April 11, 2015

Hepatitis C virus reinfection after liver transplant: New chances and new challenges in the era of direct-acting antiviral agents

World J Hepatol. 2015 March 27; 7(3): 532-538.

Published online 2015 March 27. doi: 10.4254/wjh.v7.i3.532.

Copyright© The Author(s) 2015. Published by Baishideng Publishing Group Inc. All rights reserved.

Hepatitis C virus reinfection after liver transplant: New chances and new challenges in the era of direct-acting antiviral agents

Kerstin Herzer and Guido Gerken.

Kerstin Herzer, Guido Gerken, Department of Gastroenterology and Hepatology, University Hospital Essen, 45122 Essen, Germany

Kerstin Herzer, Department of General, Visceral, and Transplantation Surgery, University Hospital Essen, 45122 Essen, Germany

Author contributions: Herzer K wrote the manuscript; Gerken G contributed to the substantial supplementing of the manuscript.

Correspondence to: Kerstin Herzer, MD, Associate Professor, Department of Gastroenterology and Hepatology, University Hospital Essen, Hufeland str. 55, 45122 Essen, Germany. kerstin.herzer@uk-essen.de

Telephone: +49-201-7235147 Fax: +49-201-723 3393

Received August 29, 2014; Revised October 21, 2014; Accepted December 16, 2014;

Abstract

The first interferon-free regimens have been approved for the treatment of patients with chronic hepatitis C virus (HCV). In the liver transplant (LT) setting, these regimens are expected to have an important effect, because graft loss due to HCV recurrence is a serious problem after LT. The response to the hitherto conventional treatment with pegylated interferon and ribavirin is poor. The significantly better response rates achieved with boceprevir-based and telaprevir-based triple therapy have led to better graft and patient survival rates, but severe drug interactions with immunosuppressants limit the feasibility of this therapy for LT patients. With the approval of sofosbuvir in January 2014, of simeprevir in May 2014, and of daclatasvir in August 2014, three antiviral agents are now available and promise to be applicable without relevant adverse effects or negative interactions with immunosuppressants. Thus, 2014 marks the beginning of a new era of treatment options for HCV recurrence after LT. Although safety and efficacy studies of several interferon-free regimens for patients with HCV recurrence after LT have achieved good preliminary results, reports of clinical experiences with LT patients are scarce. The lack of randomized studies, the small number of enrolled and carefully selected patients, and the heterogeneity of these studies make the results questionable. Real-life experiences are eagerly awaited so that clinicians can estimate the usefulness and the pitfalls of these new regimens. Additionally, the high costs of these agents may limit their accessibility for many patients. The aim of this review is to summarize the current experience with and the expectations of the new direct-acting antiviral agents for LT patients.

Keywords: Hepatitis C virus, Liver transplant, Interferon, Sofosbuvir, Simeprevir, Daclatasvir

Core tip: In the liver transplant (LT) setting, graft loss due to hepatitis C virus (HCV) recurrence is a serious problem after LT. The former conventional treatment with pegylated interferon and ribavirin is unsatisfying, due to poor response rates and tolerability. With the first interferon-free regimens that are currently being approved for the treatment of patients with chronic HCV, 2014 marks the beginning of a new era of treatment options for HCV recurrence after LT. This review summarizes the current experience with and the expectations of the new direct-acting antiviral agents in the setting of LT.

LIVER TRANSPLANT IN THE SETTING OF CHRONIC HCV INFECTION

Chronic hepatitis C virus (HCV)-induced end-stage liver disease, with or without hepatocellular carcinoma, is still the leading indication for liver transplant (LT), and reinfection of grafts by HCV is the main cause of allograft loss[1,2]. Most patients experience recurrence of HCV infection after LT, and such recurrence can be associated with substantially accelerated cirrhosis of the graft in as many as 30% of patients[3,4]. A subgroup of patients experience fibrotic cholestatic hepatitis (FCH), a severe and extremely aggressive form of HCV recurrence characterized by rapid progression to graft failure and death. Once cirrhosis develops, the annual risk of hepatic decompensation is approximately 40%, and 10% to 25% of patients will die or require retransplantation within 5 years after the first LT[5]. Unfortunately, the outcome of patients undergoing retransplantation is poor, and most transplant centers are reluctant to offer a second LT for patients with cirrhosis of the graft due to HCV reinfection[6,7].

The shortage of donor organs, in conjunction with the accelerated progression of HCV in LT patients, emphasizes the need for effective clinical strategies aimed at treating or preventing HCV recurrence after transplant. Three approaches have been described, according to the timing of treatment: antiviral therapy before LT, which is appropriate only for patients with compensated cirrhosis; preemptive treatment after LT[8]; and treatment of an established reinfection[9]. Thus, after transplant, HCV patients can be treated either immediately with a preemptive approach or with a recurrence-based approach when liver damage is diagnosed. The advantages of preemptive or early treatment after transplant are low serum HCV-RNA levels and no substantial damage to the graft, as determined by histologic studies[10]. Although these factors are positive predictors of a favorable outcome, this therapeutic approach has been difficult to manage because the combination of pegylated interferon (PegIFN) and ribavirin (RBV) is associated with poor tolerability and reduced efficacy[5]. Therefore, the preferred approach to date has been to delay antiviral treatment until histological evidence establishes a diagnosis of HCV-related chronic hepatitis after transplant.

It has been reported that the presence of substantial portal tract fibrosis or of portal hypertension one year after LT are predictors of a higher risk of clinical decompensation and death; therefore, these characteristics help determine which patients urgently need treatment[11]. For patients with FCH, meaning a severe recurrence of HCV early after transplantation, antiviral therapy would be life-saving; however, previous treatment options were unable to eradicate HCV in most cases, with the deleterious consequences of graft loss and death.

PREVIOUS THERAPEUTIC STRATEGIES

Since the discovery of the HCV in 1989[12], the development of effective therapeutic strategies has been hampered by the unavailability of cell-culture and small-animal models for investigating the virus. During the last decades, therapeutic approaches remained limited to unspecific IFN-based regimens with insufficient efficacy. Early trials of IFN monotherapy achieved sustained virologic response (SVR) in fewer than 10% of cases[13]. The introduction of combination therapy with RBV and IFN and the modification of IFN to PegIFN, which can be administered weekly and is associated with improved pharmacokinetics (PK), resulted in higher SVR rates[14]. The PegIFN and RBV dual combination treatment was the standard of care for all HCV genotypes for about 10 years. For many chronically infected patients, this treatment regimen fails to eradicate HCV and is associated with additional adverse effects, and it is even less efficacious for LT patients. The overall rates of SVR with PegIFN plus RBV are low, ranging from 30% to 40% across various reports[5,15]. These poor virologic response rates were mainly due to a high frequency of treatment discontinuation and also dose reduction which became necessary because of poor tolerance or adverse effects[16]. Moreover, as LT recipients are susceptible to hematologic toxicities, especially anemia, RBV dose reductions and the use of erythropoietin are common. Hematologic toxicity necessitates a dose reduction for nearly 70% of patients and early discontinuation of treatment for nearly 30%[16-18]. Moreover, some reports indicate that antiviral therapy may increase the risk of acute graft rejection[19]. The risk of rejection for LT patients ranges from 5% to 10%[20]. However, the probability of survival for patients with SVR after LT is clearly better than that for patients who do not respond to therapy[21].

In May 2011, the first-generation protease inhibitors (PIs), boceprevir (BOC) and telaprevir (TLV), broke this paradigm. The United States Food and Drug Administration approved these drugs for use in association with PegIFN and RBV[16,22]. Both PIs inhibit the same viral protein (NS3/4A) that is crucial for viral replication, and both are active against GT 1 but not against other HCV genotypes. For the other HCV genotypes, PegIFN plus RBV remained the standard of care. Several studies have evaluated the feasibility of these regimens for several hundred LT patients with HCV recurrence[23-26]. About one-third of the patients received BOC and the majority was treated with TLV. Most patients had advanced-stage fibrosis, and approximately half had received at least one previous course of antiviral treatment. The reports described rapid virologic response rates from 53% to 67%, and SVR rates 12 wk after the end of therapy from 48% to 62%[27,28]. While these results were quite encouraging in terms of efficacy, the administration of direct-acting antiviral agents (DAAs) after LT was associated with serious concerns about tolerability and the risk of severe adverse events[24-26]. Indeed, the bone marrow-suppressive effect of TLV and BCV could amplify the anemia, neutropenia, and thrombocytopenia induced by RBV and PegIFN[29]. In addition, TLV and BCV cause severe dermatologic effects, such as generalized pruritus and anorectal disorders[30].

In addition, drug-drug interactions are a serious obstacle of the new antiviral agents. First-generation PIs (TLV, BCV) are not only processed by but also inhibit the CYP3A4 isoenzyme, which is involved in the metabolism of most drugs, including the calcineurin inhibitors (CNIs) cyclosporin A (CSA) and tacrolimus (TAC). BCV has been shown to cause a 2.7-fold increase in the area under the curve (AUC) of CSA and a 17-fold increase in the AUC of TAC, whereas TLV causes a 4.6-fold increase in the AUC of CSA and a 70-fold increase in the AUC of TAC[31,32]. Considering the narrow therapeutic range of CSA and TAC, dose adjustments are of imminent importance, and these drugs must be very closely monitored when they are combined with PIs[27,28,33].

Although the first-generation PIs achieved a substantial improvement in terms of efficacy, their described disadvantages and the fact that IFN is still necessary limit the patient population for which this treatment strategy is appropriate. For particular groups of patients, IFN-based regimens are contraindicated or not applicable or repeatedly failed. Those patients depend on the development of IFN-free regimens.

In this respect, the recent introduction of second-generation DAAs, including PIs, polymerase inhibitors, and nonstructural protein inhibitors has initiated a new era of HCV treatment.

