Showing posts with label BI 207127. Show all posts
Showing posts with label BI 207127. Show all posts

October 3, 2013

Optimization of an Interferon-free Hepatitis C Virus Treatment Regimen Containing the NS3/4A Protease Inhibitor Faldaprevir, the Non-nucleoside NS5B Inhibitor BI207127, and Ribavirin for Genotype 1b-infected Patients

Infectious Disease Week (IDWeek)
October 2-6, 2013
San Francisco, Ca

715. Optimization of an Interferon-free Hepatitis C Virus Treatment Regimen Containing the NS3/4A Protease Inhibitor Faldaprevir, the Non-nucleoside NS5B Inhibitor BI207127, and Ribavirin for Genotype 1b-infected Patients

Session: Poster Abstract Session: Antimicrobials: Novel Agents

Friday, October 4, 2013

Room: The Moscone Center: Poster Hall C

Posters 715_IFNFree_faldaprevir_deleobuvir.pdf (109.5 kB)

Background: SOUND-C1 demonstrated the potent antiviral activity of faldaprevir (FDV) and BI207127 + ribavirin (RBV) without interferon (IFN) in HCV GT1-infected patients. SOUND-C2 investigated the safety, efficacy, and treatment duration of FDV 120mg QD, BI207127 600mg BID or TID (with an additional induction dose of 1200mg at first intake) ± RBV for 16, 28, or 40 weeks in 362 HCV GT1-infected patients. Dose and treatment duration were optimized in SOUND-C3. Notably, recently completed pivotal phase 3 trials of FDV + PegIFN + RBV (STARTVerso™) have yielded promising results across both GT-1a and 1b patients, including patients with compensated cirrhosis.

Methods: Pharmacokinetic and pharmacodynamic analysis in SOUND-C2 indicated an interaction between FDV and BI207127 that increased plasma concentrations of each drug. Increased plasma concentrations of BI207127 correlated with gastrointestinal adverse events (AEs) and treatment discontinuation in the TID groups. SOUND-C3 eliminated the induction dose and limited treatment duration to 16 weeks in order to optimize therapy.

In SOUND-C3, GT1a patients (n=12) carrying the IL28b CC genotype (rs12979860, GT1a-CC) and GT1b patients (n=20) carrying any IL28b genotype were treated with FDV 120mg QD + BI207127 600mg BID without induction dose + RBV for only 16 weeks. Both studies included cirrhotic patients (9% in SOUND-C2 and 13% in SOUND-C3) and had a primary endpoint of SVR12.

Results: In SOUND-C2, SVR12 rates differed between GT1a- (up to 47%) and GT1b- (up to 85%) infected patients. The presence of cirrhosis had a minor influence on SVR12 rates. Nausea and vomiting were common AEs, especially in the TID arms, but were mainly mild.

In SOUND-C3, 95% (19/20) of GT1b-infected patients achieved SVR12 with the modified 16-week IFN-free regimen compared with 17% (2/12) of GT1a-CC-infected patients.

Conclusion: Modifying the IFN-free regimen of FDV, BI207127, + RBV in SOUND-C3 resulted in an SVR rate of 95% for GT1b-infected patients compared with 85% in SOUND-C2 after 16 weeks of treatment. GT1a-CC infected patients had a clearly lower SVR12 rate with 16-week therapy. The optimized 16-week IFN-free regimen is being investigated in phase 3 studies in GT1b-infected patients.

Parvez Mantry, MD, Hepatobiliary Tumor Program, The Liver Institute at Methodist Dallas Medical Center, Dallas, TX, Marcus Schuchmann, MD, Klinikum Der Johannes Gutenberg, University Hospital Mainz, Mainz, Germany, Ansgar Lohse, MD, Department of Internal Medicine, University Hospital Hamburg-Eppendorf, Hamburg, Germany, Keikawus Arasteh, MD, EPIMED c/o Auguste-Viktoria-Klinikum, Berlin, Germany, Michael Manns, MD, Hannover Medical School, Hannover, Germany, Thomas Berg, MD, Department of Internal Medicine, University Hospital Leipzig, Leipzig, Germany, Stefan Mauss, MD, Zentrum für HIV und Hepatogastroenterologie, Düsseldorf, Germany, Michael Geissler, MD, Klinik Für Onkologie, Gastroenterologie Und Innere Medizin, Esslingen Hospital, Esslingen, Germany, Wulf Bocher, MD, Boehringer Ingelheim, Biberach, Germany and Stefan Zeuzem, MD, Gastroeneterology, Klinikum der Johann-Wolfgang-Goethe-Universität–Med. Klinik I, Frankfurt, Germany

Disclosures:

P. Mantry, Boehringer Ingelehiem: Investigator, Research grant

M. Schuchmann, Boehringer Ingelehiem: Consultant, Editorial Support and Speaker's Bureau, Consulting fee and Speaker honorarium
Norgine: Consultant, Consulting fee
BMS: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Roche: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Gilead: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Merck: Speaker's Bureau, Speaker honorarium
Falk: Speaker's Bureau, Speaker honorarium
MSD: Speaker's Bureau, Speaker honorarium
DFG: Grant Investigator, Grant recipient

A. Lohse, Boehringer Ingelheim: Editorial Support, None

K. Arasteh, Boehringer Ingelehiem: Board Member, Consultant, Grant Investigator and Speaker's Bureau, Consulting fee, Grant recipient and Speaker honorarium

M. Manns, Roche: Consultant, Grant Investigator and Speaker's Bureau, Grant recipient and Speaker honorarium
Gilead: Grant Investigator and Speaker's Bureau, Grant recipient and Speaker honorarium
Novartis: Grant Investigator, Grant recipient
Boehringer Ingelheim: Grant Investigator, Grant recipient
BMS: Grant Investigator and Speaker's Bureau, Grant recipient and Speaker honorarium
Merck: Grant Investigator and Speaker's Bureau, Grant recipient and Speaker honorarium
Janssen: Grant Investigator and Speaker's Bureau, Grant recipient and Speaker honorarium

T. Berg, BMS: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Essex Pharma: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Gilead: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
GSK: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Novartis: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Roche: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Schering-Plough: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Vertex: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium

S. Mauss, Abbott: Grant Investigator, Scientific Advisor and Speaker's Bureau, Research grant, Research support and Speaker honorarium
BMS: Scientific Advisor and Speaker's Bureau, Speaker honorarium
Tibotec: Scientific Advisor and Speaker's Bureau, Speaker honorarium
Roche: Speaker's Bureau, Research support and Speaker honorarium
GSK: Scientific Advisor, Consulting fee
Gilead: Scientific Advisor, Consulting fee

M. Geissler, Boehringer Ingelehiem: Grant Investigator, Research grant

W. Bocher, Boehringer Ingelheim: Employee, Salary

S. Zeuzem, Abbott: Consultant, Consulting fee
Achillion: Consultant, Consulting fee
AstraZeneca: Consultant, Consulting fee
BMS: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Boehringer Ingelheim: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Gilead: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Janssen: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Merck: Consultant and Speaker's Bureau, Consulting fee and Speaker honorarium
Novartis: Consultant, Consulting fee
Roche: Consultant, Consulting fee and Speaker honorarium
Santaris: Consultant, Consulting fee

Source

August 18, 2013

A pill for HCV - myth or foreseeable future?

Liver International

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

Review

Jerzy Jaroszewicz1, Robert Flisiak1, Geoffrey Dusheiko2

DOI: 10.1111/liv.12294

This article is protected by copyright. All rights reserved.

Accepted manuscript online: 2 AUG 2013 07:55AM EST, Manuscript Accepted: 24 JUL 2013, Manuscript Received: 30 MAY 2013

Running head: IFN-free therapies for HCV

Abstract

Weekly injections with pegylated-IFNa (PegIFN) combined with daily ribavirin are still the standard of care for chronic hepatitis C in most of the world. Sustained virological response (SVR) of 40-50% for patients infected with HCV genotypes (GT) 1 or 4 and 70-90% for genotypes 2-3 are achieved with this regimen. Triple therapy, registered in both the EU and USA, utilizing the first-generation direct protease inhibitors is able to increase the SVR rates to 75%, but its use is restricted to patients infected with HCV GT1. Additional limitations include challenging dosing schedules, complex treatment algorithms, limited efficacy in patients with previous null response to PegIFN/RBV therapy and additional side effects. There is also an important need for more effective antiviral therapy for difficult to treat populations with PEG-IFN intolerance, particularly those with cirrhosis and non-responders to previous therapies. All-oral, IFN-free therapies are an evolutionary step for future anti- HCV therapies. Initial results of clinical studies conducted during the last year give hope for “a pill for HCV” at least in selected CHC populations. In 2013 several clinical trials of alloral anti-HCV therapies had been completed, first all-oral combination submitted for registration and some conclusions could be drawn. However there is not yet a clear direction for IFN-free therapies in treatment naïve patients or more complex non responders.

Keywords: HCV, chronic hepatitis C, direct acting agents, interferon, IFN free, IFN sparing

Introduction

Nearly 2.4% of the world population is estimated to be infected with HCV. Persistent hepatitis C can result in hepatic cirrhosis and hepatocellular carcinoma [1-3]. Approximately 30% of HCV-infected individuals will develop liver cirrhosis within 20-30 years [4]. The current standard of care with pegylated IFNα (PegIFNα) -2a or -2b combined with daily ribavirin (RBV) is the standard of care in most regions of the world. Sustained virological response (SVR) of 40-50% for patients infected with HCV genotypes 1 or 4 and 70-90% for those infected with genotypes 2 or 3 are achieved [5-6]. The outcome of PegIFNα therapy largely depends on host factors (IL-28B genotype, serum IP-10), obesity, and stage of liver fibrosis and is often limited by various toxicities and/or drug intolerance [7-8].

