Showing posts with label ACH-3102. Show all posts
Showing posts with label ACH-3102. Show all posts

March 14, 2014

Achillion Announces Oral Presentations Given at APASL 2014 Detailing Clinical Activity of ACH-3102, Second-Generation NS5A Inhibitor, Against Genotype 1b HCV

ACH

100% SVR Demonstrated in Combination With Sovaprevir, NS3/4A Protease Inhibitor, in Late Breaker Oral Presentation

NEW HAVEN, Conn., March 14, 2014 (GLOBE NEWSWIRE) -- Achillion Pharmaceuticals, Inc. (Nasdaq:ACHN) today announced that two oral presentations were made at the 23rd Asian Pacific Association for the Study of the Liver (APASL) Conference 2014 in Brisbane, Australia. Updated Phase 2 clinical trial results evaluating a 150 mg loading dose followed by 50 mg once daily of ACH-3102 in combination with either once daily 200 mg or 400 mg of sovaprevir and twice daily ribavirin showed that 100% of patients achieved SVR12 (n=8) including subjects who had Y93 mutations at baseline. A second oral presentation on ACH-3102 was made at APASL 2014 that discussed clinical virology and the lack of virologic breakthrough that was observed in the novel Phase 2 clinical trial evaluating ACH-3102 with ribavirin for patients with treatment-naïve genotype 1b HCV. Despite the presence of up to six linked mutations identified at baseline in the NS5A protein, ACH-3102, without the co-administration of interferon or a second direct-acting antiviral, was able to suppress viral replication with no virologic breakthrough observed during 12 weeks of treatment.

Dr. David Apelian, M.D., Ph.D., Chief Medical Officer of Achillion, commented, "The safety, tolerability, high barrier to resistance, and clinical activity observed in these two Phase 2 trials continue to support the differentiated profile of ACH-3102, our second-generation NS5A inhibitor. As a potential cornerstone compound in genotype 1b targeted regimens, we are evaluating ACH-3102 in combination with our macrocyclic NS3/4A protease inhibitor, ACH-2684, and look forward to initiating future clinical trials for broader HCV treatment evaluating ACH-3102 in combination with our NS5B nucleotide polymerase inhibitor, ACH-3422, which is poised to enter Phase 1 trials."

Oral Presentation Details
Session: Late Breaker Oral Presentation
Title: SVR4 results for the combination of ACH-3102 and sovaprevir, with ribavirin, in subjects with genotype 1 chronic hepatitis C infection.
Abstract: LB6
Presenter: David Apelian, M.D.
Date: Friday, March 14, 2014

Session: Concurrent Session
Title: ACH-3102 and ribavirin in genotype-1b hepatitis C patients: Confirmation of the high barrier to viral breakthrough in genotype-1b HCV.
Abstract: 437
Presenter: Mingjun Huang, Ph.D.
Date: Friday, March 14, 2014

e-Poster Presentation
Title: A single direct-acting anti-viral agent, ACH-3102, with ribavirin, is able to achieve a robust anti-viral response in subjects with genotype 1b chronic hepatitis C infection.
Authors: A. Muir, R. Brennan, et al.
Abstract: 625

Reprints of the oral presentation slides and poster will be accessible from the Achillion website at http://www.achillion.com.

About Achillion Pharmaceuticals

Achillion is an innovative pharmaceutical company dedicated to bringing important new treatments to patients with infectious disease. Achillion's discovery, clinical development, and commercial teams have advanced multiple novel product candidates with proven mechanisms of action into studies and toward the market. Achillion is focused on solutions for the most challenging problems in infectious disease including HCV and resistant bacterial infections. For more information on Achillion Pharmaceuticals, please visit www.achillion.com or call 1-203-624-7000.

Cautionary Note Regarding Forward-Looking Statements

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 important factors that could cause actual results to differ materially from those indicated by such forward-looking statements, including the following: the potential benefits of ACH-3102 as an agent to treat HCV-infected patients; and our plans to initiate additional clinical trials of ACH-3102 in combination with other compounds. Achillion may use words such as "expect," "anticipate," "project," "intend," "plan," "aim," "believe," "seek," " estimate," "can," and "may" and similar expressions to identify such forward-looking statements. Among the important factors that could cause actual results to differ materially from those indicated by such forward-looking statements are risks relating to, among other things Achillion's ability to: demonstrate in any current and future clinical trials the requisite safety, efficacy and combinability of its drug candidates; advance the preclinical and clinical development of its drug candidates, including ACH-3422, ACH-3102 and ACH-2684, under the timelines it projects in current and future clinical trials; satisfactorily respond to the clinical hold placed on sovaprevir by the FDA; obtain and maintain necessary regulatory approvals; obtain and maintain patent protection for its drug candidates and the freedom to operate under third party intellectual property; establish commercial manufacturing arrangements; identify, enter into and maintain collaboration agreements with appropriate third-parties; compete successfully with other companies that are seeking to develop improved therapies for the treatment of HCV; manage expenses; manage litigation; raise the substantial additional capital needed to achieve its business objectives; and successfully execute on its business strategies. These and other risks are described in the reports filed by Achillion with the U.S. Securities and Exchange Commission, including its Quarterly Report on Form 10-K for the year ended December 31, 2013, filed on March 7, 2014, and its subsequent SEC filings.