FUTURE THERAPEUTIC STRATEGIES: NEW DAAS AND IFN-FREE REGIMENS AFTER LT

For decades, HCV has successfully escaped from all efforts to generate more efficient drugs, although research efforts have been intense[34]. Viral replication in vitro or in small-animal models could not be achieved, and functional studies were limited to chimpanzees[35-37], what caused an important drawback to DAA development. The ultimate breakthrough for HCV drug development may be dated to establishment of the HCV replicon system, what was not earlier that 1999[34,38]. HCV subgenomes, which compose the nonstructural proteins NS3-NS5 linked to a selectable marker, can efficiently replicate in vitro. A few years later, a full-length isolate of HCV became available which can produce infectious viral particles in vitro[34,39]. The resulting improvement in the understanding of the viral life cycle opened the doors for the development of the first-generation DAAs. Drug development was further supported by structural biology, which has provided high-resolution images of the structures of the virus, revealing additional crucial drug targets, such as NS3, NS5A, and NS5B. These images have allowed modelling of interactions between specific replication inhibitors and their targets[34,40,41].

With the advent of the NS5B polymerase inhibitor sofosbuvir (SFV)[42], the NS3 PI simeprevir (SMV)[43], and the NS5A replication inhibitor daclatasvir (DCV)[44], three “second-wave” DAAs are now available and promise to be appropriate for LT patients, without severe adverse effects or negative interactions with immunosuppressants.

However, reports of trials of IFN-free DAA combinations in patients after LT are still scarce. The combination of SFV and RBV was the first IFN-free regimen to be tested for treating HCV recurrence in a compassionate use program[45]. Preliminary results of the use of this combination for 24 wk with recurrent HCV hepatitis after LT report a high overall SVR rate of almost 80%. The treatment is not only well tolerated but did also achieve a significant improvement in liver function tests and encephalopathy as well as decompensation[16,46]. Importantly, no clinically significant interactions with common immunosuppressants were observed and no episodes of rejection occurred. Overall, the preliminary analysis of experiences with patients in these programs indicate that a SFV-based regimen can inhibit HCV replication in most patients. This impairement of viral load goes in line with an improvement in clinical parameters and condition in the majority of those patients. However, although these results are already very encouraging, longer follow-up periods and a larger number of patients are needed to assess the impact on disease progression[46]. In addition, SFV and RBV have been successfully used to treat FCH[47,48].

In a phase 2, open-label study, 61 patients who were on the waiting list for liver transplant due to HCV cirrhosis were treated with SFV and RBV for up to 48 wk. At the time of LT, 43 patients had HCV RNA below detection levels and 30 patients (70%) had still a negative viral load 12 wk after LT. The most frequently reported adverse events were fatigue, headache and anemia[49].

To date, only a few reports reflect experiences with the use of other IFN-free regimens other than SFV and RBV for LT patients. Fontana et al reported the first patients who were successfully treated with a combination of DCV and IFN or DCV and SFV for 24 wk combatting a severe HCV recurrence after LT[50,51]. In the meantime, several multicentric clinical trials are ongoing to assess the safety and efficacy of several oral DAA combinations for patients with HCV recurrence: (1) ABT450/ABT267/ABT333/RBV for 24 wk (NCT01782495); (2) SMV/DCV for 24 wk (NCT01938625); (3) SFV/RBV for 24 wk (NCT01779518); and (4) SFV/LDV/RBV for 12 or 24 wk (NCT01938430).

It is expected that the approval of these combinations for the use after LT will dramatically change the management and outcome of LT patients[16]. First summary reports implement suggestions for IFN-free treatment regimens for LT patients[52,53]. However, there remain several challenges and uncertainties for the use of IFN-free regimens to treat patients with very aggressive forms of hepatitis C (such as FCH), which occurs very early after transplantation. The pitfall may be the early setting while patients are still taking high doses of immunosuppressants[16]. Therefore, this period bears the risk of opportunistic infections[54]. Moreover, patients are during that period are often recovering from or being treated for surgical complications.

Indeed, the potential interaction of DAAs with CSA, TAC, and other immunosuppressants is an important issue for LT patients. Fortunately, most anti-HCV therapeutics which currently in phase 3 development have been successfully tested for potential interactions with CSA and TAC, at least in healthy volunteers. Co-administration studies in healthy volunteers found no clinically significant interactions with CSA or TAC[16,51].

Another common feature of LT patients is renal failure. Most patients exhibit a low glomerular filtration rate (GFR) because of previous renal damage that is aggravated by the long-term use of CSA or TAC[55]. In some cases, dose adjustments may be necessary and some compounds like SFV may be excluded from application if the GFR is lower than 30 mL/min.

A further issue that requires particular attention is the usually high viral load in patients who underwent LT, most likely due to the immunosuppression[56]. Exorbitantly high viral loads may well be a prerequisite for the selection of drug-resistant strains that may result in a virologic relapse if the appropriate combination of DAAs is not used. Therefore, after LT, resistance testing may become a necessary tool in the choice of the appropriate antiviral combination for the benefit of treatment efficacy and patient outcome[57].

TREATMENT BEFORE OR AFTER LIVER TRANSPLANT?

Treatment of patients while before liver transplant or while they are awaiting LT, respectively, may have several advantages. From the experiences with successful therapy of Hepatitis B, improvement in liver function may also be awaited for HCV clearance, and LT may become unnecessary in some cases. However, safety data and pharmakokinetics are not available for all compounds when administered to patients with cirrhosis classified as Child-Pugh B or C. Early reports suggest that deterioration of liver function is slightly accelerated after the administration of SFV/DCV to patients with decompensated cirrhosis after LT[58]. These observations suggest that treatment immediately after LT may be the better strategy for decompensated and severely sick patients.

Currently still a problem concerning patients awaiting LT is the uncertainty of treatment duration, because the length of time that a patient must remain on the waiting list cannot be predicted[16]. Though we can anticipate that, in the near future, all patients awaiting LT will receive successful treatment with the opportunity to receive LT after clearance of the virus, given the historical course of HBV.

Concerning treatment of HCV infection after LT, a few issues remain to be solved. Safety data as well as PK analyses are needed for this special patient population, particularly for those patients with advanced graft damage.

As well, drug-drug interaction studies are crucial because of the metabolism of CSA and TAC and a therapeutic range which is considerably narrow. This accounts not only for interactions with immunosuppressants but also with other commonly used drugs. Last but not least, a high barrier to resistance is also relevant for the use of direct-acting antivirals, particularly when high serum levels of HCV-RNA are observed[16].

CONCLUSION

Liver transplant due to HCV is a yet unmet challenge and a public health burden. Current developments predict a fundamental change of this situation: a large patient population for whom IFN-based treatment regiments are contraindicated, will now achieve access to potent antiviral therapies. While the use of novel DAA-based regimens in sufficient time before LT will prevent reinfection of the graft with HCV and avoid the need for retransplantation, the successful treatment of already recurred graft infection and damage in immunosuppressed patients after LT will pave the way to make a retransplant feasible. Most importantly, an early enough treatment of HCV patients on the waiting list will stabilize liver function with the consequence that LT will be dispensable in those individuals and HCV-related end stage liver disease can be expected to disappear from the transplant waiting list in the near future.

However, the efficacy of DAAs applied after LT in terms of SVR cannot yet be quantified, nor has their adverse-event profile been ascertained for patients who have undergone LT. In addition, the potential predictors of SVR have not yet been identified. However, the absence of drug- drug interactions between CNIs and DCV, SMV, and SOF, in combination with the so far reported significantly improved SVR rate achieved with these DAAs, offers a promising perspective. Given the potential clinical benefits, more extensive and reliable clinical data about the effects of these new potent HCV inhibitors on patients with recurrence of HCV infection after LT are urgently needed.

One of the remaining difficulties with these new regimens is the huge increase in treatment costs[42]. Affordability could be the pacemaker to set up strategies for personalization of treatment in areas of the world with economic limitations and also in selected patient populations. Some old but in certain cases sufficiently effective regimens using IFN-based regimens may find a niche in those patients with a history of several failed DAA regiments or who harbor multiple resistance-associated variants. While we experience the dusk of IFNs, these substances might stay advantageous for HCV therapy in consideration of features like absence of viral resistances, comparatively low costs and avoidance of drug-drug interactions in patients who are reliant on various concomitant medications.

Footnotes

Open-Access: This article is an open-access article which was selected by an in-house editor and fully peer-reviewed by external reviewers. It is distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/4.0/

Peer-review started: August 29, 2014

First decision: September 30, 2014

Article in press: December 16, 2014

P- Reviewer: Chiang T, Kapoor S, Li ZF, Narciso-Schiavon JL S- Editor: Tian YL L- Editor: A E- Editor: Wu HL

References

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Janssen Therapeutics Announces Support for Organizations Focused on Improving Care and Treatment for People Who Inject Drugs Living with HIV and/or Hepatitis C

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Latest Program Extends Company's Ongoing Commitment to Supporting Underserved Populations in the United States

TITUSVILLE, N.J., April 1, 2015 /PRNewswire/ -- Janssen Therapeutics, Division of Janssen Products, LP (Janssen), today announced the recipients of funding from a special request for applications (RFA), "Improving Care and Treatment for People Who Inject Drugs Living with HIV and/or Hepatitis C."

Eight United States-based organizations each will receive a one-year charitable contribution to enhance access to healthcare and treatment for people who inject drugs living with HIV and/or hepatitis C.

Injection drug use is at the core of the HIV and hepatitis C epidemics, attributed as the third most frequently reported risk factor for HIV infection1,2,3,4 and the primary cause of hepatitis C in the United States.5 Successful treatment of HIV and hepatitis C among people who inject drugs is important to reduce virus-related complications and the likelihood of transmitting the virus(es) to others.6,7

In response to the significant unmet need among people who inject drugs living with HIV and/or hepatitis C in obtaining access to comprehensive healthcare in the face of multiple barriers, Janssen awarded charitable contributions of up to $40,000 each to recipient organizations in support of community- and peer-based models to improve care and address documented barriers to treatment.

The recipients comprise a diverse range of organizations, including:

"We're committed to helping improve access to care and treatment by addressing significant unmet needs in at-risk populations facing multiple, persistent barriers," said Nefertiti Greene, president, Janssen Therapeutics. "As a leader in infectious diseases, we're honored to support these organizations in their efforts to enhance linkages to treatment and care for this often underserved part of the HIV and hepatitis C communities."