In recent years significant progress in our understanding of the HCV life cycle has been made; replication of HCV in cell culture systems have allowed new targets for direct acting antivirals (DAA) to be developed. Several HCV proteins involved in viral replication have been identified as potential therapeutic targets of replication inhibitors. Promising results have been shown with inhibition of the HCV NS3/4A protease, which is involved in post-translational processing of HCV proteins, NS5B (RNA-dependent RNA polymerase) inhibitors and NS5A an enigmatic protein involved in as yet not fully understood stages HCV virion production. Triple therapy, registered in both the EU and USA, combined the firstgeneration direct acting antivirals (DAA) - protease inhibitors (boceprevir - BOC and telaprevir - TPV). This regimen increases SVR rates up to 75%; however their activity is restricted to HCV genotype 1 infection. [9-12]. Moreover, currently approved triple therapies possess numerous limitations restricting their clinical utility. These include challenging dosing schedules, complex treatment algorithms, improved but still limited efficacy in null responders to previous PegINFα/RBV therapy and several additional important side effects. Recently, somewhat discordant results on the frequency of adverse events between registration trails and real life practice in patients with cirrhosis have been reported for firstgeneration protease inhibitor. Interim analysis of the French, real life, early access program of triple therapy with BOC or TPV in 497 cirrhotic, previous non-responders to PegINFα/RBV treatment were evaluated. Of note, at least one serious adverse event was observed in 45.2% of TPV and 32.7% of BOC-treated patients. Premature discontinuation of therapy was recorded in 22.6% of subjects receiving TPV and 26.3% BOC [13]. However the high rates of serious adverse events in this cohort may also reflect the case mix of the population and a learning curve.

Thus there is a need for efficient and safe antiviral compounds for difficult to treat populations intolerant to interferon, particularly patients with cirrhosis and non-responders to PegIFNα/RBV. Development of pan-genotypic drugs and of interferon-sparing or interferon free combinations which could shorten, simplify and hopefully lower the cost of HCV management is an important unmet medical need.

Interferon free therapy in treatment naïve patients

Chronic hepatitis C is currently regarded as a curable infection; HCV is an RNA virus which replicates in the cytoplasm and is not integrated into the host genome. The first proof of concept studies of the potential efficacy of interferon free direct acting antivirals (formerly known as STAT-C) were published in 2003 [14, 15]. The INFORM trial [16] explored the efficacy of two DAAs combination, mericitabine (a nucleoside polymerase inhibitor) and danoprevir (a NS3/4A protease inhibitor) in 73 treatment naïve and SOC-experienced CHC patients. This combination resulted in potent suppression of viral replication (HCV-RNA decline from -3.7 to -5.2 log10 IU/mL) with no breakthroughs during 14 days of administration.

The current repertoire of anti-HCV investigational direct acting agents includes first and second generation NS3/4A protease inhibitors, nucleos(t)ide (NI) and non-nucleos(t)ide (NNI) inhibitors of NS5B RNA dependent RNA polymerase and NS5A complex inhibitors (Table 1). The ideal combination of DAAs with different mechanisms of action, potent efficacy, minimal resistance and limited side effects is yet to be determined. Several phase 1 and 2 clinical trials of all-oral anti-HCV therapies have been completed and will be reviewed below (Table 2).

Table 1. DAAs recently explored in IFN-free combinations.
(the most advanced a in development, listed in alphabetical order)

Drug name Drug category Company
ABT-267 NS5A inhibitor AbbVie
ABT-333 NNI NS5 inhibitor AbbVie
ABT-450 NS3/4A PI AbbVie
Asunaprevir (BMS-650032) NS3/4A PI Bristol-Myers Squibb
BI-207127 NNI NS5 inhibitor Boehringer Ingelheim
Daclatasvir (BMS-790052) NS5A inhibitor Bristol-Myers Squibb
Danoprevir (RG7227) NS3/4A PI Roche
Faldaprevir (BI 201335) NS3/4A PI Boehringer Ingelheim
Ledipasvir (GS-5885) NS5A inhibitor Gilead
Mericitabine (RG7128) NI NS5B inhibitor Roche
Sofosbuvir (GS 7977) NI NS5B inhibitor Gilead
VX-222 NNI NS5 inhibitor Vertex Pharmaceuticals
 
a April 2013
Table 2. Overview on recently studied IFN-free combinations for treatment naïve chronic hepatitis C
(the most advanced a in development interferon free combinations)
a April 2013, RBV – ribavirin, SVR – sustained virologic response
 

Combination

HCV
genotype

SVR range
(%)

Reference

Sofosbuvir + RBV

1/2/3

75-90

18

Sofosbuvir + RBV +/- Ledipasvir

1

84-100

19

Sofosbuvir + RBV

2/3

67

20

ABT-450/r + ABT-267 + ABT-333
+/- RBV

1

87-96

22

Faldaprevir + BI 207127 + RBV

1

39-69

23

Daclatasvir + Sofosbuvir +/- RBV

1/2/3

93-98

25

Daclatasvir + Asunaprevir + BMS-
791325

1

94

27

Alisporivir +/- RBV

2/3

92

30

Direct acting antivirals plus ribavirin

RBV due to its antiviral and immunomodulatory activity is a crucial element of current anti-HCV therapies. Adding RBV to PEG-IFN increases the SVR by 25-30 % by reducing viral breakthroughs and relapses. However, RBV due to its extensive accumulation in erythrocytes leads to accelerated haemolysis and causes anemia [17]. Grade 2 anemia affects 19-23% of patients during triple therapy with BOC or TPV [13]. Whether RBV will be a crucial part of future IFN-free anti-HCV regimens remains unclear. Thus many phase 3 trials will include ribavirin free arms.

Encouraging data have been reported for the combination of sofosbuvir (SOF, a nucleotide NS5B inhibitor, previously known as GS-7977) in combination with low (600mg) or full dose (1000-1200mg, weight based) of RBV administered for 24 weeks in treatment naïve GT1 CHC patients in the NIH Spare cohort [18]. The first cohort included patients with mild fibrosis (F0-F2); the second cohort included a proportion of patients with advanced fibrosis (24% with full dose and 28% with low dose RBV). Twenty-four weeks of therapy with this regimen resulted in SVR12 of 90% with full dose RBV, and in the mild fibrosis arm. SVR4 of 64% for low dose and 75% for full dose of RBV (modified ITT analysis) were achieved. There were no cases of discontinuation due to AE and no grade 4 AE were observed, but low hemoglobin levels were noted in 7/35 (20%) of patients with full dose of RBV and only in 1/25 (4%) with low dose RBV.

The combination of sofosbuvir and RBV with or without ledipasvir (LDV, a NS5a inhibitor previously known as GS-5885) has also been evaluated as a part of the ELECTRON study. [19]. SOF+RBV therapy for 12 weeks in 25 treatment naïve patients resulted in SVR4 of 88% and SVR12 of 84%. Interestingly, coadministration of LDV, with sofosbuvir substantially improved response rates with an SVR12 of 100% in small numbers of naïve genotype 1 patients in this cohort. These preliminary results do not suggest an effect of HCV subtype IL28B genotype, or BMI. Twenty percent of patients suffered anemia in the triple therapy arm compared to none of this in the dual therapy arm. A phase 3 trial of fixed dose SOF/LDV will further evaluate the need for RBV and possibility of shortening therapy duration. The combination of SOF and RBV has been also assessed in GT2 and 3 HCVinfection in FISSION study [20, 21]. SOF and RBV for 12 weeks (n=256) resulted in the same SVR12 of 67% as achieved with the control arm of PEG-IFN/RBV for 24 weeks. Importantly SVR12 was substantially lower in HCV GT3 vs GT 2 (56 vs 97%) underlining the need of separate analysis of these genotypes. The most difficult to treat in this study were HCV-GT3 patients with cirrhosis with SVR12 of 34%. Although IFN-free therapy led to treatment discontinuation due to AEs in 1% vs 11% in IFN-containing arm the costs of the IFN arm will differ substantially. On April 8th 2013 sofosbuvir plus RBV as the first all-oral therapy for patients with GT 2 and 3 HCV infection has been submitted to US Food and Drug Administration (FDA) for approval (Gilead Press Release).

A four drug regimen of ritonavir (RTV) -boosted ABT-450 (a protease inhibitor), ABT-267 (a NS5A inhibitor), and ABT-333 (a non-nucleoside polymerase inhibitor) plus RBV has been explored in 438 treatment naïve GT1 CHC in the AVIATOR study [22]. The design of this study allowed testing of different regimens, therapy duration and the need for RBV. The quadruple combination was administered for 8, 12 or 24 weeks with an additional RBV-free arm for 12 weeks. Twelve weeks treatment with all three DAAs plus RBV produced the highest SVR rate. SVR12 was 99% and SVR 24 was 96%, in this arm. In the RBV-free arm SVR24 of 87% was observed and 5 cases of relapse were noticed (5/79). Importantly, no clinically meaningful differences between groups based on sex, HCV subtype, IL28B genotype, baseline HCV RNA or fibrosis stage were noted.

Faldaprevir, a NS3/4a inhibitor has been tested co-administered with BI 207127 (a nonnucleoside polymerase inhibitor) and RBV in treatment naïve CHC patients infected with HCV genotype 1 (Sound-C2 Study) [23] for 16, 28 or 40 weeks. Randomization to the RBV free arms was stopped early for lack of efficacy: SVR2 39% in ITT analysis after 28 weeks of therapy. The highest SVR (69%) were obtained after 28 weeks of therapy with faldaprevir once daily and BI 207127 twice daily plus RBV. High rates of virological failure occurred in subtype genotypes 1a.

In the Zenith study, VX-222 (a nonnucleoside polymerase inhibitor), telaprevir plus RBV were tested for efficacy in GT1 HCV-infection [24]. Dual therapy with VX-222 and TPV without RBV was previously associated with high rate of virologic breakthrough. VX-222 plus TPV was combined with RBV for 12 weeks; therapy was stopped in patients with an undetectable HCV-RNA at week 2 and 8. Twenty-four percent of patients reached this goal (11/46) and 9 of them had SVR12 (82%). In the remaining patients PEG-IFN+RBV was continued for the next 24 weeks with SVR12 of 89%.