In addition, any forward-looking statement in this press release represents Achillion's views only as of the date of this press release and should not be relied upon as representing its views as of any subsequent date. Achillion disclaims any duty to update any forward-looking statement, except as required by applicable law.

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September 27, 2013

Achillion Provides Pipeline Update

logo

September 27, 2013

Conference Call and Webcast to be Hosted Monday, September 30th at 8:30 a.m. EDT

NEW HAVEN, Conn., Sept. 27, 2013 (GLOBE NEWSWIRE) -- Achillion Pharmaceuticals, Inc. (Nasdaq:ACHN) today provided an update on development of compounds in its pipeline of therapies for the treatment of chronic hepatitis C virus, or HCV. Achillion today received a response from the U. S. Food and Drug Administration, or FDA, on the clinical hold related to sovaprevir, Achillion's NS3 protease inhibitor. The FDA response indicated that, while Achillion's submission addressed all issues noted in the FDA's June 29, 2013 letter, the FDA concluded that the removal of the clinical hold is not warranted.

"While we are disappointed that we were not able to resolve the clinical hold at this time despite having addressed all the issues, we believe the breadth of our portfolio allows us to quickly advance other all oral combination regimens for the treatment of HCV," stated Milind Deshpande, President and Chief Executive Officer of Achillion. "With our Phase 2 NS5A inhibitor, ACH-3102, we are in a position to rapidly initiate combination studies with ACH-2684, our protease inhibitor, with results expected in 2014. Further, we continue to advance our uridine-analog nucleotide, ACH-3422, with which we anticipate initiating clinical trials in the first half of 2014."

ACH-2684 has completed all of the necessary preclinical and clinical trials necessary to support advancement into Phase 2 combination development. Achillion previously reported robust anti-viral activity with ACH-2684 as monotherapy including Phase 1b data in both non-cirrhotic and cirrhotic treatment-naïve HCV genotype (GT) 1 patients. In addition, Achillion will continue to work to resolve the clinical hold related to sovaprevir.

Phase 2 -007 Trial of Sovaprevir and ACH-3102 with Ribavirin

Achillion also announced interim data from the ongoing -007 Phase 2a clinical trial evaluating two doses of sovaprevir, either 200 mg or 400 mg once daily, in combination with 50 mg once daily of ACH-3102 and ribavirin (rbv) twice daily for 12 weeks in patients with treatment-naïve GT 1a or 1b hepatitis HCV.

The Phase 2 trial is a double-blind, placebo-controlled study evaluating the safety, tolerability and efficacy of 12 weeks of sovaprevir, ACH-3102 and rbv in up to 50 treatment-naïve patients with chronic GT 1a or GT 1b HCV. The first segment enrolled 30 patients who were randomized to receive a combination of either 200 mg or 400 mg sovaprevir once daily in combination with a 150 mg loading dose followed by a 50 mg daily dose of ACH-3102, and twice daily doses of rbv, or matching placebos. The primary endpoints for this trial include safety, tolerability, and sustained viral response 4 weeks after the completion of dosing (SVR4). The trial is being conducted at sites in the United States, Canada, New Zealand and Australia.

All patients achieved a very rapid virologic response (vRVR) with HCV RNA less than 25 IU/ml by week 2. Potent efficacy was observed against GT 1b HCV with 100% of patients achieving rapid viral response, or RVR, with HCV RNA levels less than 10 IU/mL at week 4. RVR was achieved in 79% of GT1 patients overall.

To date, the combination of sovaprevir and ACH-3102 with rbv for up to 12 weeks has been well tolerated with no drug-related serious adverse events, no clinically significant changes in vital signs or electrocardiograms. There have been no graded increases in liver function tests, including ALT or AST, for patients receiving active treatment to date. No other laboratory abnormalities were noted with the exception of decreases in hemoglobin observed and attributed to ribavirin.

Conference Call

The Company will host a conference call and simultaneous webcast on Monday, September 30, 2013 at 8:30 a.m. Eastern time. To participate in the conference call, please dial (877) 266-0482 in the U.S. or (631) 291-4567 for international callers. A live audio webcast of the call will be accessible from the Calendar page in the News Center at www.achillion.com. Please connect to Achillion's website several minutes prior to the start of the broadcast to ensure adequate time for any software download that may be necessary.

A replay of the webcast will be available on www.achillion.com. Alternatively, a replay of the conference call will be available starting at 11:30 a.m. Eastern time on September 30, 2013, through 11:59 p.m. Eastern time on October 6, 2013 by dialing (855) 859-2056 or (404) 537-3406. The replay passcode is 73738655.