United States-based 501(c)(3) tax-exempt organizations were eligible to submit proposals. Submissions were assessed on their potential to improve access to and retention in care for people who inject drugs, and to link diagnosed patients to medical treatment and supportive care through a multi-disciplinary, partnership-based model.

About Janssen Therapeutics Commitment to Supporting Community Organizations
As part of its overall support of community organizations, Janssen Therapeutics funds endeavors addressing unmet needs for underserved populations in the HIV and hepatitis C communities while providing private sector funding to community-based organizations.

The company periodically issues focused RFAs to address significant unmet care or access needs among underserved populations living with HIV and/or hepatitis C to help stimulate new models of care and services and to enhance organizational capacity. This is the eighth funding initiative since 2008, contributing more than $3.2 million to community-based and national HIV/AIDS and hepatitis C service organizations.

To learn more, visit http://www.janssentherapeutics-grants.com.

About Janssen Therapeutics
At Janssen, we are dedicated to addressing and solving some of the most important unmet medical needs of our time in HIV, hepatitis C and other infectious diseases. Driven by our commitment to patients, we develop innovative products, services and healthcare solutions to help people throughout the world. Headquartered in Titusville, New Jersey, Janssen Therapeutics, Division of Janssen Products, LP, is one of the Janssen Pharmaceutical Companies of Johnson & Johnson. Visit www.JanssenTherapeutics.com for more information and follow us on Twitter at @JanssenUS.

1 National Center for HIV/AIDS, Viral Hepatitis, STD, and TB Prevention, Centers for Disease Control and Prevention. CDC Fact Sheet: HIV and AIDS in America: A Snapshot. 2012.

2 Prejean J, Song R, Hernandez A, Ziebell R, Green T, et al. Estimated HIV Incidence in the United States, 2006–2009. PLoS ONE. 2011;6(8): e17502.doi:10.1371/journal.pone.0017502.

3 Recommendations for prevention and control of hepatitis C virus (HCV) infection and HCV-related chronic disease. Centers for Disease Control and Prevention. MMWR Recomm Rep. 1998;4: 1–39.

4 Centers for Disease Control and Prevention. Monitoring selected national HIV prevention and care objectives by using HIV surveillance data–United States and 6 U.S. dependent areas–2010. HIV Surveillance Supplemental Report. 2012; 17(No. 3, part A). Available at http://www.cdc.gov/hiv/library/reports/surveillance/2010/surveillance_Report_vol_17_no_3.html. Accessed March 31, 2015.

5 Seeff, L.B., 2009. The history of the "natural history" of hepatitis C (1968–2009). Liver Int. 29 (Suppl. 1), 89–99.

6 AASLD/IDSA/IAS-USA. Recommendations for testing, managing, and treating hepatitis C. Available at www.hcvguidelines.org. Accessed March 23, 2105.

7 Panel on Antiretroviral Guidelines for Adults and Adolescents. Guidelines for the use of antiretroviral agents in HIV-1-infected adults and adolescents. Department of Health and Human Services. Available at http://aidsinfo.nih.gov/contentfiles/lvguidelines/adultandadolescentgl.pdf. Accessed March 23, 2015.

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April 10, 2015

Fibroblast Growth Factor-2 Contributes to HCV Reinfection After Liver Transplant

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By Will Boggs MD

April 02, 2015

NEW YORK (Reuters Health) - Fibroblast growth factor-2 (FGF-2) and other non-interferon mediators contribute to hepatitis C virus (HCV) reinfection after liver transplantation, researchers from Germany report.

"We have identified FGF-2 and the signaling cascade triggered by it as an unexpected novel driver of HCV replication," Dr. Sandra Ciesek from Medizinische Hochschule Hannover told Reuters Health by email. "Hence, it is important to be aware that modulation of host signaling cascades (e.g., certain novel anti-cancer drugs, such as brivanib, that block FGF signaling) may have unexpected effects on viral replication."

While orthotopic liver transplantation is the only treatment for end-stage liver disease due to HCV infection, it is not a cure, and nearly all patients develop graft reinfection.

Dr. Ciesek and colleagues set out to determine how the inflammatory response that occurs in the peritransplantation period modulates the HCV replication cycle and whether it contributes to the poor outcome of HCV-positive individuals after liver transplant.

All 13 transplant recipients (three of whom had HCV) showed marked rises in C-reactive protein levels between pre-transplant and post-transplant sera, but there was heterogeneity in the changes of serum chemokines and no apparent association with the etiology of liver disease.

Among 27 non-interferon inflammatory mediators examined by the researchers, FGF-2 alone enhanced HCV RNA replication and release of infectious particles, they report in Gut, online March 23.

In contrast, FGF-1, a close relative of FGF-2, did not enhance HCV RNA replication.

The effects of FGF-2 appeared to be mediated by signaling through FGF receptor 3 (FGFR3).

In 70 individuals with chronic HCV infection, serum FGF-2 levels were significantly higher in those with high viral load than in those with low viral load.

The investigators are now studying which exact downstream events triggered by FGF-2 and FGFR3 are required for HCV replication.

"Right now there is an enormous opportunity to prevent the majority of post-transplant HCV reinfection events by using direct antiviral agent combinations that have reached the market during the past 15 months," Dr. Ciesek said. "We do not anticipate that modulation of the host serum milieu (or FGF2 signaling) will play a major role here."

"There remains a minority of patients -- those with very advanced liver disease and concomitant renal failure -- that cannot be treated with the currently available regimens," she added. "Thus, new approaches may be needed for this subgroup of patients. It is conceivable that modulation of host factors or host signaling pathways might play a role here."

SOURCE: http://bit.ly/1GgGAwe

Gut 2015.

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Efficacy and safety of 12 weeks versus 18 weeks of treatment with grazoprevir (MK-5172) and elbasvir (MK-8742) with or without ribavirin for hepatitis C virus genotype 1 infection in previously untreated patients with cirrhosis and patients with previous null response with or without cirrhosis (C-WORTHY): a randomised, open-label phase 2 trial

Lancet. 2015 Mar 21;385(9973):1075-86. doi: 10.1016/S0140-6736(14)61795-5. Epub 2014 Nov 11.

Lawitz E1, Gane E2, Pearlman B3, Tam E4, Ghesquiere W5, Guyader D6, Alric L7, Bronowicki JP8, Lester L9, Sievert W10, Ghalib R11, Balart L12, Sund F13, Lagging M14, Dutko F15, Shaughnessy M15, Hwang P15, Howe AY15, Wahl J15, Robertson M15, Barr E15, Haber B15.

Erratum in Lancet. 2015 Mar 21;385(9973):1074.

Abstract

BACKGROUND: There is a high medical need for an interferon-free, all-oral, short-duration therapy for hepatitis C virus (HCV) that is highly effective across diverse patient populations, including patients with cirrhosis or previous null response to pegylated interferon (peginterferon) plus ribavirin (PR-null responders). We aimed to assess the efficacy, safety, and effective treatment duration of grazoprevir (an HCV NS3/4A protease inhibitor) combined with elbasvir (an HCV NS5A inhibitor) with or without ribavirin in patients with HCV genotype 1 infection with baseline characteristics of poor response.

METHODS: The C-WORTHY trial is a randomised, open-label phase 2 trial of grazoprevir plus elbasvir with or without ribavirin; here we report findings for two cohorts of previously untreated patients with cirrhosis (cohort 1) and those with previous PR-null response with or without cirrhosis (cohort 2) enrolled in part B of the study. Eligible patients were adults aged 18 years or older with chronic HCV genotype 1 infection and HCV RNA concentrations of 10 000 IU/mL or higher in peripheral blood. We randomly assigned patients to receive grazoprevir (100 mg daily) and elbasvir (50 mg daily) with or without ribavirin for 12 or 18 weeks. Randomisation was done centrally with an interactive voice response system; patients and study investigators were masked to treatment duration up to week 12 but not to treatment allocation. The primary endpoint was the proportion of patients achieving HCV RNA less than 25 IU/mL at 12 weeks after end of treatment (SVR12), assessed by COBAS TaqMan version 2.0. This study is registered with ClinicalTrials.gov, number NCT01717326.

FINDINGS: We describe findings for 253 patients enrolled in cohort 1 (n=123) or cohort 2 (n=130). In cohort 1, we randomly assigned 60 patients to the 12-week regimen (31 with ribavirin and 29 with no ribavirin) and 63 to the 18-week regimen (32 with ribavirin and 31 with no ribavirin); in cohort 2, we randomly assigned 65 patients to the 12-week regimen (32 with ribavirin and 33 with no ribavirin) and 65 to the 18-week regimen (33 with ribavirin and 32 with no ribavirin. High SVR12 rates were achieved irrespective of the use of ribavirin or extension of the treatment duration from 12 to 18 weeks; SVR12 rates ranged from 90% (95% CI 74-98; 28/31; cohort 1, 12 weeks, ribavirin-containing) to 100% (95% CI 89-100; 33/33; cohort 2, 18 weeks, ribavirin-containing). Among patients treated for 12 weeks with grazoprevir plus elbasvir without ribavirin, 97% (95% CI 82-100, 28/29) of patients in cohort 1 and 91% (76-98, 30/33) of patients in cohort 2 achieved SVR12. Adverse events reported in more than 10% of patients were fatigue (66 patients, 26% [95% CI 21-32]), headache (58 patients, 23% [95% CI 18-29]), and asthenia (35 patients, 14% [95% CI 10-19]).

INTERPRETATION: Treatment with grazoprevir plus elbasvir, both with and without ribavirin and for both 12 and 18 weeks' treatment duration, showed high rates of efficacy in previously untreated patients with cirrhosis and previous PR-null responders with and without cirrhosis. These results support the phase 3 development of grazoprevir plus elbasvir.

FUNDING:

Merck & Co, Inc.

Copyright © 2015 Elsevier Ltd. All rights reserved.

