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Clinical Infectious Diseases: An Official Publication of the Infectious Diseases Society of America logoLink to Clinical Infectious Diseases: An Official Publication of the Infectious Diseases Society of America
editorial
. 2019 Jul 26;70(12):2703–2705. doi: 10.1093/cid/ciz695

Hepatitis C Virus Reinfection Rate Among Persons Who Use Drugs and Are Maintained on Medication Treatment for Opioid Use Disorder

Sandra A Springer 1,
PMCID: PMC7286379  PMID: 31346595

(See the Major Article by Akiyama et al on pages 2695–72.)

In their extension follow-up study of the previously published 3-arm PREVAIL randomized controlled trial of 3 models of care for treatment of hepatitis C virus (HCV) infection [1, 2], published in this issue of Clinical Infectious Diseases [3], Akiyama et al found an extremely low HCV reinfection incidence rate among persons receiving medication treatment for opioid use disorder (OUD) (MOUD) who had been treated with direct-acting antivirals and achieved HCV cure (sustained viral response at 12 weeks and 24 weeks).

The parent PREVAIL trial, from which participants in the current study were recruited, included 150 persons with OUD enrolled in opioid agonist treatment program (methadone/buprenorphine) in the Bronx, New York. Within the PREVAIL study, 94% achieved sustained viral response and thus achieved HCV cure. This is consistent with findings in other studies of persons who use drugs (PWUD) receiving MOUD who were treated for HCV [4–6]. Such similarities to HCV cure have been seen in the treatment of persons living with human immunodeficiency virus (HIV) and OUD who received coadministered MOUD with antiretroviral therapy that improved HIV suppression rates, the ultimate goal of chronic HIV treatment [7–9]. This particular extension study enrolled participants who completed PREVAIL and achieved sustained viral response, and it then followed them up for an additional 24 months to assess HCV reinfection incidence rates, time to reinfection, and risk factors for reinfection. Eighty-one percent of the primary PREVAIL study participants enrolled in this extension study, and all had OUD, with 75% of them reporting injection as the mode of opioid use. All were receiving MOUD, with 98% receiving methadone and the other 2% receiving buprenorphine treatment.

The first important outcome from this study was that only 3 persons met the study’s definition of reinfection over a follow-up period 246 person-years, with the reinfection incidence rate calculated as 1.22/100 person-years. In addition, only 2 of the 3 actually met “clinical” criteria for HCV reinfection based on the persistence of HCV viremia, and 1 had only transient detectable viremia that cleared spontaneously without retreatment for HCV. This low rate of HCV reinfection is similar to that in other studies such as C-EDGE CO-STAR [4, 10], which also included PWID receiving MOUD, and the SIMPLIFY trial [11], which included PWUD with ongoing drug use not receiving MOUD. Overall, MOUD has been shown to reduce an individual’s risk of acquiring HCV by about half [12–14].

Second, 19% of the participants in this extension study reported ongoing drug use, and the incidence of reinfection was greater (7.4 per 100 person–years) than among those who did not have ongoing drug use. Ongoing injection drug use also was found to be an independent predictor for HCV reinfection in this study, similar to findings in other published studies [10, 15]. Importantly however, this study identified that injecting opioids plus stimulants or stimulants alone predicted the risk of reinfection, but injecting opioids alone did not. This is an extremely critical point and is often overlooked in studies of reinfection after treatment for HCV among PWUD.

Akiyama et al [3], in the current study, obtained more nuanced results by identifying the form of drug injected when evaluating predictors of reinfection, compared with other published studies that evaluated reinfection risks without considering the form of drug injected. This is important, because it demonstrates that MOUD was not a failure in treating OUD or preventing risk of reinfection, but rather that ongoing stimulant use (cocaine or methamphetamine), alone or in combination with opioids, predicted reinfection. Furthermore, this highlights polysubstance use, in particular methamphetamine combined with heroin and fentanyl, as increasingly associated with new HIV and HCV outbreaks nationally [16–18] as well as increased overdose deaths [19]. Stimulant use can derail benefit of MOUD for OUD treatment, and there is still no identified effective medication treatment for stimulant use disorders, so more research is needed to develop effective treatments for cocaine and methamphetamine use disorders.