About Achillion Pharmaceuticals

Achillion is an innovative pharmaceutical company dedicated to bringing important new treatments to patients with infectious disease. Achillion's discovery, clinical development, and commercial teams have advanced multiple novel product candidates with proven mechanisms of action into studies and toward the market. Achillion is focused on solutions for the most challenging problems in infectious disease including HCV and resistant bacterial infections. For more information on Achillion Pharmaceuticals, please visit www.achillion.com or call 1-203-624-7000.

Forward-Looking Statements

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 important factors that could cause actual results to differ materially from those indicated by such forward-looking statements, including statements with respect to: the safety, efficacy and clinical benefits of the combination of sovaprevir and ACH-3102; Achillion's plans and timing for initiating additional combination trials of ACH-3102 and ACH-2684 and ACH-3422; Achillion's development plan; and Achillion's goals and strategies with respect to addressing all types of HCV patients. We may use words such as "expect," "anticipate," "project," "intend," "plan," "believe," "seek," "estimate," and "may" and similar expressions to identify such forward-looking statements. Among the important factors that could cause actual results to differ materially from those indicated by such forward-looking statements are risks relating to, among other things Achillion's ability to: satisfactorily respond to regulatory actions with regard to its clinical development programs; replicate in subsequent dose groups and/or later clinical trials positive results observed in the interim data from the -007 combination trial of sovaprevir and ACH-3102, and its other product candidates; advance the development of its drug candidates under the timelines it anticipates in current and future clinical trials; obtain necessary regulatory approvals; obtain patent protection for its drug candidates and the freedom to operate under third party intellectual property; establish commercial manufacturing arrangements; identify, enter into and maintain collaboration agreements with appropriate third-parties; compete successfully with other companies that are seeking to develop improved therapies for the treatment of HCV; manage expenses; and raise the substantial additional capital needed to achieve its business objectives. These and other risks are described in the reports filed by Achillion with the U.S. Securities and Exchange Commission, including its Quarterly Report on Form 10-Q for the fiscal quarter ended June 30, 2013 and its subsequent SEC filings.

In addition, any forward-looking statement in this press release represents Achillion's views only as of the date of this press release and should not be relied upon as representing its views as of any subsequent date. Achillion disclaims any duty to update any forward-looking statement, except as required by applicable law.

Source

August 3, 2013

Janssen HCV Drug Research & Development

Provided by NATAP

Reported by Jules Levin

In the Spring Janssen & Gilead submitted New Drug Applications to the FDA requesting approval. The FDA hearing appears to be scheduled for Oct 24-25.

A Study of the Safety, Tolerability, Pharmacokinetics, and Antiviral Activity of JNJ-47910382 at Different Doses and Dose Regimens in Asian Genotype-1, Chronic, HCV-Infected Patients

Study in HCV-Infected Patients to Determine the Safety, Tolerability, Pharmacokinetics and Antiviral Activity of JNJ-47910382

A Study in Healthy Participants Investigating the Safety, Tolerability and Plasma Pharmacokinetics (PK) of Single Oral Doses of JNJ-47910382

IDX719 in Combination With Simeprevir and Ribavirin for 12 Weeks in Subjects With Chronic Hepatitis C Infection
http://www.clinicaltrials.gov/ct2/show/NCT01852604?term=Janssen+AND+Hepatitis+C&recr=Open&no_unk=Y&rank=9

Antiviral Drugs Advisory Committee .........October 24-25
http://www.fda.gov/AdvisoryCommittees/Calendar/ucm153468.htm

Simeprevir (TMC435) with peginterferon/ribavirin for chronic hCV genotype 1 infection in treatment-naïve patients: results from QUEST-1, a Phase III trial
http://www.natap.org/2013/EASL/EASL_10.htm

Simeprevir (TMC435) with peginterferon-α2a or -α2b and ribavirin in treatment-naïve HCV genotype 1 patients: QUEST-2, a randomised Phase III trial
http://www.natap.org/2013/EASL/EASL_18.htm

Simeprevir with Peginterferon/ribavirin for Treatment of Chronic HCV Genotype 1 Infection in Patients Who Relapsed After Previous Interferon-based Therapy: Results from PROMISE, a Phase III Trial
http://www.natap.org/2013/DDW/DDW_06.htm

COSMOS Study: SVR4 results of a once daily regimen of simeprevir (TMC435) plus sofosbuvir (GS-7977) with or without ribavirin in HCV genotype 1 null responders
http://www.natap.org/2013/CROI/croi_34.htm

Medivir Press Release: New Drug Application has been filed with FDA for Simeprevir (TMC435) for combination treatment of adult patients with genotype 1 chronic hepatitis C
http://www.natap.org/2013/HCV/040213_01.htm

Idenix Pharmaceuticals Announces Initiation of Phase II All-Oral Combination Study of Samatasvir (IDX719) and Simeprevir (TMC435) for the Treatment of Hepatitis C Virus (HCV) Infection
http://www.natap.org/2013/HCV/060213_04.htm

Combination Therapy of TMC647055 With Simeprevir (TMC435) in Genotype 1 HCV Patients
http://www.natap.org/2013/EASL/EASL_41.htm