PMID: 25467591 [PubMed - indexed for MEDLINE]

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All-oral 12-week treatment with daclatasvir plus sofosbuvir in patients with hepatitis C virus genotype 3 infection: ALLY-3 phase III study

Hepatology. 2015 Apr;61(4):1127-35. doi: 10.1002/hep.27726. Epub 2015 Mar 10

Nelson DR1, Cooper JN, Lalezari JP, Lawitz E, Pockros PJ, Gitlin N, Freilich BF, Younes ZH, Harlan W, Ghalib R, Oguchi G, Thuluvath PJ, Ortiz-Lasanta G, Rabinovitz M, Bernstein D, Bennett M, Hawkins T, Ravendhran N, Sheikh AM, Varunok P, Kowdley KV, Hennicken D, McPhee F, Rana K, Hughes EA; ALLY-3 Study Team.

Author information

1University of Florida, Gainesville, FL.

Abstract

Treatment options for patients with hepatitis C virus (HCV) genotype 3 infection are limited, with the currently approved all-oral regimens requiring 24-week treatment and the addition of ribavirin (RBV). This phase III study (ALLY-3; ClinicalTrials.gov: NCT02032901) evaluated the 12-week regimen of daclatasvir (DCV; pangenotypic nonstructural protein [NS]5A inhibitor) plus sofosbuvir (SOF; pangenotypic NS5B inhibitor) in patients infected with genotype 3. Patients were either treatment naïve (n = 101) or treatment experienced (n = 51) and received DCV 60 mg plus SOF 400 mg once-daily for 12 weeks. Coprimary endpoints were the proportions of treatment-naïve and treatment-experienced patients achieving a sustained virological response (SVR) at post-treatment week 12 (SVR12). SVR12 rates were 90% (91 of 101) and 86% (44 of 51) in treatment-naïve and treatment-experienced patients, respectively; no virological breakthrough was observed, and ≥99% of patients had a virological response (VR) at the end of treatment. SVR12 rates were higher in patients without cirrhosis (96%; 105 of 109) than in those with cirrhosis (63%; 20 of 32). Five of seven patients who previously failed treatment with an SOF-containing regimen and 2 of 2 who previously failed treatment with an alisporivir-containing regimen achieved SVR12. Baseline characteristics, including gender, age, HCV-RNA levels, and interleukin-28B genotype, did not impact virological outcome. DCV plus SOF was well tolerated; there were no adverse events (AEs) leading to discontinuation and only 1 serious AE on-treatment, which was unrelated to study medications. The few treatment-emergent grade 3/4 laboratory abnormalities that were observed were transient.

CONCLUSION: A 12-week regimen of DCV plus SOF achieved SVR12 in 96% of patients with genotype 3 infection without cirrhosis and was well tolerated. Additional evaluation to optimize efficacy in genotype 3-infected patients with cirrhosis is underway. (Hepatology 2015;61:1127-1135).

© 2015 The Authors. Hepatology published by Wiley Periodicals, Inc., on behalf of the American Association for the Study of Liver Diseases.

PMID: 25614962 [PubMed - in process]

Source

April 9, 2015

Repurposing of the antihistamine chlorcyclizine and related compounds for treatment of hepatitis C virus infection

Sci Transl Med 8 April 2015:
Vol. 7, Issue 282, p. 282ra49
Sci. Transl. Med. DOI: 10.1126/scitranslmed.3010286

Research Article

DRUG DISCOVERY

Shanshan He1, Billy Lin1, Virginia Chu1, Zongyi Hu1, Xin Hu2, Jingbo Xiao2, Amy Q. Wang2, Cameron J. Schweitzer1, Qisheng Li1, Michio Imamura3, Nobuhiko Hiraga3, Noel Southall2, Marc Ferrer2, Wei Zheng2, Kazuaki Chayama3, Juan J. Marugan2 and T. Jake Liang1,*

+ Author Affiliations

  1. 1Liver Diseases Branch, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
  2. 2National Center for Advancing Translational Sciences, National Institutes of Health, Rockville, MD 20850, USA.
  3. 3Department of Medicine and Molecular Sciences, Graduate School of Biomedical Sciences, Hiroshima University, Hiroshima 730-0053, Japan.
  1. *Corresponding author. E-mail: jliang@nih.gov

Abstract

Hepatitis C virus (HCV) infection affects an estimated 185 million people worldwide, with chronic infection often leading to liver cirrhosis and hepatocellular carcinoma. Although HCV is curable, there is an unmet need for the development of effective and affordable treatment options. Through a cell-based high-throughput screen, we identified chlorcyclizine HCl (CCZ), an over-the-counter drug for allergy symptoms, as a potent inhibitor of HCV infection. CCZ inhibited HCV infection in human hepatoma cells and primary human hepatocytes. The mode of action of CCZ is mediated by inhibiting an early stage of HCV infection, probably targeting viral entry into host cells. The in vitro antiviral effect of CCZ was synergistic with other anti-HCV drugs, including ribavirin, interferon-α, telaprevir, boceprevir, sofosbuvir, daclatasvir, and cyclosporin A, without significant cytotoxicity, suggesting its potential in combination therapy of hepatitis C. In the mouse pharmacokinetic model, CCZ showed preferential liver distribution. In chimeric mice engrafted with primary human hepatocytes, CCZ significantly inhibited infection of HCV genotypes 1b and 2a, without evidence of emergence of drug resistance, during 4 and 6 weeks of treatment, respectively. With its established clinical safety profile as an allergy medication, affordability, and a simple chemical structure for optimization, CCZ represents a promising candidate for drug repurposing and further development as an effective and accessible agent for treatment of HCV infection.

  • Copyright © 2015, American Association for the Advancement of Science

Citation: S. He, B. Lin, V. Chu, Z. Hu, X. Hu, J. Xiao, A. Q. Wang, C. J. Schweitzer, Q. Li, M. Imamura, N. Hiraga, N. Southall, M. Ferrer, W. Zheng, K. Chayama, J. J. Marugan, T. J. Liang, Repurposing of the antihistamine chlorcyclizine and related compounds for treatment of hepatitis C virus infection. Sci. Transl. Med. 7, 282ra49 (2015).

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Janssen Highlights Hepatitis C Virus Development Programme at The International Liver Congress™ 2015 of the European Association for the Study of the Liver (EASL)

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Presentations include late-breaking final results from the Phase 3 OPTIMIST trials and interim results from the Phase 2 IMPACT trial of simeprevir

FOR IMMEDIATE RELEASE

FOR MEDICAL AND TRADE MEDIA ONLY

April 09, 2015 04:00 AM Eastern Daylight Time

CORK, Ireland--(BUSINESS WIRE)--Janssen Sciences Ireland UC, one of the Janssen Pharmaceutical Companies of Johnson & Johnson (Janssen), today announced that clinical data for simeprevir, its NS3/4A protease inhibitor for the treatment of hepatitis C virus (HCV) infection, will be presented at The International Liver Congress™ 2015 of the European Association for the Study of the Liver (EASL) taking place in Vienna from April 22-26. Early-stage data on the investigational nucleotide analog polymerase inhibitors AL-335 and AL-516, which were recently obtained through Janssen’s acquisition of Alios BioPharma, will also be presented.

“We are delighted to present additional data for simeprevir in combination with other currently available therapeutic options alongside early-stage data for our nucleotide portfolio.”

Several key presentations will report on the efficacy and tolerability of simeprevir in interferon-free combination regimens in Phase 2, Phase 3 and real-world clinical settings.

“Hepatitis C remains a serious health problem. The breadth of data we are presenting at The International Liver Congress™ reinforces our commitment to reducing the significant burden of this infectious disease around the world,” said Gaston Picchio, hepatitis disease area leader, Janssen. “Janssen has an extensive and ongoing clinical trial programme for hepatitis C, including confirmatory and new exploratory studies, and we look forward to sharing these results. We remain focused on investigating alternative and more immediate treatment options for patients with a high unmet need.”

A total of 14 company-sponsored abstracts supporting Janssen’s marketed and investigational therapies for HCV will be presented, including three abstracts on simeprevir accepted as late-breaking presentations. The scope and rigor of these data underscore Janssen’s commitment to being a positive catalyst in the fight against this serious public health threat.

“These data highlight the strength of our commitment to advancing research in the area of viral hepatitis,” said Lawrence M. Blatt, Ph.D., global head therapeutics, Janssen Infectious Diseases and Vaccines, and president and chief executive officer of Alios BioPharma. “We are delighted to present additional data for simeprevir in combination with other currently available therapeutic options alongside early-stage data for our nucleotide portfolio.”

Studies on Janssen’s HCV portfolio to be presented at The International Liver Congress™ 2015 include:

Late-Breaking Poster Presentations

All posters will be displayed electronically from Thursday 23 April, 07:30 to Saturday 25 April, 20:00 in Hall B.

  • A Phase 3, randomised, open-label study to evaluate the efficacy and safety of 12 and 8 weeks of simeprevir (SMV) plus sofosbuvir (SOF) in treatment-naïve and -experienced patients with chronic HCV genotype 1 infection without cirrhosis: The OPTIMIST-1 study1
    • Abstract LP14
    • Lead Author: P. Kwo; Division of Gastroenterology and Hepatology, Department of Medicine, Indiana University, Indianapolis, IN, USA
  • A Phase 3, open-label, single-arm study to evaluate the efficacy and safety of 12 weeks of simeprevir (SMV) plus sofosbuvir (SOF) in treatment-naïve or -experienced patients with chronic HCV genotype 1 infection and cirrhosis: The OPTIMIST-2 study2
    • Abstract LP04
    • Lead Author: E. Lawitz; Texas Liver Institute, University of Texas Health Science Center, San Antonio, TX, USA
  • Simeprevir (SMV) plus daclatasvir (DCV) and sofosbuvir (SOF) in treatment-naïve and -experienced patients with chronic hepatitis C virus genotype 1 or 4 infection and decompensated liver disease: Interim results from the Phase 2 IMPACT study1
    • Abstract LP07
    • Lead Author: E. Lawitz; Texas Liver Institute, University of Texas Health Science Center, San Antonio, TX, USA

Oral Presentation

  • On-treatment virologic response and tolerability of simeprevir, daclatasvir and ribavirin in patients with recurrent hepatitis C virus genotype 1b infection after orthotopic liver transplantation (OLT): Interim data from the Phase 2 SATURN Study1
    • Abstract 0004: Thursday 23 April, 16:45 – 17:00, Hall D
    • Lead Author: X. Forns; Liver Unit, Hospital Clinic, Barcelona, Spain

Poster Presentations

All posters will be displayed electronically from Thursday 23 April, 07:30 to Saturday 25 April, 20:00 in Hall B.