Direct acting antivirals only (IFN-free, RBV-free therapies)

Daclatasvir (DCV, an NS5A inhibitor) and sofosbuvir have broad genotypic coverage and are administered once-daily [25, 26]. DCV 60mg and SOF 400mg have been tested with or without RBV for 12 and 24 weeks in genotype 1 and in GT2/3 CHC for 24 weeks. In GT1 patients, 12 weeks of therapy resulted in SVR4 of 96%. Response rates were not greater with 24-weeks of therapy (98%). Similarly, 24-weeks of therapy were sufficient to obtain SVR24 of 93% in HCV GT2/3 patients. Interestingly, virological response did not vary according to IL28B genotype, subtype (1a/b) or the administration of ribavirin. One out of 170 patients discontinued the study due to adverse events; low haemoglobin concentrations were observed in patients receiving RBV only.

Daclatasvir, asunaprevir (ASV, an NS3 PI inhibitor active against HCV GT 1 and 4) and BMS-791325 (an NNI NS5B inhibitor active against HCV GT1a/b) were evaluated for efficacy in treatment naïve GT1 patients [27]. Triple therapy was administered for 12 or 24 weeks at two doses of BMS-791325 (75mg and 150mg). In this study 50% had stage (F0-F1) disease and 44% stage F2-3 fibrosis. Overall SVR4 (for 24-week therapy) and SVR4 and SVR12 (for 12-week therapy) were 94%.

Host targeting agents plus ribavirin

In addition to direct acting antivirals a unique class of host targeting (HTA), anti-HCV compounds agents has been developed. These agents could theoretically increase the barrier to resistance. Currently the most advanced HTAs are cyclophilin inhibitors, microRNA inhibitors (both are non-immunomodulatory agents) and Toll-like receptor agonists. Alisporivir (ALV, previously known as Debio 025) is the most advanced nonimmunosupressive cyclophilin inhibitor in development for chronic hepatitis C with a pangenotypic activity [28, 29]. Resistance to ALV can occur through reduction of HCV dependence on host cyclophilins, but requires multiple nucleotide substitutions, including NS5A and NS2 mutations. Hyperbilirubinemia has been observed, and hypertriglyceridemia. In April 2012 FDA mandated a partial hold on the development of ALV after six cases of acute pancreatitis (including one fatal case), were reported. Since pancreatitis is known adverse event related to IFN alfa, it will be necessary to clarify if the combination of ALV with IFN indeed increases the risk. ALV may be further evaluated without IFN for genotype 2 and 3 patients, given its efficacy in these genotypes and the unmet need for effective genotype 3 IFN free treatment.

ALV as a part of IFN-free regimen was evaluated in 340 treatment naïve CHC patients with GT2/3 [30] in the VITAL-1 study. Patients were randomized to receive ALV monotherapy (1000 mg), ALV (600 or 800 mg) combined with RBV, ALV (600 mg) combined with PegIFNa2a or PegIFNa2a plus RBV as a SOC. Patients in ALV arms who were negative at week 4 (42%) continued initial treatment, while those who did not respond received triple therapy with ALV, PegIFNa2a and RBV starting from week 6. The SVR24 rate achieved with ALV/RBV (IFN-free) treatment was 92% (56/61 patients), which was higher than with ALV alone 72% (13/18) or with add-on PEG-IFN/RBV treatment - 70%. The rates of viral breakthrough in patients receiving ALV-based treatments were very low – 3.0% (9/299). Furthermore, IFN-free ALV treatment reported substantially lower rates of adverse events than with IFN [31].

In summary, initial data shows that SVR in the range of 90% should be realistic in selected treatment naïve CHC patients with all-oral combinations of DAA or HTA with or without RBV after 12/24 weeks of therapy. Ribavirin may be necessary in some combinations of DAA with lower barrier to HCV resistance. The further evolution IFNsparing therapies in this population most likely will concentrate on shortening duration of therapy, simplifying therapeutic regiments (once daily), and in improving safety. There is insufficient data on the efficacy of IFN-free therapies in HCV-infected populations with GT 4-6, as well as in patients with liver cirrhosis, decompensated liver disease, renal impairment, HIV coinfected patients or following liver transplantation who really need this kind of treatment because of IFN intolerance. The results achieved in GT3 patients need to be analysed separately from those in GT2 patients, particularly in prior non responders or those with cirrhosis.

Interferon sparing therapy in previous non-responders

As an effect of increased availability of anti-HCV therapies there is increasing proportion of chronic hepatitis C patients who failed to eradicate the virus. This population is heterogeneous with higher prevalence of factors associated with worse outcome of therapy, including advanced fibrosis, obesity, IL-28B CT/TT-genotype. Chronic HCV-infection is currently a leading indication for liver transplantation, and almost invariably leads to recurrent disease after post-transplant immunosupression [32].

The concept of IFN-free regimen has been explored for prior non-responders, particularly in null-responders who are in the greatest need for novel therapies. In a phase IIa study with daclatasvir and asunaprevir 110 non-cirrhotic patients infected with GT1 HCV and previous null response to pegIFN/RBV were randomized to five 24-week treatment arms [33]. Two of them were IFN and RBV-free (asunaprevir 200 mg was administered once or twice daily), one included triple therapy with RBV and two included study drugs plus PEG-IFN and RBV. The regimen was not successful in patients with genotype 1a due to high rate of virologic breakthrough and all patients were offered PEG-IFN but dual therapy may have a role in GT1b patientsIFN and RBV-free arms were associated with lower SVR12 ranging 65-78% depending upon the dose of ASV (200mg vs 400mg) compared to quadruple regimen (SVR12: 95% and 100%, respectively). Raised aminotransferase have been observed with a proportion of patients receiving ASV.

GT1 HCV infected patients with previous partial and null-response to PEG-IFN/RBV were also included in Matterhorn study [34]. IFN-free arms consisted of danoprevir boosted with ritonavir (DNV/RTV), mericitabine plus RBV while arms with PEG-IFN/RBV included DNV/RTV plus mericitabine (MCB) or MCB alone. All study drugs were administered for 24 weeks. Similarly to the previously mentioned study, HCV GT1a infected patients showed high relapse rate in the IFN-free arm and were excluded from further analysis. In both cohorts of previous partial and null-responders SVR12 were lower in IFN-free compared to PEG-IFN containing arms (39% and 55% vs. 86 and 84%). Additionally in the PEG-IFN arms there was a striking difference in SVR12 between HCV GT1b vs 1a patients (91-100% vs 30-75%) and importantly addition of MCB seemed to decrease the rate of relapses in HCV GT1a. All therapies were well tolerated, with 2% rates of discontinuation due to AE in triple and quadruple study arms.

A small number of HCV GT1 infected previous null-responders (n=29) was also included in the Electron study [19]. Patients received dual - sofosbuvir (SOF) plus RBV or triple – SOF/RBV/ledipasvir or SOF/RBV/GS-9669 therapies for 12 weeks. End of therapy (EOT) response rates reached 100% in all study arms. However SVR12 for dual therapy SOF/RBV declined to 10% (1/10) while it remained 100% (9/9) for triple regimen with ledipasvir. Sofosbuvir (400 mg once daily) in combination with RBV (1000-1200 mg) has also been tested in GT 2 or 3 HCV-infected patients who had failed prior interferon-based treatment in FUSION trial [35]. SOF/RBV were administered for 12 (n=103) or 16 weeks (n=98). Overall SVR12 was 50% for 12 weeks of therapy and 73% for 16-week therapy arm. While both study arms provided comparable efficacy in GT2 HCV-infection (SVR12: 86% vs 94%), in GT3 extension of therapy to 16 weeks improved SVR12 twofold (30% vs 62%), particularly in those with GT3 and liver cirrhosis (SVR12: 19% vs 61%).

Recently registered DAAs boceprevir and telaprevir combined with Peg-IFN/RBV yield improved but still unsatisfactory therapeutic results in this population. Current first generation protease inhibitor containing triple therapies are associated with fair 75-88% of SVR rates in relapsers, but partial and null responders to previous Peg-IFN/RBV therapy achieve significantly lower SVR rate (52-54% and 33% respectively) with these regimens [11, 12]. Resistance is detected in most patients who breakthrough or relapse. Therefore increasing number of CHC patients with first generation PI resistance can be predicated. may be foreseen. An important phase 2a [36] study has evaluated the efficacy and safety of daclatsvir and sofosbuvir with (n=21) or without RBV (n=20) in HCV GT 1-infected patients who failed prior treatment with TVR or BOC Therapy was administered for 24 weeks. A SVR12 was reported in 100% in the dual and 95% in the triple combination study arm. Importantly no discontinuations due to AEs were noted and neither baseline NS3 PI resistance variants nor use of RBV influenced response.

Recent data on all-oral anti-HCV therapies for previous non-responders to PEGIFN/ RBV are yet unsatisfactory. While it does not raise additional safety concerns SVR rates are suboptimal in null-responders. Lower virological response rates in this difficult-to-treat population are mainly due to viral breakthroughs and/or post-treatment relapses, which cannot so far be prevented by RBV or DAA alone. On the other hand 4-drug arms including PEG-IFNα seem to deliver excellent SVR rates (80-90%) in previous null responders. Since addition of PEG-IFNα can cause unacceptable side effects in difficult to treat populations with cirrhosis or post-transplant recurrent hepatitis C, interferon alpha containing quadruple regimens may not be practical for the majority of patients. It is possible that PEG-IFNλ (lambda) might prove safer and more effective in patients with cirrhosis but this remains unproven. [37]. It is important to underline that results of IFN-free therapies in previous nonresponders are preliminary, based on relatively small cohorts and apart from HCV GT subtype (1a vs 1b) do not explore yet the potential influence of other compounding factors on viral response (fibrosis, IL28 genotype etc.).

Conclusions

All-oral, IFN-free therapies are the natural step in evolution and future goal of anti- HCV therapies. Initial results of clinical studies conducted during last year give hope for “a pill for HCV” in selected CHC populations. Two main directions of upcoming anti-HCV strategies can already be envisaged. A simplification and shortening of therapies in treatment naïve patients but perhaps more complex, combination regimens may be required for previous non-responders to PEG-IFNα/RBV regimen.