The next important point identified in the current study is that sharing syringes and drug paraphernalia also predicted reinfection, thus identifying the critical need to integrate additional harm reduction services that include needle syringe exchange programs (NSEPs) combined with MOUD during and after HCV treatment to reduce reinfection risk. Systematic reviews and meta-analyses have indicated that NSEPs combined with MOUD are associated with a reduction in an individual’s risk of acquiring HCV by as much as 76% and in HIV incidence by 34% [20].

Furthermore, epidemic mathematical models have been used successfully to look at the effects of various coverage levels for interventions to counter the HCV epidemic among PWUD [21–24], and these models have shown that modest increases in levels of HCV treatment among PWUD could substantially reduce HCV prevalence and incidence. The HCV epidemic is slowly expanding among PWUD in the United States, and modeling predicts that scaling up to full harm reduction that includes combining direct-acting antivirals, MOUD, and NSEPs would substantially reduce incidence and prevalence by ≥50% by 2030 [25]. Scott County, Indiana, had a relatively high prevalence of HCV identified among PWUD, coupled with an expanding HCV epidemic related to a surge in the opioid epidemic there [16]. Mathematical modeling indicates a continued increase in HCV prevalence in Scott County that could rise to roughly 83% by year 2030 in the absence of MOUD and NSEPs to prevent new infection and reduce both chronic prevalence and incidence [25, 26].

The final important point of the study by Akiyama et al [3] is that all 3 persons in the study who were reinfected with HCV after sustained viral response were homeless Latino men. Homelessness was another factor that independently predicted HCV reinfection in this study; it makes entering treatment for substance use disorders or infectious diseases such HIV and HCV more difficult and presents nearly impossible odds of retention in treatment [27, 28]. Expanding access to HCV treatment must be accompanied by addressing housing needs.

Unfortunately, despite the strong evidence to support that PWUD can adhere to and complete direct-acting antiviral therapy and achieve HCV cure with MOUD, few PWUD are receiving treatment. In most states, HCV treatments are restricted by reimbursements to healthcare providers. For example, 2017 Medicaid restrictions for HCV therapy in many states imposed restrictions based on drug and alcohol use, including abstinence-based restrictions, despite clinical recommendations that recent drug use should not be a contraindication to HCV treatment. Some states also imposed restrictions based on liver damage, with HCV treatment prioritized for individuals with more advanced fibrosis. Having restrictions based on both liver damage and abstinence in place excludes most PWUD from eligibility for HCV therapy. Furthermore, the lack of Medicaid expansion and funding sources to care for persons with OUD and other substance use disorders and HCV also markedly reduces the likelihood of eliminating HCV in this country [26].

To address the intersection of these epidemics, it is essential to mandate federal and state resources to fund programs that integrate OUD and other substance use disorders and infectious disease treatment and prevention evidence-based interventions. This study and other published studies show that combined MOUD for treatment of OUD and HCV treatment leads to HCV cure, and integrated harm reduction services, including continued treatment for substance use disorders and NSEPs, lead to low reinfection rates [26, 29].

Notes

Financial support. This work has been supported by the National Institute on Drug Abuse (grant to S. A. S.) and by an Independent Scientist K02 award (grant number K02DA032322).

Potential conflicts of interest. The author: No reported conflicts of interest. Author have submitted the ICMJE Form for Disclosure of Potential Conflicts of Interest. Conflicts that the editors consider relevant to the content of the manuscript have been disclosed.