  • Significant drug-drug interaction between simeprevir and cyclosporine A but not tacrolimus in patients with recurrent chronic HCV infection after orthotopic liver transplantation: The SATURN study1
    • Abstract P0834
    • Lead Author: S. Ouwerkerk-Mahadevan; Janssen Research & Development, Beerse, Belgium
  • Deep sequencing analyses in HCV genotype 1-infected patients treated with simeprevir plus sofosbuvir with/without ribavirin in the COSMOS study6
    • Abstract P0780
    • Lead Author: B. Fevery; Janssen Infectious Diseases BVBA, Beerse, Belgium
  • Effectiveness of simeprevir (SMV)-containing regimens among patients with chronic hepatitis C virus (HCV) in various U.S. practice settings: Interim analysis of the SONET study7
    • Abstract P0826
    • Lead Author: I. Alam; Austin Hepatitis Center, Austin, TX, USA
  • Study protocol for a partly randomised, open-label Phase 2a trial of once-daily simeprevir combined with sofosbuvir for the treatment of HCV genotype 4-infected patients with or without cirrhosis (OSIRIS)8
    • Abstract P1346
    • Lead Author: M. El Raziky, Departments of Pediatrics, Cairo University, Cairo, Egypt
  • Baseline factors associated with increased SVR rates in 123 treatment-naïve chronic HCV genotype 1 patients treated with a shortened 12-week simeprevir plus pegylated interferon and ribavirin regimen: A multivariate analysis9
    • Abstract P0792
    • Lead Author: T. Asselah, Beaujon Hospital, University of Paris, France
  • Clinical characteristics and outcomes of chronic hepatitis C (CHC) patients treated with newer direct-acting antiviral (DAA)-based regimens from a large U.S. payer perspective10
    • Abstract P0852
    • Lead Author: N. Tandon; Janssen Scientific Affairs, LLC, Titusville, NJ, USA
  • A descriptive analysis of a real-world population with chronic hepatitis C (CHC) treated with simeprevir (SMV)-and/or sofosbuvir (SOF)-based regimens: Findings from a U.S. payer database11
    • Abstract P0827
    • Lead Author: J.B. Forlenza; Janssen Scientific Affairs, LLC, Titusville, NJ, USA
  • Real world effectiveness and cost of simeprevir- and/or sofosbuvir-based HCV treatments: $175,000 per SVR1212
    • Abstract P0881
    • Lead Author: K. Bichoupan; Division of Liver Diseases, Icahn School of Medicine at the Mount Sinai Medical Center, New York, NY, USA

Alios BioPharma Poster Presentations

  • Derisking the potential for mitochondrial toxicity of nucleoside analogs13
    • Abstract P0679
    • Lead author: Z. Jin; Alios BioPharma, San Francisco, CA, USA
  • Preclinical characterization of AL-335, a potent uridine based nucleoside polymerase inhibitor for the treatment of chronic hepatitis C14
    • Abstract P0682
    • Lead Author: H. Tan; Alios BioPharma, San Francisco, CA, USA

Full session details and data presentation listings for The International Liver Congress™ 2015 can be found at http://www.ilc-congress.eu.

About Hepatitis C

Hepatitis C, a blood-borne infectious disease of the liver and a leading cause of chronic liver disease, is a major global public health concern. Approximately 170 million people are infected with hepatitis C worldwide15 and 350,000 people per year die from the disease globally16 with 86,000 deaths in the European region each year.17 When left untreated, hepatitis C can cause significant damage to the liver, including cirrhosis. Additionally, hepatitis C may increase the risk of developing complications from cirrhosis, which may include liver failure.18

About Janssen’s HCV Development Programme

The goal of the Janssen HCV clinical development programme is to provide physicians with multiple treatment options in order to offer patients the best possible chance at successful therapy.

Ongoing studies focus on the investigation of the NS3/4A protease inhibitor simeprevir in a number of different treatment combinations and HCV patient populations, including those who are difficult to cure.

Janssen’s HCV pipeline also includes JNJ-56914845, an investigational NS5A replication complex inhibitor currently in Phase 2 studies, and following the acquisition of Alios BioPharma by Johnson & Johnson in November 2014, AL-335, a uridine based nucleotide analog in Phase 1 development, and AL-516, a guanosine based nucleotide analog NS5B polymerase inhibitor in pre-clinical development.

These compounds are being developed with the express intent of targeting critical steps of the hepatitis C virus replication cycle.

About Simeprevir (OLYSIO®)

Simeprevir is an NS3/4A protease inhibitor which has been developed by Janssen Sciences Ireland UC in collaboration with Medivir AB.

In November 2013, simeprevir was approved by the U.S. Food & Drug Administration and, in May 2014, it was granted marketing authorisation by the European Commission. Subsequent marketing authorisations have followed in several other countries around the world. Indications vary by market.

Janssen is responsible for the global clinical development of simeprevir and has exclusive,worldwide marketing rights, except in the Nordic countries. Medivir AB retains marketing rights for simeprevir in these countries under the marketing authorisation held by Janssen-Cilag International NV.

About Janssen Pharmaceutical Companies of Johnson & Johnson

At Janssen, we are dedicated to addressing and solving some of the most important unmet medical needs of our time in oncology, immunology, neuroscience, infectious diseases and vaccines, and cardiovascular and metabolic diseases. Driven by our commitment to patients, we develop innovative products, services and healthcare solutions to help people throughout the world. Janssen R&D Ireland is part of the Janssen Pharmaceutical Companies of Johnson & Johnson. Please visit http://www.janssenrnd.com for more information.

# # #

This press release contains "forward-looking statements" as defined in the Private Securities Litigation Reform Act of 1995 regarding product development. The reader is cautioned not to rely on these forward-looking statements. These statements are based on current expectations of future events. If underlying assumptions prove inaccurate or known or unknown risks or uncertainties materialize, actual results could vary materially from the expectations and projections of Janssen R&D Ireland and/or Johnson & Johnson. Risks and uncertainties include, but are not limited to: challenges and uncertainties inherent in new product development, including the uncertainty of clinical success and of obtaining regulatory approvals; competition, including technological advances, new products and patents attained by competitors; challenges to patents; changes to applicable laws and regulations, including global health care reforms; and trends toward health care cost containment. A further list and description of these risks, uncertainties and other factors can be found in Johnson & Johnson's Annual Report on Form 10-K for the fiscal year ended December 28, 2014, including in Exhibit 99 thereto, and the company's subsequent filings with the Securities and Exchange Commission. Copies of these filings are available online at www.sec.gov, www.jnj.com or on request from Johnson & Johnson. None of the Janssen Pharmaceutical Companies or Johnson & Johnson undertakes to update any forward-looking statement as a result of new information or future events or developments.

References

1 P Kwo et al. The OPTIMIST-1 study, abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

2 Lawitz M et al. The OPTIMIST-2 study, abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

3 Lawitz M et al. The IMPACT study, abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

4 Forns X et al. The SATURN study, abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

5 Ouwerkerk-Mahadevan, S et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

6 Fevery, B et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

7 Alam, I et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

8 El Raziky, M et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

9 Asselah, T et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

10 Tandon, M et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

11 Forlenza, J.B. et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

12 Bichoupan, K et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

13 Jin, Z et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

14 Tan, H et al. Abstract presented at the European Associate for the Study of the Liver (EASL) 2015.

15 World Health Organisation, Hepatitis C. Available at: http://www.who.int/csr/disease/hepatitis/Hepc.pdf Last accessed April 2015.

16 World Health Organisation. Hepatitis C. Fact sheet N. 164. Available at: http://www.who.int/mediacentre/factsheets/fs164/en/. Last accessed April 2015.

17 Muhlberger M et al. HCV-related burden of disease in Europe: a systematic assessment of incidence, prevalence, morbidity, and mortality. BMC Public Health 2009;9:34.

April 2015
PHGB/HEP/

Contacts

Janssen
Media Contact: Ronan Collins
Mobile: +47 (0) 488 425 00
or
Media Contact: Hans Vanavermaete
Mobile: +32 (0) 478 44 72 78
or
Investor Contact: Lesley Fishman
Office: +1 (732) 524 2524
or
Investor Contact: Louise Mehrotra
Office: +1 (732) 524-6491

Source

AbbVie to Present New Data from Hepatitis C Clinical Development Program at The International Liver Congress™ 2015

logo_abbvie

- 29 abstracts, including sub-analyses of AbbVie's approved treatment of VIEKIRAX® + EXVIERA®, as well as new data from Phase 3b development program and AbbVie's HCV pipeline compounds

Apr 8, 2015

NORTH CHICAGO, Ill., April 8, 2015 /PRNewswire/ -- AbbVie (NYSE: ABBV) today announced that 29 abstracts from its ongoing hepatitis C clinical development program have been accepted for presentation during The International Liver CongressTM (ILC) 2015 in Vienna, Austria from April 22-26. Data being presented include sub-analyses of the recently approved VIEKIRAX® (ombitasvir/paritaprevir/ritonavir tablets) + EXVIERA® (dasabuvir tablets), Phase 3b studies, including a head-to-head comparison of AbbVie's three direct-acting antiviral treatment with telaprevir-based therapy and Phase 2/3 studies investigating AbbVie's combination treatment in genotype 1 (GT1) and genotype 4 (GT4). Additionally, data from Phase 1 studies of ABT-493 and ABT-530 will be presented.