The application of novel agents with a high safety profile and high barrier to resistance as well as multi/pangenotypic activity in treatment naïve CHC populations can lead to SVR rates above 90%. It is reasonable to speculate that in the next two years IFN-free therapies including two/three anti-HCV agents will be successful in the large majority of treatment naïve patients infected with HCV GT1, although questions remain for GT3. Priorities will be given to short duration (12-24 weeks) regimens with excellent safety profiles and allowing their implementation in primary health-care settings. The place of IFN sparing therapies or quadruple therapies remains undefined. The possible addition of PEG-IFN (including lambda) to novel DAAs and HTA could be crucial in preventing breakthroughs and/or relapses in some groups. In this setting ribavirin might continue to be a necessary component of such triple / quadruple therapies. Moreover, treating of previous non-responders, especially null-responders may require tailoring regimens for viral (HCV GT1 subtype) or host factors(IL28B genotype).

Of importance recent results of IFN-free therapies are often based on limited number of CHC patients and need to be verified in larger settings in various, heterogeneous populations. Results of these crucial, registration clinical trials are expected during coming 2-3 years. Moreover, IFN-free therapies have not been sufficiently evaluated in groups of the highest need for such regimens, included patients with decompensated liver cirrhosis and following liver transplantation. A pill for HCV, the Holy Grail of hepatology will certainly be reached but the clear path to it is yet to be found.

References

1. Lavanchy D. Evolving epidemiology of hepatitis C virus. Clin Microbiol Infect 2011; 17: 107-15.

2. Negro F, Alberti A. The global health burden of hepatitis C virus infection. Liver Int 2011; 31(Suppl2): 1-3.

3. Cornberg M, Razavi HA, Alberti A, et al. A systematic review of hepatitis C virus epidemiology in Europe, Canada and Israel. Liver Int 2011; 31(Suppl2): 30-60.

4. Thein HH, Yi Q, Dore GJ, Krahn MD. Estimation of stage-specific fibrosis progression rates in chronic hepatitis C virus infection: a meta-analysis and meta-regression. Hepatology 2008; 48: 418-31.

5. European Association for the Study of the Liver. EASL Clinical Practice Guidelines: management of hepatitis C virus infection. J Hepatol 2011; 55: 245-64.

6. Zeuzem S. Interferon-based therapy for chronic hepatitis C: current and future perspectives. Nat Clin Pract Gastroenterol Hepatol 2008; 5: 610-22.

7. Ge D, Fellay J, Thompson AJ, et al. Genetic variation in IL28B predicts hepatitis C treatment-induced viral clearance. Nature 2009; 461: 399-401.

8. Romero AI, Lagging M, Westin J, et al. Interferon (IFN)-gamma-inducible protein-10: association with histological results, viral kinetics, and outcome during treatment with pegylated IFN-alpha 2a and ribavirin for chronic hepatitis C virus infection. J Infect Dis 2006; 194: 895-903.

9. Poordad F, McCone J, Bacon BR, et al. Boceprevir for untreated chronic HCV genotype 1 infection. N Engl J Med 2011; 364: 1195-206.

10. Jacobson IM, McHutchison JG, Dusheiko G, et al. Telaprevir for previously untreated chronic hepatitis C virus infection. N Engl J Med 2011; 364: 2405-16.

11. Bacon BR, Gordon SC, Lawitz E, et al. Boceprevir for Previously Treated Chronic HCV Genotype 1 Infection. N Engl J Med 2011; 364: 1207-17.

12. Zeuzem S, Andreone P, Pol S, et al. Telaprevir for retreatment of HCV infection. N Engl J Med 2011; 364: 2417-28.

13. Hezode C, Dorival C, Zoulim F et al. Safety and efficacy of telaprevir or boceprevir in combination with peginterferon alfa/ribavirin, in 455 cirrhotic non responders. Week 16 analysis of the French early access program (ANRS CO20-CUPIC) in real-life setting Hepatology 2012; 56(S1): 217A.

14. Lamarre D, Anderson PC, Bailey M, et al. An NS3 protease inhibitor with antiviral effects in humans infected with hepatitis C virus. Nature 2003; 426: 186-9.

15. Parfieniuk A, Jaroszewicz J, Flisiak R. Specifically targeted antiviral therapy for hepatitis C virus. World J Gastroenterol 2007; 13: 5673-81.

16. Gane EJ, Roberts SK, Stedman CA, et al. Oral combination therapy with a nucleoside polymerase inhibitor (RG7128) and danoprevir for chronic hepatitis C genotype 1 infection (INFORM-1): a randomised, double-blind, placebo-controlled, dose-escalation trial. Lancet 2010; 376: 1467-75.

17. Clark V, Nelson DR. The role of ribavirin in direct acting antiviral drug regimens for chronic hepatitis C. Liver Int 2012; 32(Suppl 1): 103-7.

18. Osinusi A, Heytens L, Lee Y-J, et al. High efficacy of GS-7977 in combination with low or full dose ribavirin for 24 weeks in difficult to treat HCV infected genotype 1 patients: Interim analysis from the SPARE Trial. Hepatology 2012; 56: 1518A.

19. Gane E, Stedman CA, Hyland RH, et al. All-oral sofosbuvir-based 12-week regimens for the treatment of chronic HCV infection: the Electron study. J Hepatol 2013; 58 (S1): S6- 7.

20. Gane E, Lawitz E, Rodriguez-Torres M et al. Phase 3 randomized controlled trial of alloral treatment with sofosbuvir + ribavirin for 12 weeks compared to 24 weeks of PEG + ribavirin in treatment-naïve GT 2/3 HCV-infected patients (FISSION). J Hepatol 2013; 58 (S1): S3.

21. Lawitz E, Mangia A, Wyles D et al. Sofosbuvir for Previously Untreated Chronic Hepatitis C Infection. N Engl J Med. 2013 Apr 23. [Epub ahead of print]

22. Kowdley KV, Lawitz E, Poordad F, et al. Safety and efficacy of interferon-free regimens of ABT-450/r, ABT-267, ABT-333 +/- ribavirin in patients with chronic HCV GT1 infection: results from the Aviator study. J Hepatol 2013; 58 (S1): S2.

23. Zeuzem S, Soriano V, Asselah T, et al. Interferon (IFN)-free combination treatment with the HCV NS3/4A protease inhibitor BI 201335 and the non-nucleoside NS5B inhibitor BI 207127 ± ribavirin (R): Final results of SOUND-C2 and predictors of response. Hepatology 2012; 56(S1): 308A-9A.

24. Jacobson IM, Sulkowski MS, Gane EJ, et al. VX-222, telaprevir and ribavirin in treatment-naïve patients with genotype 1 chronic hepatitis C: Results of the ZENITH study interferon-free regimen. Hepatology 2012; 56(S1): 308A.

25. Sulkowski MS, Gardiner DF, Rodriguez-Torres M, et al. High rate of sustained virologic response with the all-oral combination of daclatasvir (NS5A inhibitor) plus sofosbuvir (nucleotide NS5B inhibitor), with or without ribavirin, in treatment-naive patients chronically infected with HCV GT 1, 2, or 3. Hepatology 2012; 56: 1516A-7A.

26. Gao M, Nettles RE, Belema M, et al. Chemical genetics strategy identifies an HCV NS5A inhibitor with a potent clinical effect. Nature 2010; 465: 96-100.

27. Everson GT, Sims KD, Rodriguez-Torres M, et al. An interferon-free, ribavirin-free 12- week regimen of daclatasvir (DCV), asunaprevir (ASV), and BMS-791325 yielded SVR4 of 94% in treatment-naïve patients with genotype (GT) 1 chronic hepatitis C virus (HCV) infection. Hepatology 2012; 56: 1517A-8A.

28. Flisiak R, Feinman SV, Jablkowski M, et al. The cyclophilin inhibitor Debio 025 combined with PEG IFNalpha2a significantly reduces viral load in treatment-naïve hepatitis C patients. Hepatology 2009; 49: 1460-8.

29. Flisiak R, Jaroszewicz J, Flisiak I, Łapiński T. Update on alisporivir in treatment of viral hepatitis C. Expert Opin Investig Drugs 2012; 21: 375-82.

30. Pawlotsky JM, Sarin SK, Foster GR, et al. Alisporivir plus Ribavirin achieves high rates of sustained HCV clearance (SVR24) as interferon (IFN)-free or IFN-add-on regimen in treatment-naive patients with HCV GT2 or GT3: Final results from VITAL-1 study. Hepatology 2012; 56(S1): 309A.

31. Griffel LH, Bao1 W, Orsenigo R, et al. Interferon (IFN)-free Alisporivir (DEB025) treatment in the VITAL-1 study has a more beneficial overall safety profile vs IFNcontaining treatment. Hepatology 2012; 56(S1): 578A-9A.

32. Roche B, Samuel D. Hepatitis C virus treatment pre- and post-liver transplantation. Liver Int 2012; 32 (Suppl 1): 120-8.

33. Lok AS, Gardiner DF, Hezode C, at al. Sustained virologic response in chronic HCV genotype (GT) 1-infected null responders with combination of daclatasvir (DCV; NS5A inhibitor) and asunaprevir (ASV; NS3 inhibitor) with or without peginterferon alfa- 2a/ribavirin (PEG/RBV). Hepatology 2012; 56(S1): 230A-1A.

34. Feld J, Jacobson IM, Jensen D, et al. Up to 100% SVR4 rates with ritonavir-boosted danoprevir (DNVr), mericitabine (MCB) and ribavirin (R) ± peginterferon alfa-2a (40KD) (P) in HCV genotype 1-infected partial and null responders: results from the MATTERHORN study. Hepatology 2012; 56(S1): 231A-2A.