References

  • 1. Akiyama MJ, Norton BL, Arnsten JH, Agyemang L, Heo M, Litwin AH. Intensive models of hepatitis C care for people who inject drugs receiving opioid agonist therapy: a randomized controlled trial. Ann Intern Med 2019 Epub ahead of print. doi:10.7326/M18-1715 [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 2. Akiyama MJ, Agyemang L, Arnsten JH, et al. . Rationale, design, and methodology of a trial evaluating three models of care for HCV treatment among injection drug users on opioid agonist therapy. BMC Infect Dis 2018; 18:74. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 3. Akiyama M, Lipsey D, Moonseong H, et al. . Low hepatitis reinfection following direct acting antiviral therapy among people who inject drugs on opioid agonist therapy. Clin Infect Dis 2019. doi:10.1093/cid/ciz693 [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 4. Dore GJ, Altice F, Litwin AH, et al. ; C-EDGE CO-STAR Study Group Elbasvir-grazoprevir to treat hepatitis C virus infection in persons receiving opioid agonist therapy: a randomized trial. Ann Intern Med 2016; 165:625–34. [DOI] [PubMed] [Google Scholar]
  • 5. Grebely J, Bruneau J, Lazarus JV, et al. ; International Network on Hepatitis in Substance Users Research priorities to achieve universal access to hepatitis C prevention, management and direct-acting antiviral treatment among people who inject drugs. Int J Drug Policy 2017; 47:51–60. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 6. Grebely J, Alavi M, Micallef M, et al. ; ETHOS Study Group Treatment for hepatitis C virus infection among people who inject drugs attending opioid substitution treatment and community health clinics: the ETHOS study. Addiction 2016; 111:311–9. [DOI] [PubMed] [Google Scholar]
  • 7. Springer SA, Chen S, Altice FL. Improved HIV and substance abuse treatment outcomes for released HIV-infected prisoners: the impact of buprenorphine treatment. J Urban Health 2010; 87:592–602. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 8. Springer SA, Di Paola A, Azar MM, et al. . Extended-release naltrexone improves viral suppression among incarcerated persons living with HIV with opioid use disorders transitioning to the community: results of a double-blind, placebo-controlled randomized trial. J Acquir Immune Defic Syndr 2018; 78:43–53. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 9. Springer SA, Qiu J, Saber-Tehrani AS, Altice FL. Retention on buprenorphine is associated with high levels of maximal viral suppression among HIV-infected opioid dependent released prisoners. PLoS One 2012; 7:e38335. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 10. Dore GJ, Grebely J, Altice FA, et al. Hepatitis C virus reinfection and injecting risk behavior following elbasvir/grazoprevir treatment in participants on opiate agonist therapy: C-EDGE Co-Star Part B. J Hepatol 2017; 64(suppl 2):S771. [Google Scholar]
  • 11. Grebely J, Dalgard O, Conway B, et al. . SIMPLIFY Study Group Sofosbuvir and velpatasvir for hepatitis C virus infection in people with recent injection drug use (SIMPLIFY): an open-label, single-arm, phase 4, multicentre trial. Lancet Gastroenterol Hepatol 2018; 3:153–61. [DOI] [PubMed] [Google Scholar]
  • 12. Artenie AA, Minoyan N, Jacka B, et al. . Opioid agonist treatment dosage and patient-perceived dosage adequacy, and risk of hepatitis C infection among people who inject drugs. CMAJ 2019; 191:E462–8. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 13. Tsui JI, Evans JL, Lum PJ, Hahn JA, Page K. Association of opioid agonist therapy with lower incidence of hepatitis C virus infection in young adult injection drug users. JAMA Intern Med 2014; 174:1974–81. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 14. Nolan S, Dias Lima V, Fairbairn N, et al. . The impact of methadone maintenance therapy on hepatitis C incidence among illicit drug users. Addiction 2014; 109:2053–9. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 15. Rossi C, Butt ZA, Wong S, et al. . BC Hepatitis Testers Cohort Team Hepatitis C virus reinfection after successful treatment with direct-acting antiviral therapy in a large population-based cohort. J Hepatol 2018; 69:1007–14. [DOI] [PubMed] [Google Scholar]