"We are pleased to present new investigational data at ILC that reinforces our broad HCV clinical development program beyond the approval of VIEKIRAX + EXVIERA," said Michael Severino, M.D., executive vice president, research and development and chief scientific officer, AbbVie. "We are studying the diverse populations seen in clinical practice and expanding our research and development, including our new HCV pipeline compounds."

AbbVie's ongoing HCV pipeline development program focuses on investigating a pan-genotypic, ribavirin (RBV)-free, once-daily treatment that may also allow for treatment durations of as little as eight weeks. Preliminary results from a Phase 2b study (n=79) of ABT-493 and ABT-530 in non-cirrhotic GT1 patients receiving the RBV-free recommended regimen for 12 weeks demonstrated a sustained virologic response rate at four weeks post treatment (SVR4) of 99 percent (n=78/79). These results, announced for the first time today, included both GT1a and GT1b, treatment-naïve and pegylated-interferon and RBV prior null responders. Patients across both study arms were randomized to receive ABT-493 (200mg) and either 120mg or 40mg of ABT-530. To date, the most common (>5 percent) adverse reactions were fatigue, headache, nausea, diarrhea and anxiety. Data from these Phase 2b studies of ABT-493 and ABT-530 will not be presented at ILC 2015, and will be released at future medical congresses.

Abstracts for AbbVie's HCV Pipeline Compounds:

  • Pharmacokinetics of ABT-493 and ABT-530 is Similar in Healthy Caucasian, Chinese and Japanese Adult Subjects; Wang, T; ePoster # P0855
  • Steady-state Pharmacokinetics and Safety of Co-administration of Pan-genotypic, Direct Acting Protease Inhibitor, ABT-493 with Pan-genotypic NS5A Inhibitor, ABT-530, in Healthy Adult Subjects; Lin, C; ePoster # P0715

Abstracts for Approved VIEKIRAX and EXVIERA:

  • Long-Term Follow-up of Treatment-emergent Resistance-associated Variants in NS3, NS5A and NS5B with Paritaprevir/r-, Ombitasvir- and Dasabuvir-based Regimens; Krishnan, P; Oral Presentation, Viral Hepatitis C: Clinical Session, Friday, April 24 at 4:15pm–4:30pm CEST; # O057
  • Implications of Baseline HCV RNA Level and Intrapatient Viral Load Variability on OBV/PTV/R + DSV 12-Weeks Treatment Outcomes; Brown, R; ePoster # LP39
  • High SVR Rates Despite Multiple Negative Predictors in Genotype 1 Patients Receiving Ombitasvir/Paritaprevir/R, Dasabuvir with or without Ribavirin for 12 and 24 Weeks: Integrated Analysis of Six Phase 3 Trials; Bernstein, D; ePoster # P0781
  • Pharmacokinetics of Paritaprevir, Ombitasvir, Ritonavir and Ribavirin in Subjects with HCV Genotype 4 Infection; Eckert, D; ePoster # P0823
  • Improvement in Liver Function and Non-Invasive Estimates of Liver Fibrosis 48 Weeks After Treatment with Ombitasvir/Paritaprevir/R, Dasabuvir and Ribavirin in HCV Genotype 1 Patients with Cirrhosis; Wedemeyer, H; ePoster # P0808
  • Pharmacokinetics of Paritaprevir, Ombitasvir, Dasabuvir, Ritonavir and Ribavirin in Subjects with HCV Genotype 1 Infection in Phase 3 Studies; Mensing, S; Khatri, A; ePoster # P0820
  • Exposure-Response Analyses for Efficacy (SVR12) for the Direct Acting Antiviral Regimen of ABT-450/R, Ombitasvir with Dasabuvir ± Ribavirin in Subjects with HCV Genotype 1 Infection; Khatri, A; ePoster # P0902
  • Adherence to Ombitasvir/Paritaprevir/R, Dasabuvir, and Ribavirin is >98% in the SAPPHIRE-I and SAPPHIRE-II Trials; Hassanein, T; ePoster # P0908

Abstracts for Phase 3b Program:

  • Safety of Ombitasvir/Paritaprevir/Ritonavir Plus Dasabuvir for Treating HCV GT1 Infection in Patients with Severe Renal Impairment or End-stage Renal Disease: The RUBY-I Study; Pockros, P; Oral Presentation, Late Breakers Session, Saturday, April 25 at 4:00pm–4:15pm CEST
  • MALACHITE-I: Phase 3b Trial of Ombitasvir/Paritaprevir/R and Dasabuvir+/-Ribavirin or Telaprevir + Peginterferon/Ribavirin in Treatment-Naïve Adults with HCV Genotype 1; Conway, B; ePoster # P0842
  • MALACHITE-II: Phase 3b Trial of Ombitasvir/Paritaprevir/R and Dasabuvir + Ribavirin or Telaprevir + Peginterferon/Ribavirin in Peginterferon/Ribavirin Treatment-Experienced Adults with HCV Genotype 1; Dore, G; ePoster # P0847
  • Phase 3b Studies to Assess Long-term Clinical Outcomes in HCV GT1-Infected Patients Treated with Ombitasvir/Paritaprevir/Ritonavir and Dasabuvir with or without Ribavirin; Dumas, E; ePoster # P1331

Abstracts for AbbVie's HCV Investigational Treatment:

  • Ombitasvir/Paritaprevir/Ritonavir for Treatment of HCV Genotype 1b in Japanese Patients with or without Cirrhosis: Results from GIFT-I; Sato, K; Rodrigues-Jr, L; Oral Presentation, General Session 3 & Award Ceremony 2: Saturday, April 25 at 8:30am–8:45am CEST; # G13
  • A Randomized, Open-label Study to Evaluate Efficacy and Safety of Ombitasvir/Paritaprevir/Ritonavir Co-administered with Ribavirin in Adults with Genotype 4 Chronic Hepatitis C Infection and Cirrhosis; Asselah, T; ePoster # P1345
  • An Open-label Study to Evaluate the Efficacy and Safety of Co-formulated Ombitasvir/Paritaprevir/Ritonavir with Ribavirin in Adults with Chronic HCV Genotype 4 Infection in Egypt; Doss, W; ePoster # P1351
  • No Significant Interaction Among Ombitasvir/Paritaprevir/Ritonavir ± Dasabuvir and Sofosbuvir; King, J; ePoster # P0905

Abstracts for Health Economics and Outcomes Research (HEOR) and Other AbbVie Data:

  • The Public Health Value of Sparing Livers for Transplantation Through Systematic Treatment of Hepatitis C; Stevens, W; Juday, T; ePoster # P0025
  • Healthcare Costs by Stage of Liver Disease in Chronic Hepatitis C Patients in the United States; Walker, D; ePoster # P0719
  • The Value of Survival Benefits from Treating Hepatitis C at Different Fibrosis Stages with All-oral, Interferon-free Therapy Relative to 'Watchful Waiting'; Gonzalez, Y; ePoster # P0806
  • Cost-effectiveness of Treating Different Stages of Genotype 1 Hepatitis C Virus (HCV) with AbbVie 3D (ABT-450/Ritonavir/Ombitasvir and Dasabuvir) +/- Ribavirin Compared to No Treatment in the United States; Samp, J; ePoster # P0815
  • Reduction in Annual Medical Costs with Early Treatment of HCV Using AbbVie 3D (ABT-450/Ritonavir/Ombitasvir and Dasabuvir) +/- Ribavirin in the United States; Samp, J; ePoster # P0816
  • Percent of Subjects Experiencing Liver Morbidity Over A Lifetime Horizon with AbbVie 3D (ABT-450/Ritonavir/Ombitasvir And Dasabuvir) Versus No Treatment; Samp, J; ePoster # P0850
  • Public Health Impact of HCV Screening and Treatment in the French Baby-boomer Population; Ethgen, O; ePoster # P1245
  • Impact of Pill Count on Medication Adherence During the First 12 Weeks of HIV Antiviral Treatment: Implications for HCV Treatment; Walker, D; ePoster # P0741
  • The Impact of Ribavirin on Real World Adherence and Discontinuation Rates in HCV Patients Treated with Sofosbuvir + Simeprevir; Walker, D; Juday, T; ePoster # P0864    
  • Ombitasvir/Paritaprevir /Ritonavir and Dasabuvir with Ribavirin (RBV) has Minimal Impact on Health-Related Quality of Life (HRQoL) Compared with Placebo During 12-Week Treatment in Treatment-Naïve Adults with Chronic Hepatitis C (CHC); Liu, Y; ePoster # P0873
  • Ombitasvir/Paritaprevir /Ritonavir and Dasabuvir with Ribavirin (RBV) has Mild Impact on Health-Related Quality of Life (HRQoL) Compared with Placebo During 12-Week Treatment in Treatment-Experienced Adults with Chronic Hepatitis C (CHC); Liu, Y; ePoster # P0856

The full ILC 2015 scientific program can be found at www.ilc-congress.eu/.

About VIEKIRAX® + EXVIERA®

VIEKIRAX + EXVIERA is approved in the European Union for the treatment of genotype 1 (GT1) chronic hepatitis C virus (HCV) infection, including patients with compensated cirrhosis. VIEKIRAX is approved in the European Union for the treatment of genotype 4 (GT4) chronic HCV infection.

VIEKIRAX consists of the fixed-dose combination of paritaprevir 150mg (NS3/4A protease inhibitor) and ritonavir 100mg with ombitasvir 25mg (NS5A inhibitor), dosed once daily, and EXVIERA consists of dasabuvir 250mg (non-nucleoside NS5B polymerase inhibitor) dosed twice daily taken with or without ribavirin, dosed twice daily. VIEKIRAX + EXVIERA is taken for 12 weeks with or without RBV, except in GT1a and GT4 patients with compensated cirrhosis, who should take it for 24 weeks.

Paritaprevir was discovered during the ongoing collaboration between AbbVie and Enanta Pharmaceuticals (NASDAQ: ENTA) for hepatitis C protease inhibitors and regimens that include protease inhibitors. Paritaprevir has been developed by AbbVie for use in combination with AbbVie's other investigational medicines for the treatment of chronic hepatitis C.

Additional information about AbbVie's hepatitis C development program can be found on www.clinicaltrials.gov.