TMC055 Monotherapy data:
Human safety, pharmacokinetics and antiviral activity of TMC647055, a novel HCV non-nucleoside polymerase inhibitor.......
http://www.natap.org/2011/AASLD/AASLD_04.htm

Here is the link to the study on clinical trials.gov where you can see low dose 30mg RTV is used:
A Study to Evaluate the Safety, Tolerability, and Effectiveness of a 12-Week Combination Therapy of TMC647055 and TMC435 With a Pharmacokinetic Enhancer With and Without Ribavirin in Chronic Genotype-1 Hepatitis C Infected Patients.......http://clinicaltrials.gov/ct2/show/NCT01724086?term=tmc647055&rank=3

EASL: Combination Therapy of TMC647055 With Simeprevir (TMC435) in Genotype 1 HCV Patients - (04/30/13)

2nd generation NS5As

In Vitro Resistance Analysis of Merck's HCV NS5a Inhibitor MK-8742 Demonstrates Increased Potency AgainstClinical Resistance Variants and Improved Resistance Profile
http://www.natap.org/2012/EASL/EASL_46.htm

GS-5816, a Second-Generation HCV NS5A Inhibitor With Potent Antiviral Activity, Broad Genotypic Coverage, and a High Resistance Barrier
http://www.natap.org/2013/EASL/EASL_34.htm

Healthy Volunteer First-in-Human Evaluation of GS-5816, a Novel Second Generation Broad-Genotypic NS5A Inhibitor With Potential for Once-Daily Dosing - (04/29/13)

ACH-3102, A Second Generation NS5A Inhibitor, Demonstrates Potent Antiviral Activity in Patients with Genotype 1A HCV Infection Despite the Presence of Baseline NS5A-Resistant Variants - (05/09/13)

FINDINGS FROM CLINICAL VIROLOGY STUDIES ON ACH-3102 ARE CONSISTENT WITH PRECLINICAL OBSERVATIONS ON ITS IMPROVED POTENCY AGAINST GENOTYPE-1A HCV AND RESISTANT VARIANTS - (05/09/13)

No Clinically Significant Pharmacokinetic Interaction Between Sovaprevir and ACH-3102 in Healthy Volunteers - (05/09/13)

Synergistic Interactions of HCV NS5A Replication Complex Inhibitors Sensitize Resistant Variants and Enhance the Efficacy of Daclatasvir (DCV, BMS-790052) In Vitro and In Vivo - (04/27/13)

PRECLINICAL CHARACTERISTICS OF ACH-3102: A NOVEL HCV NS5A INHIBITOR WITH IMPROVED POTENCY AGAINST GENOTYPE-1A VIRUS AND VARIANTS RESISTANT TO 1ST GENERATION NS5A INHIBITORS
http://www.natap.org/2012/EASL/EASL_79.htm

Clinical

Source

July 4, 2013

NS5A inhibitors in the treatment of hepatitis C

Journal of Hepatology

Article in Press

Jean-Michel Pawlotsky

Received 28 February 2013; received in revised form 22 March 2013; accepted 27 March 2013. published online 08 April 2013.
Corrected Proof

Summary 

Hepatitis C virus infection is a major health problem worldwide and no vaccine has yet been developed against this virus. In addition, currently approved pharmacotherapies achieve suboptimal cure rates and have side effects that result in non-compliance and premature treatment discontinuation. Significant research has been devoted to developing direct-acting antiviral agents that inhibit key viral functions. In particular, several novel drug candidates that inhibit the viral non-structural protein 5A (NS5A) have been demonstrated to possess high potency, pan-genotypic activity, and a high barrier to resistance. Clinical trials using combination therapies containing NS5A inhibitors have reported results that promise high cure rates and raise the possibility of developing interferon-free, all-oral regimens.

Abbreviations: HCV, hepatitis C virus, DAA, direct acting antiviral, NS, nonstructural, RdRp, RNA-dependent RNA polymerase, IFN, interferon, UTR, untranslated region, IRES, internal ribosome entry site, SVR, sustained virological response, RVR, rapid virologic response, cEVR, complete early virologic response

Keywords: Hepatitis C virus, NS5A inhibitor, Daclatasvir, Resistance

Introduction

Recent estimates indicate that there are more than 120–130million chronic hepatitis C virus (HCV) carriers worldwide [1], who are at risk of developing cirrhosis and/or hepatocellular carcinoma (primary liver cancer). As many as 4million persons are thought to be chronically infected in the US [2], 5–10million in Europe [2], 12million in India [2], and 1.2million in Japan (2004 figure) [3]. Most of these individuals are not aware of their infection. The incidence of acute infection in the US has declined from 7.4/100,000 in 1982 to 0.7/100,000 in recent years, primarily due to screening of blood in transfusion centres and improved safety of intravenous drug use [4]. It is estimated that approximately 150,000 new cases occur annually in the United States and in Western Europe, and about 350,000 in Japan. Only 25% of acute cases are symptomatic, but up to 80% of these acute cases progress to chronic infection and liver disease, and up to 20% of chronic infections progress to cirrhosis [2]. Every year, 4–5% of cirrhotic patients develop hepatocellular carcinoma [5]. Despite the decrease in HCV incidence, the number of patients with chronic HCV-related complications is increasing in those aging patients who have been infected for many years, and chronic hepatitis C infection will continue to be a significant cause of premature mortality, causing at least 200,000–300,000 deaths per year worldwide [4].