35. Nelson D, Feld J, Kowdley K. et al. All oral therapy with sofosbuvir + ribavirin for 12 or 16 weeks in treatment experienced genotype 2/3 HCV-infected patients: Results of the Phase 3 FUSION Trial. J Hepatol 2013; 58 (S1): S3-4.

36. Sulkowski MS, Gardiner DF, Rodriguez-Torres M et al. Sustained virologic response with daclatasvir plus sofosbuvir ± ribavirin (RBV) in chronic HCV genotype (GT) 1- infected patients who previously failed telaprevir (TVR) or boceprevir (BOC). J Hepatol 2013; 58 (S1): S570-80.

37. Muir AJ, Hillson JL, Gray TE, et al. Peginterferon Lambda–1a (lambda) compared to peginterferon alfa–2a (Alfa) in treatment–naïve patients with HCV genotypes (GT) 1 or 4: SVR24 results from EMERGE phase 2b. Hepatology 2012; 56(S1): 299A-300A.

April 13, 2013

Boehringer Ingelheim to Announce Pivotal Phase 3 Hepatitis C Data at the International Liver Congress

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For U.S. Media Only

Ridgefield, CT, April 8, 2013 – Boehringer Ingelheim today announced that data from its pivotal STARTVerso™ 1 Phase 3 hepatitis C clinical trial have been accepted for oral presentation as a late-breaker at the International Liver Congress™ 2013: 48th Annual Meeting of the European Association for the Study of the Liver (EASL), taking place from April 24-28 in Amsterdam, The Netherlands.

The STARTVerso™ 1 trial evaluated faldaprevir (BI 201335), an investigational oral protease inhibitor specifically designed to target and inhibit viral replication in the liver, in combination with pegylated interferon and ribavirin (PegIFN/RBV). The study was conducted in treatment-naïve patients with genotype-1 infection, the most common and one of the most challenging types of hepatitis C to cure.

Further sub-analyses from Boehringer Ingelheim’s interferon-free Phase 2b SOUND-C2 study will also be presented at the Congress. The SOUND-C2 trial evaluated the interferon-free combination of faldaprevir and BI 207127, an investigational non-nucleoside NS5B polymerase inhibitor, plus ribavirin.

Boehringer Ingelheim is developing faldaprevir as a core component of both interferon-based and interferon-free hepatitis C treatment regimens. Through robust science, Boehringer Ingelheim’s goal is to find answers to the ongoing challenges faced by a diverse population of patients with hepatitis C.

The STARTVerso™ 1 abstract can be accessed through the Congress website beginning on April 23 and the SOUND-C2 abstracts can be accessed today.

 

Oral Presentation
Study Lead Author Presentation Details
STARTVerso™ 1
P. Ferenci
Embargoed until April 23 at
12:00PM CET (6:00AM ET)

Poster Presentations
Title Lead Author Presentation Details
An analysis of response rates
by fibrosis stage in patients
treated with faldaprevir,
BI 207127 and ribavirin in the
SOUND-C2 study

S. Zeuzem
Abstract number 1227

Date: Sat. April 27
Time: 9:00 AM - 6:00 PM.
CET (3:00 AM - 12:00 PM ET)

Poster Session: P03-08d,
Category 08d: Viral Hepatitis C:
Clinical (new compounds,
resistance)

ITPA gene variants predict
haemolytic ribavirin induced
anaemia in patients treated
with the interferon-free
regimen of faldaprevir,
BI 207127 and ribavirin in
SOUND-C2

T. Asselah
Abstract number 1186

Date: Sat. April 27
Time: 9:00 AM - 6:00 PM
CET (3:00 AM - 12:00 PM ET)

Poster Session: P03-08d,
Category 08d: Viral Hepatitis C:
Clinical (new compounds,
resistance)
The relationship between
sustained virological response
and plasma concentrations of
faldaprevir or BI 207127 in HCV
GT1-infected patients in
SOUND-C2
S. Olson Abstract number 1212

Date: Sat. April 27
Time: 9:00 AM - 6:00 PM
CET (3:00 AM - 12:00 PM ET)

Poster Session: P03-08d,
Category 08d: Viral Hepatitis C:
Clinical (new compounds,
resistance)

About Boehringer Ingelheim in Hepatitis C Virus (HCV)
In partnership with the scientific community, our clinical trial program is rigorously designed to find answers to the challenges that HCV patients face, including those who are the most difficult to treat. Our pivotal HCV clinical trials for faldaprevir and BI 207127 are comprised of two multi-trial programs, STARTVerso™ and HCVerso™.

Faldaprevir, also known as BI 201335, is an investigational, oral protease inhibitor that is specifically designed to target viral replication in the liver. STARTVerso™ 1 is the first of an ongoing multi-study Phase 3 trial program that is evaluating faldaprevir combined with PegIFN/RBV. Three additional STARTVerso™ trials in treatment-naïve, treatment-experienced and HIV co-infected patients with chronic genotype-1 HCV are near clinical completion. BI 207127 is an investigational NS5B non-nucleoside polymerase inhibitor that has shown the potential to eliminate interferon from HCV treatment when combined in a regimen with faldaprevir and RBV. Phase 2 trials of this interferon-free regimen have been completed and Phase 3 HCVerso™ trials are now underway. As part of our long-term commitment to HCV, the company is exploring other combinations of investigational HCV compounds that work in different ways. The recent collaboration of Boehringer Ingelheim with Presidio Pharmaceuticals, Inc. for a Phase 2 clinical study investigating an interferon-free, all-oral combination is part of the company’s continued commitment to discover and develop innovative options for the treatment of HCV.

Faldaprevir and BI 207127 are investigational compounds and not approved by the FDA. Their safety and efficacy have not been established.

Hepatitis C is a blood-born infectious disease and a leading cause of chronic liver disease, transplant and failure that affects as many as 150 million people globally. In the United States, an estimated 4.1 million Americans have been infected with HCV, of which approximately 3.2 million have chronic HCV infection. Since 1999 there has been a significant increase in deaths due to chronic HCV, accounting for 15,000 deaths in the United States in 2007.

About Boehringer Ingelheim Pharmaceuticals, Inc.
Boehringer Ingelheim Pharmaceuticals, Inc., based in Ridgefield, CT, is the largest U.S. subsidiary of Boehringer Ingelheim Corporation (Ridgefield, CT) and a member of the Boehringer Ingelheim group of companies.

The Boehringer Ingelheim group is one of the world’s 20 leading pharmaceutical companies. Headquartered in Ingelheim, Germany, it operates globally with 145 affiliates and more than 42,000 employees. Since it was founded in 1885, the family-owned company has been committed to researching, developing, manufacturing and marketing novel products of high therapeutic value for human and veterinary medicine.

As a central element of its culture, Boehringer Ingelheim pledges to act socially responsible. Involvement in social projects, caring for employees and their families, and providing equal opportunities for all employees form the foundation of the global operations. Mutual cooperation and respect as well as environmental protection and sustainability are intrinsic factors in all of Boehringer Ingelheim’s endeavors.

For more information, please visit http://us.boehringer-ingelheim.com and follow us on Twitter at http://twitter.com/boehringerus.

Source

October 1, 2012

New Hepatitis C Data from Boehringer Ingelheim to be Presented at AASLD Annual Meeting

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October 1, 2012

Ridgefield, CT, October 1, 2012 – New data from Boehringer Ingelheim’s hepatitis C virus (HCV) clinical development program, HCVersoTM, have been accepted for presentation at the 63rd Annual Meeting of the American Association for the Study of Liver Diseases (AASLD), taking place November 9 – 13 in Boston, MA.

Results from all arms of SOUND-C2, a Phase 2b trial evaluating an investigational interferon-free HCV treatment, along with other analyses of the trial program will be presented at the meeting. The data will include results of a comparison of SVR4, 12 and 24 from the SOUND-C2 study, and virologic and pharmacokinetic evaluations. SVR is defined as sustained viral response after treatment ends, and is considered viral cure after 24 weeks. Collectively, these data underscore the company’s focus on finding answers to the challenges faced by HCV patients and treaters.

“We are looking forward to sharing the full results of our Phase 2 interferon-free trial, and other HCVersoTM clinical trial data, at the upcoming AASLD meeting in November,” said Peter Piliero, M.D., Vice President, Clinical Development and Medical Affairs, Boehringer Ingelheim Pharmaceuticals, Inc. “Through a robust HCV development program, BI is striving to deliver new solutions with real-life patient needs at the core.”

Boehringer Ingelheim’s abstracts can be accessed through the AASLD website today, www.aasld.org.

 

Oral Presentations

Title Lead Author Presentation Details

Efficacy and safety of the interferon (IFN)-free combination of BI 201335 + BI 207127 ± ribavirin (RBV) in

treatment-naïve patients with HCV genotype (GT) 1 infection and compensated liver cirrhosis: Results from the SOUND-C2 study
V. Soriano

ID# 84

Parallel Session 12: HCV New Agents: Hard to Treat Patients

Date: Sun, Nov. 11

Time: 6:00 – 6:15 PM ET
Location: Hynes: Ballroom B & C

Interferon (IFN)-free combination treatment with the HCV NS3/4A protease inhibitor BI 201335 and the nonnucleoside NS5B inhibitor
BI 207127 ± ribavirin (R): Final results of SOUND-C2 and predictors of response
S. Zeuzem

ID# 232

Parallel Session 34: HCV Clinical Trials: New Agents and Interferon-free

Date: Tues, Nov. 13

Time: 11:30 – 11:45 AM ET
Location: Auditorium

Poster Presentations

Title Lead Author Presentation Details
SOUND-C2: SVR4, 12, and 24 concordance in genotype (GT) 1 HCV patients receiving interferon (IFN)-free treatment with the HCV NS3/4A protease inhibitor BI 201335 and the NS5B polymerase inhibitor BI 207127 S. Zeuzem

ID# 778

Session: Clinical HCV 1

Date: Sun, Nov. 11
Time: 8:00 AM – 5:30 PM ET
Location: Poster Hall

HCV NS3 and NS5B variants that emerged in patients with virologic breakthrough and relapse from the Phase II SOUND-C2 trial investigating interferon-free BI 201335 and
BI 207127 therapy ± ribavirin
A. Côté-Martin ID# 788