EU Indication

VIEKIRAX is indicated in combination with other medicinal products for the treatment of chronic hepatitis C (CHC) in adults. EXVIERA is indicated in combination with other medicinal products for the treatment of chronic hepatitis C (CHC) in adults.

Important EU Safety Information
Contraindications:

VIEKIRAX + EXVIERA are contraindicated in patients with severe hepatic impairment (Child-Pugh C). Patients taking ethinyl estradiol-containing medicinal products must discontinue them and switch to an alternative method of contraception prior to initiating VIEKIRAX + EXVIERA. Do not give VIEKIRAX with certain drugs that are sensitive CYP3A substrates or strong inhibitors of CYP3A. Do not give VIEKIRAX and EXVIERA with strong or moderate enzyme inducers. Do not give EXVIERA with certain drugs that are strong inhibitors of CYP2C8.

Special warnings and precautions for use:

VIEKIRAX and EXVIERA are not recommended as monotherapy and should be used in combination with other medicinal products for the treatment of hepatitis C infection.

Pregnancy and concomitant use with ribavirin
When VIEKIRAX + EXVIERA are used in combination with ribavirin, women of childbearing potential or their male partners must use an effective form of contraception during the treatment and 6 months after the treatment. Refer to the Summary of Product Characteristics for ribavirin for additional information.

ALT elevations
Transient elevations of ALT to >5x ULN without concomitant elevations of bilirubin occurred in clinical trials with VIEKIRAX + EXVIERA and were more frequent in a subgroup who were using ethinyl estradiol-containing contraceptives.

Use with concomitant medicinal products
Use caution when administering VIEKIRAX with fluticasone or other glucocorticoids that are metabolized by CYP3A4. A reduction in colchicine dosage or interruption in colchicine is recommended in patients with normal renal or hepatic function. VIEKIRAX with or without EXVIERA is expected to increase exposure of statins so certain statins need to be discontinued or dosages reduced. Low dose ritonavir, which is part of VIEKIRAX, may select for PI resistance in HIV co-infected patients without ongoing antiretroviral therapy. HIV co-infected patients without suppressive antiretroviral therapy should not be treated with VIEKIRAX.

Adverse Reactions
Most common (>20 percent) adverse reactions for VIEKIRAX + EXVIERA with RBV were fatigue and nausea.

Full summary of product characteristics is available at www.ema.europa.eu.

Globally, prescribing information varies; refer to the individual country product label for complete information.

About AbbVie

AbbVie is a global, research-based biopharmaceutical company formed in 2013 following separation from Abbott Laboratories. The company's mission is to use its expertise, dedicated people and unique approach to innovation to develop and market advanced therapies that address some of the world's most complex and serious diseases. AbbVie employs more than 26,000 people worldwide and markets medicines in more than 170 countries. For further information on the company and its people, portfolio and commitments, please visit www.abbvie.com. Follow @abbvie on Twitter or view careers on our Facebook or LinkedIn page.

Forward-Looking Statements

Some statements in this news release may be forward-looking statements for purposes of the Private Securities Litigation Reform Act of 1995. The words "believe," "expect," "anticipate," "project" and similar expressions, among others, generally identify forward-looking statements. AbbVie cautions that these forward-looking statements are subject to risks and uncertainties that may cause actual results to differ materially from those indicated in the forward-looking statements. Such risks and uncertainties include, but are not limited to, challenges to intellectual property, competition from other products, difficulties inherent in the research and development process, adverse litigation or government action, and changes to laws and regulations applicable to our industry.

Additional information about the economic, competitive, governmental, technological and other factors that may affect AbbVie's operations is set forth in Item 1A, "Risk Factors," in AbbVie's 2014 Annual Report on Form 10-K, which has been filed with the Securities and Exchange Commission. AbbVie undertakes no obligation to release publicly any revisions to forward-looking statements as a result of subsequent events or developments, except as required by law.

SOURCE AbbVie

For further information: Media: Javier Boix, +1 (847) 937-6113, javier.boix@abbvie.com; Jackie Finley, +1 (847) 937-3998, jaquelin.finley@abbvie.com; Investor Relations: Liz Shea, +1 (847) 935-2211, liz.shea@abbvie.com

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Grazoprevir/Elbasvir, Merck’s Investigational Chronic Hepatitis C Therapy, Granted FDA Breakthrough Therapy Designations; New Phase 2 and 3 Data in Multiple HCV Patient Types to be Presented at The International Liver Congress™ 2015

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Congress Highlights Include Results from Trials in a Wide Range of HCV Patients -- Patients with Chronic Kidney Disease, HIV Co-infection, Cirrhosis, and Prior Treatment Failures

Company Remains on Track for NDA Filing with the U.S. FDA During First Half of 2015

Wednesday, April 8, 2015 7:00 am EDT

"Our clinical program is among the largest and most comprehensive, with studies dedicated to patient populations where significant unmet medical need still exists, such as prior treatment failures, as well as those living with co-morbid conditions, including HIV infection, chronic kidney disease and individuals on opiate substitution therapy."

KENILWORTH, N.J.--(BUSINESS WIRE)--Merck (NYSE:MRK), known as MSD outside of the United States and Canada, today announced that grazoprevir/elbasvir, an investigational single tablet regimen for the treatment of chronic hepatitis C virus (HCV) infection, has received two new Breakthrough Therapy designations from the U.S. Food and Drug Administration (FDA) for the treatment of patients with chronic HCV genotype 4 (GT4) infection, and for the treatment of chronic HCV genotype 1 (GT1) infection in patients with end stage renal disease on hemodialysis. Additionally, the company announced presentations from the broad grazoprevir/elbasvir development program at the upcoming International Liver Congress™. A total of 14 abstracts from studies evaluating grazoprevir/elbasvir are scheduled to be presented, including three from the company’s ongoing Phase 3 pivotal C-EDGE program, one from the pivotal Phase 2b/3 C-SURFER study, and seven from ongoing or completed Phase 2 studies. The range of data to be presented underscores the company’s ongoing commitment to developing an all-oral regimen with wide application across diverse patient populations. The International Liver Congress™ 2015 – the 50th annual congress of the European Association for the Study of the Liver – is scheduled to take place at the Reed Messe Convention Center, Vienna, Austria, from April 22 – 26, 2015.

“HCV remains a global public health epidemic. At Merck, we are focused on the development of an efficacious, well-tolerated, once-daily therapy that can be used to treat multiple genotypes and a diverse population of chronic HCV patients,” said Dr. Eliav Barr, vice president, infectious diseases, Merck Research Laboratories. “Our clinical program is among the largest and most comprehensive, with studies dedicated to patient populations where significant unmet medical need still exists, such as prior treatment failures, as well as those living with co-morbid conditions, including HIV infection, chronic kidney disease and individuals on opiate substitution therapy.”

In October 2013, the FDA granted Breakthrough Therapy designation for grazoprevir/elbasvir for the treatment of patients with chronic HCV genotype 1 (GT1). In January 2015, the FDA notified Merck of its intention to rescind that Breakthrough Therapy designation. The FDA has now granted two new Breakthrough Therapy designations for grazoprevir/elbasvir; the designations are now for the treatment of patients infected with chronic HCV GT1 with end stage renal disease on hemodialysis, and patients infected with chronic HCV genotype 4 (GT4). Breakthrough Therapy designation is intended to expedite the development and review of a candidate that is planned for use, alone or in combination, to treat a serious or life-threatening disease or condition when preliminary clinical evidence indicates that the drug may demonstrate substantial improvement over existing therapies on one or more clinically significant endpoints.

At The International Liver Congress 2015™, key data presentations will include:

  • Primary results from the C-EDGE program, Phase 3 clinical trials evaluating grazoprevir/elbasvir (with and without ribavirin) across multiple HCV genotypes (1, 4 and 6) and diverse patient populations, including those difficult to treat, over a 12-week treatment duration
    • C-EDGE TN in treatment-naïve patients; Oral presentation, General Session 2 & Award 1, Abstract #G07, Friday, April 24, 8:30 a.m. – 8:45 a.m. CEST
    • C-EDGE CO-INFXN in patients with HCV/HIV co-infection; E-poster #P0887, Thursday, April 23 at 7:30 a.m. CEST until Saturday, April 25 at 8:00 p.m. CEST
    • C-EDGE TE in treatment-experienced (prior peg-interferon/ribavirin treatment failures); E-poster #P0886, Thursday, April 23 at 7:30 a.m. CEST until Saturday, April 25 at 8:00 p.m. CEST
  • First results from C-SURFER, a Phase 2b/3 clinical trial evaluating grazoprevir/elbasvir (without ribavirin) in treatment-naïve and treatment-experienced patients with HCV genotype 1 infection and advanced chronic kidney disease
    • Late-breaking E-poster #LP02, Thursday, April 23 at 7:30 a.m. CEST until Saturday, April 25 at 8:00 p.m. CEST
  • Results from C-SALVAGE, a Phase 2 clinical trial evaluating grazoprevir/elbasvir (with and without ribavirin) for chronic HCV in genotype 1 infection after failure of direct-acting antiviral (DAA) therapy, including boceprevir, telaprevir, or simeprevir
    • Oral presentation, Viral Hepatitis C Therapy session, Abstract #O001, Thursday, April 23, 4:00 p.m. – 4:15 p.m. CEST
  • Results from C-SWIFT, a Phase 2 clinical trial evaluating shorter treatment durations (4, 6, 8 and 12 weeks) of grazoprevir/elbasvir plus sofosbuvir in treatment-naïve, treatment-experienced/prior treatment failure/null-response, cirrhotic and non-cirrhotic patients with genotype 1 or 3 infection
    • Oral presentation, Viral Hepatitis C Therapy session, Abstract #O006, Thursday, April 23, 5:15 p.m. – 5:30 p.m. CEST
  • Phase 2 efficacy and safety results from the C-SALT clinical trial, evaluating grazoprevir/elbasvir in genotype 1 infected patients with Child-Pugh class B cirrhosis
    • Oral presentation, Viral Hepatitis C Therapy session, Abstract #O008, Thursday, April 23, 5:45 p.m. – 6:00 p.m. CEST
  • Results from C-WORTHy, a Phase 2 clinical trial evaluating treatment with grazoprevir/elbasvir (with or without ribavirin) in genotype 1 and 3 infection, and in a variety of patient sub-populations including treatment-naïve, treatment-experienced, cirrhotic, non-cirrhotic, and HIV/HCV co-infected
    • C-WORTHy Part C in treatment-naïve, non-cirrhotic patients with genotype 1b infection; E-poster #P0769, Thursday, April 23 at 7:30 a.m. CEST until Saturday, April 25 at 8:00 p.m. CEST
    • C-WORTHy Part D in treatment-naïve patients with genotype 3 infection treated with ribavirin; E-poster #P0776, Thursday, April 23 at 7:30 a.m. CEST until Saturday, April 25 at 8:00 p.m. CEST
    • C-WORTHy resistance analysis of virologic failures in hepatitis C genotype 1 infected patients; E-poster #P0891, Thursday, April 23 at 7:30 a.m. CEST until Saturday, April 25 at 8:00 p.m. CEST
  • Results from C-SCAPE, a Phase 2 trial evaluating the efficacy and safety of 12 weeks of grazoprevir/elbasvir (with or without ribavirin) in patients with genotype 2, 4, 5 or 6 infection
    • E-poster #P0771, Thursday, April 23 at 7:30 a.m. CEST until Saturday, April 25 at 8:00 p.m. CEST
  • Results from a Phase 1 study to evaluate the interaction of novel nucleotide inhibitor MK-3682 (formerly IDX21437), with grazoprevir and NS5A inhibitor MK-8408 in healthy subjects
    • E-poster #P0824, Thursday, April 23 at 7:30 a.m. CEST until Saturday, April 25 at 8:00 p.m. CEST