A number of direct-acting antiviral agents (DAAs) are under development for the treatment of chronic HCV infection. These agents block viral production by directly inhibiting one of several steps of the HCV lifecycle. As shown in Fig. 1, the genomic organization of HCV has been elucidated, and several viral proteins involved in the HCV lifecycle, such as the non-structural (NS) 3/4A serine protease, the NS5B RNA-dependent RNA polymerase (RdRp), and the NS5A protein, have been targeted for drug development [4]. Two NS3/4A protease inhibitors, telaprevir and boceprevir, which inhibit post-translational processing of the HCV polyprotein into individual non-structural proteins, have been approved by the US Food and Drug Administration, the European Medicines Agency, and several other regulatory agencies for the treatment of chronic HCV genotype 1 infection in combination with pegylated interferon (IFN)-α and ribavirin [6], [7].

PIIS0168827813002092_gr1_lrgFig,1. Structural organization of HCV RNA and viral proteins. NS, non-structural; UTR, untranslated region.

HCV structure and lifecycle, and physiological role of the NS5A protein 

HCV is an enveloped virus with a single-stranded positive RNA genome of approximately 9.6kb. At the flanking ends of the genome are 2 highly conserved untranslated regions (UTRs). The 5′ UTR is highly structured and contains the internal ribosome entry site (IRES), which is important for the initiation of the cap-independent translation of the polyprotein [8]. The 3′ UTR consists of a short genotype-specific variable region, a tract consisting solely of pyrimidine residues (predominantly uridine) and a conserved 98-nucleotide sequence, known as X region, containing 3 stem-loops [9], [10]. The HCV open reading frame is situated between the two UTRs.

After entering the bloodstream, HCV binds to a receptor complex at the surface of its target cells, the hepatocytes. The envelope glycoproteins E1 and E2 are essential for target cell recognition, binding, and internalization [11]. The bound virus then undergoes clathrin-mediated endocytosis [12]. Acidification of the endocytosis vesicle frees the genomic RNA from the nucleocapsid for release into the cytoplasm. Along with host RNA molecules, the viral RNA migrates to the endoplasmic reticulum (ER). Binding of the 40S ribosomal subunit to the HCV IRES produces a stable pre-initiation complex that begins translation of the viral open reading frame to generate an approximately 3000 amino acid polyprotein. Following translation, the polyprotein is cleaved by both cellular and viral proteases to produce at least 10 viral proteins, including structural proteins (core, E1 and E2) and non-structural proteins (p7, NS2, NS3, NS4A, NS4B, NS5A, and NS5B) [13], [14].

Viral replication (i.e., the synthesis of new positive RNA genomes that may also serve as messenger RNAs for viral protein synthesis) is catalyzed by the viral RdRp, or NS5B protein. A negative-strand intermediate of replication is initially produced, which then serves as a template for the synthesis of numerous positive strands. The NS5A viral protein has been shown to play an important role in the regulation of replication. In addition, host cell proteins, such as cyclophilin A, act as necessary co-factors of HCV replication through their interactions with both NS5A and the RdRp in the replication complex [15], [16].

The non-structural NS5A protein bears pleiotropic functions, including roles in viral replication and assembly, and complex interactions with cellular functions. The latter include inhibition of apoptosis and promotion of tumorigenesis, both of which may play a role in the triggering of the hepatocarcinogenic process [17], [18], [19], [20]. The protein is comprised of approximately 447 amino acids and localizes to ER-derived membranes. It basally exists in phosphorylated (p56) and hyperphosphorylated (p58) forms that are implicated in different functions [21], [22], [23]. Its cytoplasmic moiety contains 3 domains, of which Domain I is the most conserved [24]. The mechanism by which NS5A regulates replication regardless of the HCV genotype is still unclear [25]. Considerable information has been gathered on its molecular interactions and role in the viral lifecycle. NS5A and the RdRp directly interact, both in vivo and in vitro [26]. In vitro, this interaction stimulates RdRp-catalyzed synthesis of the negative RNA strand [27]. It was shown that all 3 domains of NS5A bind to RNA [9]. The interactions of Domain I with the polypyrimidine tract of 3′ UTR suggest it may affect the efficiency of RNA replication by the RdRp; however, these results also suggested the binding of RdRp and NS5A to RNA are mutually exclusive. In addition, Domain II of NS5A interacts with cyclophilin A, a host cell protein required for replication, and this interaction is vital for RNA binding [28]. NS5A also plays a role in viral packaging and assembly. Domain III appears to be essential for this function [29], [30]. This may be due, at least in part, to NS5A recruiting apolipoprotein E, a component of the HCV production process [29], [31]. Indeed, inhibiting apolipoprotein E expression results in marked reduction of infectious particle production without affecting viral entry and replication [31].