Session: Clinical HCV 1

Date: Sun, Nov. 11
Time: 8:00 AM – 5:30 PM ET
Location: Poster Hall
Pharmacokinetics of the interferon-free combination of BI 207127 and
BI 201335 plus ribavirin in treatment naïve patients with genotype (GT) 1 HCV: Results from the SOUND-C1 study
J. Sabo ID# 777

Session: Clinical HCV 1

Date: Sun, Nov. 11
Time: 8:00 AM – 5:30 PM ET
Location: Poster Hall

Analysis of baseline polymorphisms and persistence of emergent variants from Phase Ib and II trials evaluating the HCV NS3 protease inhibitor
BI 201335
K. Berger ID# 785

Session: Clinical HCV 1

Date: Sun, Nov. 11
Time: 8:00 AM – 5:30 PM ET
Location: Poster Hall
Addition of the NS5B polymerase inhibitor BI 207127 to pegylated interferon and ribavirin (PegIFN/RBV) for 4 weeks followed by PegIFN/RBV for 44 weeks improves SVR24 rates in treatment-naïve patients with HCV genotype (GT) 1 and is well tolerated A. Lohse ID# 767

Session: Clinical HCV 1

Date: Sun, Nov. 11
Time: 8:00 AM – 5:30 PM ET
Location: Poster Hall

About Boehringer Ingelheim in Hepatitis C Virus (HCV)
In partnership with the scientific community, our clinical trial program, HCVersoTM, is rigorously designed to find answers to the challenges that HCV patients face, including those who are the most difficult to treat.

Faldaprevir, also known as BI 201335, is an investigational oral HCV NS3/4A protease inhibitor that may improve cure rates as compared to PegIFN/RBV therapy alone, and has completed clinical trials through Phase 2b (SILEN-C studies). The ongoing multi-study Phase 3 STARTVersoTM trial program, evaluating faldaprevir combined with PegIFN/RBV in treatment-naïve, treatment-experienced and HIV co-infected patients with chronic genotype-1 HCV, is near clinical completion. BI 207127 is an NS5B non-nucleoside polymerase inhibitor that has shown the potential to eliminate interferon from HCV treatment when combined with faldaprevir and RBV. Phase 2 trials of this interferon-free regimen have been completed and Phase 3 HCVersoTM trials investigating this regimen will commence later this year.

HCV is an infectious disease of the liver and is a leading cause of chronic liver disease, transplant and failure that affects as many as 150 million people globally. In the United States, an estimated 4.1 million Americans have been infected with HCV, of which approximately 3.2 million have chronic HCV infection. Chronic HCV leads to an estimated 8,000 to 10,000 deaths annually in the United States.

About Boehringer Ingelheim Pharmaceuticals, Inc.
Boehringer Ingelheim Pharmaceuticals, Inc., based in Ridgefield, CT, is the largest U.S. subsidiary of Boehringer Ingelheim Corporation (Ridgefield, CT) and a member of the Boehringer Ingelheim group of companies.

The Boehringer Ingelheim group is one of the world’s 20 leading pharmaceutical companies. Headquartered in Ingelheim, Germany, it operates globally with 145 affiliates and more than 42,000 employees. Since it was founded in 1885, the family-owned company has been committed to researching, developing, manufacturing and marketing novel products of high therapeutic value for human and veterinary medicine.

As a central element of its culture, Boehringer Ingelheim pledges to act socially responsible. Involvement in social projects, caring for employees and their families, and providing equal opportunities for all employees form the foundation of the global operations. Mutual cooperation and respect as well as environmental protection and sustainability are intrinsic factors in all of Boehringer Ingelheim’s endeavors.

For more information, please visit http://us.boehringer-ingelheim.com and follow us on Twitter at http://twitter.com/boehringerus.

Source

May 7, 2012

May is National Hepatitis Awareness Month – Learn about Boehringer Ingelheim’s commitment to the HepC community

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Boehringer Ingelheim Pharmaceuticals, Inc.

Susan Holz
Public Affairs & Communications
Phone (203) 798-4265

usnews@boehringeringelheim.com

900 Ridgebury Rd./P.O. Box 368
Ridgefield, CT 06877-0368

http://us.boehringeringelheim.com

For U.S. Media

Fact Sheet for Media

Research & Development in Hepatitis C Virus

Hepatitis C virus (HCV) is an infectious disease of the liver that, therapeutically, is underserved and a leading cause of chronic liver disease and liver transplant.

Boehringer Ingelheim Research Vision

Despite recent treatment progress, the burden of HCV on patients and physicians remains. Boehringer Ingelheim recognizes the need for an HCV cure that addresses more of the challenges that these patients face.

Boehringer Ingelheim strives to achieve a far reaching and inclusive cure for more HCV patients, including those who are the most difficult to treat. In partnership with the scientific community, our clinical trial program, HCVersoTM, is rigorously designed to find answers to challenges that HCV patients face. The program extends to diverse HCV patient populations across the world, including HIV co-infected patients and those who have previously failed treatment. Our goal is to improve cure rates, shorten treatment and eliminate interferon in HCV treatment for as many patients as possible.

History of Treatment

Pegylated interferon and ribavirin (PegIFN/RBV) have historically been the standard-of-care for treatment of HCV, but are only effective in about half of patients with chronic HCV infection.

Interferon is the backbone of current HCV treatment regimens and is challenging for a number of patients due to contraindications of use, side effects, adherence and treatment duration. Currently available protease inhibitors are approved for use in combination with PegIFN/RBV.

Treatment success is primarily determined by viral genotype, the most common of which are types 1, 2 and 3. HCV genotype-1 patients are the most difficult to treat and often require the longest course of therapy. Genotype-2 and-3 patients typically are more easily treated with only PegIFN/RBV.

The scientists at Boehringer Ingelheim have a long-standing commitment to virology including innovations in HIV/AIDS, and have been focused on HCV for many years. In 2003, these researchers were the first to publish results describing the clinical application of a novel agent that directly targets the HCV protease. This early work spawned today’s significant research effort into new ways of directly inhibiting the virus's ability to replicate, which has led to the Company’s current portfolio of investigational direct-acting HCV antivirals.

Boehringer Ingelheim maintains a Virology Center of Excellence, dedicated to research and drug discovery for viral diseases for which there is no vaccine or where current therapy is lacking.

Across the industry, HCV research is directed towards advancing inhibitors that target essential viral enzymes, such as the HCV serine protease and RNA polymerase. These approaches may lead to the development of novel classes of direct acting antivirals (DAAs), further enhancing the standard-of-care for HCV patients.

Boehringer Ingelheim HCV Portfolio Key Research Areas

From within our HCV pipeline, we are advancing two investigational DAAs: BI 201335, a protease inhibitor that has shown the potential to improve cure rates and shorten treatment duration compared to PegIFN/RBV therapy, as well as BI 207127, a polymerase inhibitor that has the potential to eliminate interferon from HCV treatment when combined with BI 201335 and RBV.

BI 201335

BI 201335 is an investigational, once-daily oral HCV NS3/4A protease inhibitor discovered from Boehringer Ingelheim’s own research and development. A multi-study, Phase 3 clinical trial program is currently underway to evaluate BI 201335 combined with PegIFN/RBV in both treatment-naive and -experienced patients with chronic genotype-1 HCV, as well as HCV/HIV co-infected patients. The trial program is being performed at sites across the world, including Europe, the United States, Canada and Asia Pacific.

BI 201335 binds to a shallow active site on an enzyme critical in HCV replication. The shallow nature of the enzyme active site makes it a challenge to design a molecule with the correct properties to effectively inhibit the enzyme. BI 201335 is optimized to target genotype-1 HCV, the most difficult type to effectively treat with current therapy.

BI 207127

BI 207127 is an investigational NS5B polymerase inhibitor that is currently being evaluated in Phase 2 clinical trials. The HCV NS5B is believed to be the central enzyme responsible for HCV replication. BI 207127 works by blocking a specific step in the viral lifecycle, targeting the polymerase enzyme, and consequently preventing HCV from replicating. BI 207127 is being evaluated as part of combination therapy regimens including BI 201335.

BI 201335 + BI 207127 Combination Therapy without Interferon

A Phase 2b trial (SOUND-C2) evaluating dual DAA treatment, with the combination of BI 207127 and BI 201335 in interferon-free regimens, both with and without ribavirin, in treatment-naïve HCV patients is currently under way. Data from a pre-specified interim analysis of SOUND-C2 show the potential for BI’s DAA compounds in combination with RBV, without interferon.

Planning for Phase 3 interferon-free clinical trials is underway.

FDA Fast Track Designation

The U.S. Food and Drug Administration (FDA) has granted Fast Track designation for the development programs for BI 201335 in combination with PegIFN/RBV, and the development program for the interferon-free combination of BI 201335 plus BI 207127. Fast Track is a process designed to facilitate the development and expedite the review of drugs to treat serious diseases and fill an unmet medical need. The purpose is to get important new drugs to patients earlier.

About Boehringer Ingelheim Pharmaceuticals, Inc.

Boehringer Ingelheim Pharmaceuticals, Inc., based in Ridgefield, CT, is the largest U.S. subsidiary of Boehringer Ingelheim Corporation (Ridgefield, CT) and a member of the Boehringer Ingelheim group of companies.

The Boehringer Ingelheim group is one of the world’s 20 leading pharmaceutical companies. Headquartered in Ingelheim, Germany, it operates globally with 145 affiliates and more than 42,000 employees. Since it was founded in 1885, the family-owned company has been committed to researching, developing, manufacturing and marketing novel products of high therapeutic value for human and veterinary medicine.

As a central element of its culture, Boehringer Ingelheim pledges to act socially responsible. Involvement in social projects, caring for employees and their families, and providing equal opportunities for all employees form the foundation of the global operations. Mutual cooperation and respect as well as environmental protection and sustainability are intrinsic factors in all of Boehringer Ingelheim’s endeavors.