About Grazoprevir/Elbasvir

Grazoprevir/elbasvir is an investigational, once-daily single tablet regimen consisting of grazoprevir (NS3/4A protease inhibitor) and elbasvir (NS5A replication complex inhibitor). As part of Merck’s broad clinical trials program, grazoprevir/elbasvir is being studied in multiple HCV genotypes and in patients with difficult-to-treat conditions such as HIV/HCV co-infection, advanced chronic kidney disease, inherited blood disorders, cirrhosis and those on opiate substitution therapy.

Merck’s Commitment to HCV

For nearly 30 years, Merck has been at the forefront of the response to the HCV epidemic. Merck employees are dedicated to applying their scientific expertise, resources and global reach to deliver innovative healthcare solutions that support people living with HCV worldwide.

About Merck

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

Forward-Looking Statement

This news release includes “forward-looking statements” within the meaning of the safe harbor provisions of the U.S. Private Securities Litigation Reform Act of 1995. Such statements may include, but are not limited to, Merck’s ability to complete the offering and Merck’s expectations for the use of proceeds from the offering. These statements are based upon the current beliefs and expectations of Merck’s management and are subject to significant risks and uncertainties. There can be no guarantees with respect to pipeline products that the products will receive the necessary regulatory approvals or that they will prove to be commercially successful. If underlying assumptions prove inaccurate or risks or uncertainties materialize, actual results may differ materially from those set forth in the forward-looking statements.

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

Merck undertakes no obligation to publicly update any forward-looking statement, whether as a result of new information, future events or otherwise except as required by applicable law. Additional factors that could cause results to differ materially from those described in the forward-looking statements can be found in Merck’s 2014 Annual Report on Form 10-K and the company’s other filings with the Securities and Exchange Commission (SEC) available at the SEC’s Internet site (www.sec.gov).

Contact:

Merck
Media:
Doris Li, 908-246-5701
Sarra Herzog, 908-740-1871
or
Investors:
Joe Romanelli, 908-740-1879
Justin Holko, 908-740-1986

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March 26, 2015

Japan’s Ministry of Health, Labour and Welfare Approves Gilead’s Sovaldi® (sofosbuvir) for the Treatment of Genotype 2 Chronic Hepatitis C

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-- Sovaldi Part of First All-Oral Treatment Regimen for Genotype 2 Patients in Japan --

-- 96 Percent Cure Rates and Shortened, 12-Week Course of Therapy --

FOSTER CITY, Calif.--(BUSINESS WIRE)--Mar. 26, 2015-- Gilead Sciences, Inc. (Nasdaq:GILD) today announced that the Japanese Ministry of Health, Labour and Welfare (MHLW) has approved Sovaldi® (sofosbuvir), a once-daily nucleotide analog polymerase inhibitor, for the suppression of viremia in patients with genotype 2 chronic hepatitis C virus (HCV) infection with or without compensated cirrhosis. Sovaldi is indicated for use in combination with ribavirin (RBV) for 12 weeks. Sovaldi (in combination with RBV) is the first all-oral, interferon-free treatment regimen for genotype 2 HCV infection. Sovaldi is also the first product to be marketed by Gilead in Japan.

“Today’s approval represents an important step forward in the management of hepatitis C in Japan, enabling genotype 2 infected patients the opportunity of a cure in 12 weeks with an all-oral regimen that eliminates the need for interferon,” said Masao Omata, MD, Yamanashi Prefectural Hospital Organization.

Primarily due to HCV, Japan has one of the highest rates of liver cancer of any industrialized country. Of the more than one million people chronically infected with HCV, 20-30 percent have the genotype 2 strain of the virus. Currently approved therapies in Japan for genotype 2 HCV infection involve 24-48 weeks of injections with pegylated interferon, which may not be suitable for many patients.

Sovaldi’s approval is supported by data from a Phase 3 clinical trial conducted in Japan (Study GS-US-334-0118) among treatment-naïve and treatment-experienced genotype 2 patients. Approval was based on 96 percent (n=135/140) of genotype 2 HCV-infected patients who received 12 weeks of an all-oral regimen of Sovaldi plus RBV 600–1,000 mg/day achieving a sustained virologic response 12 weeks after completing therapy (SVR12). Patients who achieve SVR12 are considered cured of HCV infection. The approval is also supported by SVR12 results from four international Phase 3 studies (FISSION, FUSION, POSITRON and VALENCE), which included genotype 2 HCV patients.

“There is a need in Japan for new HCV treatment options that are more effective and better tolerated and we have been pleased to partner with the medical community here in Japan to demonstrate the efficacy and safety of Sovaldi,” said Norbert Bischofberger, PhD, Gilead’s Executive Vice President, Research and Development and Chief Scientific Officer. “We look forward to making Sovaldi available in Japan as quickly as possible, while simultaneously continuing to work with the agency on its review of our second application for an all-oral sofosbuvir-based regimen for the treatment of genotype 1 HCV infection.”

Gilead filed a New Drug Application (NDA) in Japan for a single-tablet regimen of sofosbuvir and the NS5A inhibitor ledipasvir for the treatment of genotype 1 HCV infected patients on September 24, 2014. The ledipasvir/sofosbuvir single tablet regimen is an investigational product in Japan and its safety and efficacy have not yet been established.

IMPORTANT SAFETY INFORMATION

Use with potent P gp inducers: Drugs that are potent P-gp inducers in the intestine are expected to decrease sofosbuvir plasma concentration. Sovaldi is contraindicated in patients receiving the following substances: carbamazepine, phenytoin, rifampicin or St. John’s wort. Also, Sovaldi should be administered with care when coadministered with the following drugs: rifabutin, and phenobarbital.

Contraindications: Sovaldi is contraindicated in patients with severe renal function impairment (eGFR<30 mL/min/1.73m2) or patients with renal insufficiency requiring dialysis.

Anemia occurred in patients receiving Sovaldi in combination with ribavirin. Patients should be carefully observed and hemoglobin should be periodically monitored and appropriate measures should be taken including ribavirin dose adjusted according to the ribavirin package insert. If ribavirin is permanently discontinued, Sovaldi should also be discontinued.

Adverse reactions: In the Japanese Phase 3 clinical study, 61 of 140 (43.6 percent) patients experienced adverse reactions, including abnormal laboratory test values. The major adverse reactions were 21 anemia/hemoglobin decreased (15.0 percent), 7 headache (5.0 percent), 6 malaise (4.3 percent), 6 nausea (4.3 percent), and 6 pruritus (4.3 percent).

About Gilead

Gilead Sciences is a biopharmaceutical company that discovers, develops and commercializes innovative therapeutics in areas of unmet medical need. The company’s mission is to advance the care of patients suffering from life-threatening diseases. Gilead has operations in more than 30 countries worldwide, with headquarters in Foster City, California.

Forward-Looking Statement

This press release includes forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995 that are subject to risks, uncertainties and other factors, including the risk that physicians and patients may not see advantages of Sovaldi over other therapies and may therefore be reluctant to prescribe the product, and the risk that payers may be reluctant to approve or provide reimbursement for the product. Further, the ledipasvir/sofosbuvir single tablet regimen may not be approved in Japan in the currently anticipated timelines or at all, and approval, if granted, may have significant limitations on its use. These risks, uncertainties and other factors could cause actual results to differ materially from those referred to in the forward-looking statements. The reader is cautioned not to rely on these forward-looking statements. These and other risks are described in detail in Gilead’s Annual Report on Form 10-K for the year ended December 31, 2014, as filed with the U.S. Securities and Exchange Commission. All forward-looking statements are based on information currently available to Gilead, and Gilead assumes no obligation to update any such forward-looking statements.

U.S. full Prescribing Information for Sovaldi and Harvoni is available at www.gilead.com.
Sovaldi and Harvoni are registered trademarks of Gilead Sciences, Inc., or its related companies.

For more information on Gilead Sciences, please visit the company’s website at www.gilead.com, follow Gilead on Twitter (@GileadSciences) or call Gilead Public Affairs at 1-800-GILEAD-5 or 1-650-574-3000.

Source: Gilead Sciences, Inc.

Gilead Sciences, Inc.
Investors:
Patrick O’Brien, +1 650-522-1936
Media:
Cara Miller, +1 650-522-1616
Seiko Noma, +81-3-6837-0790 (Japan)

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