NS5A inhibitor mechanism of action 

Several viral proteins have generated interest as potential targets for specific inhibitory drugs. In addition to the two NS3/4A protease inhibitors already approved for clinical use, numerous other protease inhibitors are being developed as well as inhibitors of viral replication, including nucleoside/nucleotide analogue inhibitors of HCV RdRp, non-nucleoside inhibitors of RdRp, cyclophilin inhibitors, and NS5A inhibitors.

Because of its critical involvement in viral replication and assembly [32], NS5A has been identified as a target for viral inhibition, leading to development of therapeutic agents. In HCV replicon-containing cells, inhibition of NS5A, but not other HCV proteins, resulted in redistribution of NS5A from the ER to lipid droplets. NS5A-targeting agents did not cause similar alterations in the localization of other HCV-encoded proteins, and the transfer of NS5A to lipid droplets coincided with the onset of inhibition of replication [33]. Inhibition of NS5A at picomolar concentrations has been associated with significant reductions in HCV RNA levels in cell culture-based models, which makes these agents among the most potent antiviral molecules yet developed [34], [35], [36]. NS5A inhibitors have pan-genotypic activity, i.e., they suppress replication of all HCV genotypes, but their antiviral effectiveness against genotypes other than 1 may vary from one molecule to another [35]. Use of multiple DAAs including an NS5A inhibitor in replicon systems in cell culture has resulted in additive/synergistic inhibition of viral production and an increased barrier to resistance [37].

The exact mechanism of antiviral action of NS5A inhibitors is unknown. Available evidence suggests that they have multiple effects, which contribute to their potency [32]. One putative mechanism is the inhibition of hyperphosphorylation. Phosphorylation of NS5A seems required for viral production [38], but the relative roles of the phosphorylated and hyperphosphorylated forms are unclear, and conflicting results have been reported suggesting that reduced hyperphosphorylation may either enhance or reduce replication [21], [39]. It is thought that a tightly regulated control of phosphorylation vs. hyperphosphorylation is required for efficient viral function. It was also shown that NS5A acts in two different pathways in RNA replication, and one of them likely requires hyperphosphorylation [23]. However, other mechanisms may also play a role. For instance, NS5A inhibitors alter the subcellular localization of NS5A, which may cause faulty viral assembly [33], [40].

Resistance to NS5A inhibitors 

HCV displays a large degree of genomic variability, resulting in its quasispecies distribution [41]. Variants that confer resistance to NS5A inhibitors pre-exist within HCV quasispecies populations in the absence of any previous exposure to these drugs. These variants generally replicate at low levels and are thus undetectable by currently available techniques. However, they can be selected if an NS5A inhibitor is administered and may be grown to high levels. Clinically significant resistance is usually associated with an escape pattern whereby viral replication returns to pretreatment levels and the dominant virus harbours amino acid substitutions that confer high levels of drug resistance without impairing fitness of the virus. Very high levels of the drug may be required to suppress highly resistant viruses, which may not be achievable without compromising safety [42].

At present, only genotype 1, the most prevalent HCV genotype, has been studied in detail for resistant variants. Table 1, adapted from Fridell et al. [43], describes the resistance profile of the NS5A inhibitor daclatasvir in genotype 1a and 1b replicons. The barrier to resistance is lower for genotype 1a than for genotype 1b. Substitutions at positions L31 and Y93 have the greatest ability to confer resistance to daclatasvir, and double mutations may increase the EC50 to a far greater extent (Table 1). These substitutions also confer resistance to other first-generation NS5A inhibitors. In addition, studies with daclatasvir have shown that double and triple inhibitor combinations in replicon systems can generate resistance pathways that differ from those observed during NS5A inhibitor monotherapy [37]. Agents without cross-resistance with NS5A inhibitors should thus be used in combination with this class of drugs.

Table 1. Resistance profile of daclatasvir in the in vitro genotype 1a and 1b replicon systems. Adapted from Fridell et al. [43].

PIIS0168827813002092_fx1_lrg

NS5A inhibitors undergoing clinical trials 

Although no NS5A inhibitor has yet been approved for therapeutic use, these agents are viewed with optimism due to their favourable characteristics, including the requirement for low dosing to inhibit HCV replication; pan-genotypic activity; once-daily dosing; resistance profiles that do not overlap with those of other DAAs in development; and successful suppression of HCV replication with an acceptable safety profile in early clinical trials [34].