  • 16. Conrad C, Bradley HM, Broz D, et al. . Centers for Disease Control and Prevention Community outbreak of HIV infection linked to injection drug use of oxymorphone–Indiana, 2015. MMWR Morb Mortal Wkly Rep 2015; 64:443–4. [PMC free article] [PubMed] [Google Scholar]
  • 17. Cranston K, Alpren C, John B, et al. . Notes from the field: HIV diagnoses among persons who inject drugs—Northeastern Massachusetts, 2015-2018. MMWR Morb Mortal Wkly Rep 2019; 68:253–4. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 18. Golden MR, Lechtenberg R, Glick SN, et al. . Outbreak of human immunodeficiency virus infection among heterosexual persons who are living homeless and inject drugs—Seattle, Washington, 2018. MMWR Morb Mortal Wkly Rep 2019; 68:344–9. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 19. Ruhm C. Nonopioid overdose death rates rose almost as fast as those involving opioids, 1999–2016. Health Affairs 2019; 38. doi:10.1377/hlthaff.2018.05522 [DOI] [PubMed] [Google Scholar]
  • 20. Platt L, Minozzi S, Reed J, et al. . Needle and syringe programmes and opioid substitution therapy for preventing HCV transmission among people who inject drugs: findings from a Cochrane review and meta-analysis. Addiction 2018; 113:545–63. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 21. Martin NK, Hickman M, Hutchinson SJ, Goldberg DJ, Vickerman P. Combination interventions to prevent HCV transmission among people who inject drugs: modeling the impact of antiviral treatment, needle and syringe programs, and opiate substitution therapy. Clin Infect Dis 2013; 57(suppl 2):S39–45. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 22. Vickerman P, Martin N, Turner K, Hickman M. Can needle and syringe programmes and opiate substitution therapy achieve substantial reductions in hepatitis C virus prevalence? model projections for different epidemic settings. Addiction 2012; 107:1984–95. [DOI] [PubMed] [Google Scholar]
  • 23. Martin NK, Vickerman P, Grebely J, et al. . Hepatitis C virus treatment for prevention among people who inject drugs: modeling treatment scale-up in the age of direct-acting antivirals. Hepatology 2013; 58:1598–609. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 24. Zelenev A, Li J, Mazhnaya A, Basu S, Altice FL. Hepatitis C virus treatment as prevention in an extended network of people who inject drugs in the USA: a modelling study. Lancet Infect Dis 2018; 18:215–24. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 25. Fraser H, Vellozzi C, Hoerger TJ, et al. . Scaling-up hepatitis C prevention and treatment interventions for achieving elimination in the United States—a rural and urban comparison. Am J Epidemiol 2019 pii:kwz097 Epub ahead of print. doi:10.1093/aje/kwz097 [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 26. National Academies of Sciences, Engineering, and Medicine. Integrating responses at the intersection of opioid use disorder and infectious disease epidemics: proceedings of a workshop. Washington, DC: National Academies of Sciences, Engineering, and Medicine, 2018. [PubMed] [Google Scholar]
  • 27. National Health Care for the Homeless Council. The opioid epidemic & homelessness: an action agenda for the HCH community. Nashville, TN: National Health Care for the Homeless Council, 2018. [Google Scholar]
  • 28. Health Resources and Services Administration. Ryan White HIV/AIDS program service report. Washington, DC: US Department of Health and Human Services,2016. [Google Scholar]
  • 29. Springer SA, Korthuis PT, Del Rio C. Integrating treatment at the intersection of opioid use disorder and infectious disease epidemics in medical settings: a call for action after a National Academies of Sciences, Engineering, and Medicine Workshop. Ann Intern Med 2018; 169:335–6. [DOI] [PMC free article] [PubMed] [Google Scholar]

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