically developed after a protracted process, and the word "guidance" reflects the need to make recommendations available to potential treaters in a relatively short period. The recommendations are still based on a combination of review of the literature and consensus of expert opinion, but we view guidance as reflecting an up-to-date process.

Dr. Boucher: We were (and still are) experiencing an explosion of information about how best to treat patients with HCV, similar to what happened with HIV years ago The IAS-USA has done something similar, in a very high-quality way, for HIV/AIDS.

Medscape: With the recommendation to test all "baby boomers" (people born between 1945 and 1965) in addition to risk-based screening, the numbers of individuals with active hepatitis C infection are going to climb in the near future, and concerns have been raised about having enough healthcare providers to evaluate and treat all of these individuals.

In the section on testing and linkage to care, it says, "All patients with current HCV infection and a positive HCV RNA test result should be evaluated by a practitioner with expertise in assessment of liver disease severity and HCV treatment." Does this mean that primary care/internal medicine practitioners should refer all newly diagnosed patients to liver specialists?

Dr. Martin: We didn't restrict management of HCV to any particular discipline. The key thing is in managing hepatitis C is that although you are managing a viral disease, you are also managing the liver disease. We didn't seek to preclude any type of healthcare practitioner from caring for these patients, but we wanted to recommend that patients be seen by somebody who can not only treat the viral infection but also understands that the severity of the liver disease needs to be addressed -- because ultimately that is going to determine, or be an important component of determining, the patient's prognosis.

Dr. Boucher: The important point is that the patient ends up with a healthcare practitioner who is expert in managing his or her disease. Many physicians are expert in treating HCV. Some are infectious diseases trained, and some are gastroenterology/hepatology trained. It differs by medical center; there are no absolutes.

Medscape: In the section about initiating treatment, as written today, what would you most like to draw clinicians' attention to?

Dr. Martin: The most important point is endorsing the use of the combination of sofosbuvir and simeprevir in the treatment of hepatitis C and discouraging the use of telaprevir- and boceprevir-containing regimens. These drugs are still approved for use, although they are associated with higher rates of adverse effects, such as rash and anemia.

Medscape: If a patient has already been started on a regimen involving either telaprevir or boceprevir, would you switch to a different combination, or allow the patient to complete the treatment?
Dr. Martin: If a patient is already doing well on treatment, there is no need to switch therapy.

Medscape: How important is genotyping in tailoring treatment to the patient?

Dr. Martin: Genotyping is key to picking the optimal regimen.

Medscape: Can you speak a little about the progress toward an all-oral, interferon-free treatment for hepatitis C?
Dr. Martin: In my mind, it has already arrived. We are in the first phase of it already. Obviously, interferon is still part of a number of regimens, but as we speak, many patients are receiving all oral therapies

It depends on the genotype. For patients with genotype 1, we have the COSMOS protocol, which is a combination of simeprevir and sofosbuvir. For patients with some non-genotype 1 infections, there is the option of using sofosbuvir with ribavirin, for instance.

In general, therefore, we are seeing an increased use of these all-oral regimens. This reflects what has been approved as of the date that the guidance was generated. A drug such as the NS5A replication complex inhibitor daclatasvir will be part of the revised treatment strategy if and when it has been approved.

Medscape: We hear talk of an "avalanche" of drugs in the HCV pipeline, and that some of the drugs are pan-genotypic: For example, a drug such as the NS5A replication complex inhibitor daclatasvir might become part of a revised treatment strategy if approved. Can we really expect this many new drugs, and how will you keep this manageable for clinicians who must keep up to date with new drugs all the time?

Dr. Martin: "Avalanche" might be overstating it. I would describe it as a very good developmental pipeline, and I think we are going to see continued advances related to the licensing of new drugs. We will probably see several more drugs licensed in the next 1-2 years. It will certainly be challenging to help clinicians keep them all straight, but that is one of the reasons we were interested in developing these guidelines and, in fact, the reason that they are called hepatitis C "guidance" rather than "guidelines." It is a huge amount of information, and it needs to be updated frequently.

Medscape: How much concern do you have about the development of resistance to these drugs?

Dr. Martin: When we are seeing sustained virologic response rates now routinely in excess of 90%, clearly resistance is going to be substantially less of a concern, because most patients are going to be cured by a single course of treatment. That being said, I don't think anybody thinks resistance is going to go away. However, the key to managing or preventing resistance is to very effectively treat the infection with the best drug combination available and to eradicate the infection the first time around.

Medscape: In the guidance document, you don't mention cost of treatment at all. It is understandable that you wouldn't want to get into that, but would you be willing to comment on the reports about the high cost of these drugs?

Dr. Martin: It is fair to say that the more treatment options that there are, the more price pressure there will be on the individual companies to license or sell their drugs at a competitive price. It is very expensive to take care of a patient with advanced liver disease -- not just the cost of a liver transplant, but a patient with advanced liver disease who is in and out of hospital with one complication after another is enormously resource-intensive for the system. If we can abort the progression of liver disease, we are ultimately going to have a major impact on healthcare costs related to hepatitis C. Many patients with hepatitis C may elect to wait for less expensive regimens if their liver disease is mild.

Medscape: Is there anything else practice-changing about the guidance document, as it stands today, that you would like to mention?

Dr. Martin: It is critically important that patients are seen by practitioners who are comfortable managing and treating hepatitis C. We don't want to restrict anyone from taking care of these patients, but we want to make sure that patients have the appropriate work-up. Patients with advanced liver disease who may need additional consideration, such as a liver transplant, should be referred for specialty care. Another group of patients who might need referral are those who are coinfected with HIV, who might need expertise in HIV management.

Dr. Boucher: We hope that primary care practitioners will use the guidance to help them decide who needs a referral and when.

Medscape: How do you plan to disseminate the guidance to clinicians, both now and when there is updated guidance that you want to make them aware of?

Dr. Boucher: I believe that the plan is to use the Website www.hcvguidelines.org as the major point of dissemination.

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