Daclatasvir (BMS790052) 

Daclatasvir is an oral, once-daily, highly selective NS5A inhibitor with broad coverage of HCV genotypes in vitro developed by Bristol-Myers Squibb. Daclatasvir currently is in Phase III clinical trials. Its inhibitory target maps to Domain I, and it has been shown to block hyperphosphorylation of NS5A [23], as well as alter the subcellular localization of the viral protein [33], [40]. Daclatasvir has an EC50 of 50pM against genotype 1a, 9pM against genotype 1b, and 28pM against genotype 2a [35]. Daclatasvir has been tested in Phase II clinical trials in combination with pegylated IFN-α and ribavirin; in quadruple combination with asunaprevir, an NS3/4A protease inhibitor, and pegylated IFN-α/ribavirin; and with asunaprevir, the nucleotide analogue sofosbuvir and the non-nucleoside inhibitor of HCV RdRp BMS-791325 in IFN-free regimens.

In a randomized, parallel-group, double-blind, placebo-controlled, dose-finding Phase IIa trial of treatment-naïve patients infected with HCV genotype 1, 5 of 12 patients who received 3mg daclatasvir with pegylated IFN-α and ribavirin for 48weeks achieved extended rapid virologic response (eRVR), compared with 10 of 12 who received 10mg daclatasvir, 9 of 12 who received 60mg daclatasvir, and 1 of 12 who received placebo. Adverse events and discontinuations as a result of adverse events occurred with similar frequency across treatment groups [44]. In another Phase IIa trial in genotype 1-infected patients who were non-responders to a prior course of pegylated IFN-α and ribavirin, all 10 patients who received quadruple therapy with daclatasvir, asunaprevir, and pegylated IFN-α/ribavirin showed a sustained virologic response (SVR) after 12weeks, as opposed to 4 of 11 who received daclatasvir and asunaprevir only [45]. A higher incidence of viral breakthrough due to resistance was observed in genotype 1a patients who were given only the 2 DAAs without pegylated IFN-α/ribavirin vs. genotype 1b patients receiving the same treatment regimen, as a result of the lower barrier to resistance in genotype 1a [45]. Among patients who experienced virologic failure, the most common variants harboured Y93H and L31M, two substitutions well known for conferring resistance to daclatasvir.

In a 24-week dual-oral Phase II trial with daclatasvir and asunaprevir in genotype 1b-infected patients, 90.5% of null responders and 63.6% of patients ineligible for or intolerant to pegylated IFN-α/ribavirin achieved SVR 24weeks after the end of treatment (SVR24) [46]. Interestingly, many patients in this study with pre-existing resistance-associated NS5A polymorphisms were cured of their chronic HCV infection.

In a Phase IIb study with daclatasvir, pegylated IFN-α, and ribavirin, 100% of genotype 4-infected patients achieved SVR at 12weeks post-treatment (SVR12) [47]. A combination of daclatasvir and sofosbuvir (formerly GS-7977), a nucleotide analogue inhibitor of HCV RdRp developed by Gilead Sciences, given for 24weeks achieved SVR in 100% (44/44) of treatment-naïve patients infected with HCV genotype 1, and in 91% (40/44) of patients infected with HCV genotypes 2 and 3 at 4weeks post-treatment. Addition of ribavirin had no effect on SVR rates [48]. Finally, the triple combination of daclatasvir, asunaprevir and BMS-791325, a non-nucleoside inhibitor of HCV RdRp, resulted in an SVR12 in 15 of 16 patients (94%) treated for 12weeks (data missing in the remaining patient) [49].

ABT-267 

This drug candidate, developed by AbbVie, is in Phase II clinical trials. It is an oral, once-daily NS5A inhibitor that significantly reduces HCV RNA levels in vitro and in vivo. In a study of treatment-naïve genotype 1-infected patients, ABT-267 in combination with pegylated IFN-α and ribavirin produced a rapid virologic response (RVR) at 4weeks in 22 of 28 patients as compared with 2 of 22 who received placebo; after 12weeks, 25 of 28 patients receiving the NS5A inhibitor in combination with pegylated IFN-α and ribavirin showed complete early virologic response (cEVR) compared with 6 of 9 patients in the placebo group. A recently presented Phase IIb clinical trial, which used a 4-drug combination of ABT-267, ritonavir-boosted ABT-450 (a protease inhibitor), ABT-333 (a non-nucleoside inhibitor of HCV RdRp), and ribavirin achieved SVR12 in 97.5% of treatment-naïve patients and in 93.3% of prior null-responders infected with genotype 1 [50], [51]. In treatment-naïve patients, the SVR rates were 87.5% when the three drugs and ribavirin were administered for 8weeks, 89.9% when ABT-267 was administered with ABT-450 and ribavirin for 12weeks, and 87.3% when the three DAAs were administered without ribavirin for 12weeks. In null responders, the SVR rate was 88.9% with the combination of ABT-450, ABT-267, and ribavirin. Based on these results, Phase III trials with the 3 DAAs with and without ribavirin are planned [51].