For more information, please visit http://us.boehringer-ingelheim.com and follow us on Twitter at http://twitter.com/boehringerus.

###

Contact:
Susan Holz
Boehringer Ingelheim Pharmaceuticals, Inc.
(203) 798-4265
usnews@boehringer-ingelheim.com

Source

April 19, 2012

EASL 2012: Viral cure achieved without interferon in up to 82% of hepatitis C patients (GT-1a & -1b*)

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19 April 2012

For media outside of the U.S.A. only

Barcelona, Spain and Ingelheim, Germany [19 April 2012] – New data from the largest Phase II interferon-free trial to date, reveal that up to 82 percent of hepatitis C patients achieved a viral cure after just 28 weeks of treatment. These results were shown in specific patients infected with two prevalent types of hepatitis C (HCV) (genotypes-1a CC and -1b), following treatment with Boehringer Ingelheim’s investigational direct-acting antiviral compounds. 1

These findings were demonstrated in the largest Phase II interferon-free trial to date, with a total of 362 patients, including those patients with advanced liver disease. The results, due to be presented on Saturday 21st April at The International Liver Congress TM, the 47th Annual Meeting of the European Association of the Study of the Liver (EASL) in Barcelona, supplement the abstract findings highlighted in the official EASL press office activities today. All patients in the study received treatment with the interferon-free combination of two investigational compounds, the once daily protease inhibitor BI 201335 and the polymerase inhibitor BI 207127, both with and without ribavirin and with varying treatment durations. 1

Of all the patients studied, including those with the hardest to cure type of hepatitis C (genotype-1a non-CC), 68 percent achieved a viral cure after 28 weeks of treatment. Most significantly, up to 82 percent of specific patients with one of the most common HCV types found across Europe and Asia (genotypes-1a CC and -1b), achieved viral cure after 28 weeks of treatment. The findings are unprecedented in this patient population and indicate the future potential of eliminating the need for interferon which still has to be administered with all current treatment options.

"Eliminating interferon from HCV treatment is an urgent need. Releasing patients from the side effects and the lengthy treatment commitment seen with interferon would be a huge advance," said Stefan Zeuzem, M.D., Chief of the Department of Medicine and Professor of Medicine at the Johann Wolfgang Goethe University Hospital in Frankfurt, Germany and lead investigator of the study. "Such treatments would minimise the impact on patients' lives, and may encourage them to start and stay on treatment, to achieve the ultimate goal of a virologic cure."

The side effects of interferon can be severe and include heart failure, leukopenia (a decrease of white blood cells), sepsis and vision loss. 2, 3

The Boehringer Ingelheim interferon-free treatment combination was generally well tolerated across the five treatment arms of the SOUND-C2 trial. Planning of the Phase III clinical trial programme is underway. This research will further investigate the efficacy and safety of the interferon-free combination therapy BI 201335 and BI 207127 in genotype-1 patients.

*HCV has at least six distinct genotypes, which are different sequences of the virus, identified by a number. Genotype-1 (GT1) patients are currently recognised as the most difficult to cure. 4 In addition to genotypes, there are over 50 subtypes within those genotypes, which are identified by a lowercase letter. An individual’s own genetic make-up is another factor that can determine the success of treatment, as represented by uppercase letters (for example CC, non-CC or CT).

Early viral cure is vital in HCV to minimise long term liver damage. 3,5 Liver damage caused by HCV is the leading cause of chronic liver disease, failure, and ultimately liver transplant. 5

"We very much look forward to the final results from this study, that we hope will be a significant step towards an interferon-free future for patients with HCV,"said Professor Klaus Dugi, Corporate Senior Vice President Medicine at Boehringer Ingelheim. "Our commitment to the millions of people around the world who are chronically infected with HCV is to deliver simpler and better tolerated solutions to treatment, including for those with traditionally difficult to cure virus types."

Other Boehringer Ingelheim data being presented at the meeting include:

  • SOUND-C2 interim analysis: The efficacy and safety of the interferon-free combination of BI 201335 and BI 207127 in genotype-1 HCV patients with cirrhosis (Late breaking poster# 1420, Soriano, V et al, Thurs 19 April, 12:00-1:30 pm CEST)
  • Characterisation of HCV NS3 variants that emerged during virologic breakthrough and relapse from BI 201335 Phase II SILEN-C2 study in pegylated interferon plus ribavirin treatment-experienced patients (Poster#1185, Kukolj, G et al, Sat 21 April, 12.30 – 1.30pm CEST)
  • Impact of early response definitions on duration and outcome of treatment with BI 201335 plus pegylated interferon plus ribavirin (Poster# 1209, Sulkowski, M et al, Sat 21 April, 12.30 – 1.30pm CEST)
  • Preclinical characterisation of the hepatitis C virus NS5B polymerase non-nucleoside inhibitor BI 207127 (Poster# 822, Beaulieu, P.L. et al, Fri 20 April, 12.30 – 2.00pm CEST)

NOTES TO EDITORS

Results of this open-label, randomised, Phase IIb study were presented as an oral presentation of the abstract titled "SVR4 and SVR12 with an interferon-free regimen of BI 201335 and BI 207127, +/- ribavirin, in treatment-naïve patients with chronic genotype-1 HCV infection: Interim results of SOUND-C2", by Professor Stefan Zeuzem. In the Phase IIb study, 362 treatment-naive GT1 HCV patients were randomised into five interferon-free treatment groups, each with 120mg BI 201335 once daily but with different dosing and treatment durations of BI 207127 as follows:

  • BI 201335 120mg (once-daily) QD + BI 207127 600mg (three times daily) TID + RBV for 16 weeks;
  • BI 201335 120mg QD + BI 207127 600mg TID + RBV for 28 weeks;
  • BI 201335 120mg QD + BI 207127 600mg TID + RBV for 40 weeks;
  • BI 201335 120mg QD + BI 207127 600mg BID (twice daily) + RBV for 28 weeks;
  • BI 201335 120mg QD + BI 207127 600mg TID without RBV for 28 weeks.

About Hepatitis C Virus (HCV)
Hepatitis C is a viral disease caused by the hepatitis C virus (HCV) that mainly affects the liver. It is a leading cause of chronic liver disease and liver transplant. The number of individuals chronically infected with HCV globally has been estimated at 170 million, with 3–4 million new infections occurring each year. Only about 20–45 percent of patients clear the virus in the acute phase. Of the remaining chronically infected patients, 20 percent will develop cirrhosis within 20 years on average. The mortality rate after cirrhosis has developed is 2-5 percent per year. End-stage liver disease due to HCV infection currently represents the major cause for liver transplantation in the Western world.

About Boehringer Ingelheim in Virology
Boehringer Ingelheim has more than 7,500 scientists working in cross disciplinary teams within our global R&D network in six large therapeutic areas, including virology. In addition to the ongoing research programme for HCV, Boehringer Ingelheim has a long-standing history in virology drug development, including discovery of the first HCV protease inhibitor and compounds for the treatment of HIV (VIRAMUNE® (nevirapine) tablets/oral solution, the first approved HIV non-nucleoside reverse transcriptase inhibitor (NNRTI) and Aptivus®, the first approved second generation HIV protease inhibitor). The company has a well established research centre in Laval, Canada, dedicated to virology research since the early 1990’s, and is committed to developing new therapies for virological diseases with a high unmet medical need.

About Boehringer Ingelheim in Hepatitis C Virus (HCV)
Boehringer Ingelheim has a long-standing commitment to virology, including developing innovative therapies for HIV/AIDS and HCV. Through pioneering science, Boehringer Ingelheim strives to spread the cure in HCV and ease the burden of the disease. Boehringer Ingelheim’s clinical research team is working with HCV experts from all over the world to extend a cure to more patients suffering from the disease, including those who are toughest to cure. Boehringer Ingelheim is investigating BI 201335 and BI 207127 through HCVerso TM, our rigorous clinical trial program that is designed to find answers to the challenges that HCV patients face.

BI 201335, an investigational oral HCV NS3/4A next generation protease inhibitor that has the potential to improve cure rates as compared to PegIFN/RBV therapy alone, has completed clinical trials through Phase IIb (SILEN-C studies). A multi-study Phase III trial programme currently is underway to evaluate BI 201335 combined with PegIFN/RBV in treatment-naïve, treatment-experienced and HIV co-infected patients with chronic genotype-1 HCV.

BI 207127, an investigational NS5B RNA-dependent polymerase inhibitor that has the potential to eliminate interferon from HCV treatment when combined with BI 201335 and RBV, is currently being investigated in Phase II trials in interferon-sparing regimens.

About Boehringer Ingelheim
The Boehringer Ingelheim group is one of the world’s 20 leading pharmaceutical companies. Headquartered in Ingelheim, Germany, it operates globally with 145 affiliates and more than 42,000 employees. Since it was founded in 1885, the family-owned company has been committed to researching, developing, manufacturing and marketing novel products of high therapeutic value for human and veterinary medicine.

As a central element of its culture, Boehringer Ingelheim pledges to act socially responsible. Equal opportunities for all employees and involvement in social projects, such as providing VIRAMUNE® free of charge in developing countries, form the foundation of the global operations. Mutual cooperation and respect, as well as environmental protection and sustainability are intrinsic factors in all of Boehringer Ingelheim’s endeavors.

In 2010, Boehringer Ingelheim posted net sales of about 12.6 billion euro while spending almost 24 percent of net sales in its largest business segment Prescription Medicines on research and development.

Updated information on the corporation’s annual results in 2011 will be available on April 24th, 2012.

For more information please visit www.twitter.com/boehringer

Backgrounder:

References
1Zeuzem S et al. SVR4 and SVR12 with an interferon-free regimen of BI 201335 and BI 207127 +/- ribavirin, in treatment-naive patients with chronic genotype-1 HCV infection. Abstract#101 presented at the International Liver CongressTM (ILC), 18 -22 April 2012
2National Institutes of Health; US Department of Health and Human Services. Chronic Hepatitis C: Current Disease Management. Bethesda, MD: National Institutes of Health; 2010. NIH Publication 10-4230 4.
3World Health Organisation. Hepatitis C. 2002 http://www.who.int/csr/disease/hepatitis/Hepc.pdf [Last accessed on 16/04/12]
4Ghany, M. et al. An Update on Treatment of Genotype 1 Chronic Hepatitis C Virus Infection: 2011 Practice Guidelines by the American Association for the Study of Liver Diseases. Hepatology, August 2011.
5About.com. 2009. What Is a Sustained Virologic Response or "SVR"? http://hepatitis.about.com/od/treatment/f/SVR.htm [Last accessed on 16/04/12]

A measure of Sustained Viral Response (SVR) is considered viral cure. SVR has recently been defined by the FDA as undetectable hepatitis C virus 12 weeks after treatment has been completed (SVR12).

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EASL 2012: Phase 2b Study of Boehringer Ingelheim’s Interferon-Free Hepatitis C Treatment Shows Undetectable Virus in HCV Genotype-1 Patients 12 Weeks After Treatment Ended (SVR12)

BI_Logo

April 19, 2012

Barcelona, Spain and Ridgefield, CT, April 19, 2012 – New data from a pre-specified interim analysis of the Phase 2b SOUND-C2 study show that 68 percent of genotype-1 (GT1) hepatitis C virus (HCV) patients achieved sustained viral response 12 weeks after the end of treatment (SVR12) with Boehringer Ingelheim’s investigational direct-acting antiviral compounds – the protease inhibitor BI 201335 and polymerase inhibitor BI 207127 - plus ribavirin (RBV), without interferon. SVR12 has been highly correlated with SVR24, which is a recognized indicator of viral cure. These patients received combination therapy with BI 201335 once-daily (QD), BI 207127 twice-daily (BID) and RBV for 28 weeks. The SOUND-C2 study investigated interferon-free treatment in HCV GT1 patients, the most difficult genotype to treat, regardless of IL-28B status. Among study participants, 10 percent had compensated liver cirrhosis.

"Eliminating interferon from HCV treatment is an urgent need," said Stefan Zeuzem, M.D., Chief of the Department of Medicine and Professor of Medicine at the Johann Wolfgang Goethe University Hospital in Frankfurt, Germany, and lead investigator of the study. "The antiviral activity of BI's all oral direct-acting antiviral compounds in the SOUND-C2 study demonstrates the potential for an interferon-free cure for HCV."

Furthermore, a separate arm of the SOUND-C2 study showed that after 16 weeks of interferon-free treatment, SVR12 was achieved in 59 percent of patients. Investigators presented relapse data broken out by genotype and IL-28B status. The rate of relapse in the treatment arms ranged between 2 and 10 percent for GT1b and GT1a-CC patients. There was a higher rate of relapse in GT1a non-CC patients, with relapse ranging from 0 to 40 percent. The full results from this interim analysis of SOUND-C2 are being presented on Saturday, April 21, at the International Liver Congress, the 47th Annual Meeting of the European Association of the Study of the Liver (EASL 2012) in Barcelona, Spain (Abstract #101). These results supplement the abstract findings highlighted today during an official EASL press conference.

"We are looking forward to the final results from this study, that we hope will be a significant step towards an interferon-free future for patients with HCV," said Peter Piliero, M.D., Vice President, Clinical Development and Medical Affairs, Boehringer Ingelheim Pharmaceuticals, Inc. "We are committed to the millions of people around the world who are chronically infected with HCV. Through our clinical trial program HCVerso™, we are working with experts worldwide to ask the difficult questions that remain in HCV to find answers to the challenges that these patients face."

Planning of the interferon-free Phase 3 clinical trial program is underway.

SOUND-C2 Pre-Specified Interim Analysis

In this open-label Phase 2b study, 362 treatment-naïve GT1 HCV patients were randomized into five interferon-free treatment groups, each with 120 mg BI 201335 QD, but with different dosing of BI 207127 and treatment durations. The randomization was stratified by HCV genotype (1a or 1b) and patient IL-28B genotype, with 41 percent of patients being GT1a and 75 percent being IL-28B CT or TT.

SOUND-C2 Trial Design and Interim Results

BI 201335 BI 207127 RBV Treatment Duration SVR12
n (%)
A
N=81
120 mg QD 600 mg TID Y 16 wks 48 (59%)
B
N=80
120 mg QD
600 mg TID Y 28 wks 49 (61%)
C
N=77
120 mg QD 600 mg TID Y 40 wks N/A*
D
N=78
120 mg QD 600 mg TID Y 28 wks 53 (68%)
E
N=46
120 mg QD 600 mg TID N 28 wks 18 (39%)

*SVR12 data for the 40 week arm of SOUND-C2 is not available due to treatment duration

Investigators reported breakthrough broken out by genotype and IL-28B status. In GT1b and GT1a-CC patients, breakthrough occurred in 7 percent of patients in Arm A, 11 percent of patients in Arm B, 19 percent of patients in Arm C, 9 percent of patients in Arm D, and 29 percent of patients in Arm E (no RBV arm). In GT1a non-CC patients, breakthrough occurred in 40 percent of patients in Arm A, 50 percent of patients in Arm B, 25 percent of patients in Arm C, 64 percent of patients in Arm D, and 91 percent of patients in Arm E (no RBV arm).

In this study, the most common adverse events (AEs) were skin (photosensitivity, rash), gastrointestinal (GI) disorders (vomiting, diarrhea), and jaundice due to unconjugated hyperbilirubinemia. Treatment discontinuations due to AEs correlated with increased dosing frequency and treatment duration, with discontinuations ranging from 4.9 percent in Arm A (16 weeks) to 24.7 percent in Arm C (40 week arm). In the arm with BID dosing of BI 207127 (Arm D), discontinuations were 7.7 percent. BID dosing of BI 207127 is planned for Phase 3 investigation.

Other BI data being presented at the EASL Annual Meeting include:

Poster Presentations

Title Lead Author Presentation Details
SOUND-C2 interim analysis: The efficacy and safety of the interferon-free combination of
BI 201335 and BI 207127 in genotype-1 HCV patients with cirrhosis
V. Soriano Late Breaker Poster# 1420

Date: Thur, April 19
Time: 12:00 - 1:30 p.m.
CEST/ 6:00 - 7:30 a.m. EDT
Characterization of HCV NS3 variants that emerged during virologic breakthrough and relapse from BI 201335 Phase 2 SILEN-C2 study in pegylated-interferon plus ribavirin treatment-experienced patients

G. Kukolj Poster# 1185

Date: Sat, April 21
Time: 12:30 - 1:30 p.m.
CEST/ 6:30 - 7:30 a.m. EDT
Impact of early response definitions on duration and outcome of treatment with BI 201335 plus pegylated-interferon plus ribavirin M. Sulkowski
Poster# 1209

Date: Sat, April 21
Time: 12:30 - 1:30 p.m.
CEST/ 6:30 - 7:30 a.m. EDT

Preclinical characterization of the hepatitis C virus NS5B polymerase non-nucleoside inhibitor BI 207127

P. Beaulieu Poster# 822

Date: Fri, April 20
Time: 12:30 - 2:00 p.m.
CEST/ 6:30 - 8:00 a.m. EDT

About Hepatitis C Virus (HCV)

HCV is an infectious disease of the liver and is a leading cause of chronic liver disease, transplant and failure that affects as many as 170 million people globally, with three to four million new infections occurring each year. In the United States, an estimated 4.1 million Americans have been infected with HCV, of which approximately 3.2 million have chronic HCV infection. The majority – about 75 to 85 percent – of HCV cases will develop into chronic infection. It is estimated 20 percent of patients with chronic HCV will develop cirrhosis within 20 years of infection. The mortality rate after cirrhosis has developed is 2 – 5 percent per year. Chronic HCV infection is the cause of an estimated 8,000 to 10,000 deaths annually in the United States.

About Boehringer Ingelheim in Hepatitis C Virus (HCV)

Boehringer Ingelheim has a long-standing commitment to virology, including developing innovative therapies for HCV and HIV/AIDS. Through pioneering science, BI strives to achieve a far reaching and inclusive HCV cure that may ease the impact of the disease. In partnership with the scientific community, our clinical trial program, HCVerso™, is rigorously designed to find answers to the challenges that HCV patients face, including those who are the most difficult to treat.

BI 201335, an investigational oral HCV NS3/4A protease inhibitor that has shown the potential to improve cure rates as compared to PegIFN/RBV therapy alone, has completed clinical trials through Phase 2b (SILEN-C studies). A multi-study Phase 3 trial program currently is underway to evaluate BI 201335 combined with PegIFN/RBV in treatment-naïve, treatment-experienced and HIV co-infected patients with chronic genotype-1 HCV.

BI 207127, an NS5B RNA-dependent polymerase inhibitor that has shown the potential to eliminate interferon from HCV treatment when combined with BI 201335 and RBV, is currently being investigated in Phase 2 trials in interferon-sparing regimens.

About Boehringer Ingelheim Pharmaceuticals, Inc.

Boehringer Ingelheim Pharmaceuticals, Inc., based in Ridgefield, CT, is the largest U.S. subsidiary of Boehringer Ingelheim Corporation (Ridgefield, CT) and a member of the Boehringer Ingelheim group of companies.

The Boehringer Ingelheim group is one of the world’s 20 leading pharmaceutical companies. Headquartered in Ingelheim, Germany, it operates globally with 145 affiliates and more than 42,000 employees. Since it was founded in 1885, the family-owned company has been committed to researching, developing, manufacturing and marketing novel products of high therapeutic value for human and veterinary medicine.

As a central element of its culture, Boehringer Ingelheim pledges to act socially responsible. Involvement in social projects, caring for employees and their families, and providing equal opportunities for all employees form the foundation of the global operations. Mutual cooperation and respect as well as environmental protection and sustainability are intrinsic factors in all of Boehringer Ingelheim’s endeavors.

For more information, please visit http://us.boehringer-ingelheim.com and follow us on Twitter at http://twitter.com/boehringerus.

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