Ledispasvir (GS-5885) 

This oral, once-daily drug candidate, developed by Gilead Sciences, is a potent NS5A inhibitor against genotypes 1a, 1b, 4a, and 5a in vitro, but has lower activity against genotypes 2a and 3a [52]. In a randomized, placebo-controlled study of 14days of ledipasvir monotherapy in genotype 1-infected patients, significant HCV RNA reductions (up to 1000-fold) were observed. Several resistance-associated substitutions were selected, including the aforementioned Y93H and L31M. In patients infected with HCV genotype 1b, daclatasvir has been reported to be more active than ledipasvir, whereas ledipasvir has been found to be 4–5times more active than daclatasvir for the M28T and Q30H substitutions in HCV genotype 1a infection. In addition, daclatasvir has been demonstrated to be 2-fold more active against the L31M substitution as compared with ledipasvir [53]. Ledipasvir is now in a Phase II trial as a component of a 4-drug regimen with tegobuvir (a non-nucleoside inhibitor of HCV RdRp), GS-9451 (an NS3/4A protease inhibitor), and ribavirin [52]. Recent results from the ELECTRON Phase II trial have shown SVR rates 12weeks after the end of treatment of 100% in 25 treatment-naïve and 10 null responder patients infected with HCV genotype 1 with the combination of sofosbuvir, ledipasvir and ribavirin [54]. A Phase III trial with a fixed-dose combination of sofosbuvir and ledipasvir, with or without ribavirin, is in progress in treatment-naïve patients infected with HCV genotype 1 [55]. A recent presentation also showed that ledipasvir, in combination with GS-9451, pegylated IFN-α, and ribavirin achieved SVR at 4weeks post-treatment in 100% of CC IL28B patients infected with HCV genotype 1 [56].

GSK-2336805 

This oral, once-daily drug candidate is being developed by GlaxoSmithKline. Preliminary studies show that GSK-2336805 is particularly effective against HCV genotype 1b, and has potent antiviral activity against other genotypes as well. A placebo-controlled Phase I study of treatment-naïve patients with chronic genotype 1 infection found a reduction in HCV RNA level of up to 1000-fold following 14days of monotherapy. This NS5A inhibitor is currently in Phase II clinical trials in treatment-naïve patients infected with HCV genotype 1 in combination with pegylated IFN-α, ribavirin, and telaprevir [57]. Resistance to GSK-2336805 maps to NS5A [58].

ACH-2928 

This oral, once-daily drug candidate, developed by Achillion Pharmaceuticals, displays highly potent activity in vitro against genotype 1a replicons as well as chimeric replicons of genotypes 2–6. ACH-2928 has demonstrated in vitro synergistic activity in combination with sovaprevir (formerly ACH-1625), an HCV NS3/4A protease inhibitor, which is further enhanced by ribavirin [59]. In Phase I trials, ACH-2928 monotherapy for 3days produced up to a 3.7log10 reduction in HCV RNA levels in patients with chronic HCV genotype 1 infection [60].

BMS824393

This NS5A inhibitor is being developed by Bristol-Myers Squibb. It has shown strong in vitro potency against genotypes 1a and 1b. In a Phase I study in which this agent was used as a monotherapy for 3days in genotype 1-infected patients, a decline of up to 3.9log10 was observed [61].

IDX719

This drug candidate, developed by Idenix Pharmaceuticals, has shown greater potency in vitro than daclatasvir against HCV genotypes 1a, 1b, 2a, 3a, 4a, and 5a [62]. In Phase I studies, HCV RNA levels declined by more than 3 log10 in single-dose trials for all genotype 1, 2, and 3 patients after 24hours. Similar reductions in HCV RNA levels (over 3log10) were observed for genotype 1, 3, and 4 patients, and reductions of 2log10 for genotype 2, in 3-day monotherapy studies [63], [64]. However, evidence indicates that the Y93H substitution confers resistance to this NS5A inhibitor [62]. A Phase II clinical trial using IDX719, simeprevir (a protease inhibitor developed by Janssen and Medivir), and TMC647055, a non-nucleoside polymerase inhibitor developed by Janssen, has been announced [65].

PPI461

This oral drug candidate is under development by Presidio Pharmaceuticals. A Phase Ib trial of monotherapy for 3days in patients with HCV genotype 1 infection showed a decrease of HCV RNA level of up to 3.6log10. However, widespread resistance emerged rapidly, mapping to amino acids 28, 30, 31, and 93 [66].

PPI668

Also under development by Presidio Pharmaceuticals, this NS5A inhibitor has been shown to possess high efficacy against HCV genotype 1, with up to 3.7log10 mean HCV RNA reductions, in a Phase Ib clinical trial [67], [68]. Activity was demonstrated against variants harbouring the L31M substitution. In an added genotype-2/3 cohort, the first 2 patients achieved mean 3.0log10 RNA level reductions [68]. PPI668 will be studied in combination with two DAAs developed by Boehringer-Ingelheim, faldaprevir, an NS3/4A protease inhibitor, and BI207127, a non-nucleoside inhibitor of HCV RdRp.

ACH-3102 

This NS5A inhibitor, developed by Achillion Pharmaceuticals, has a modified structure designed to have a higher pharmacologic barrier to resistance. Pharmacokinetic studies support once-daily oral dosing with this agent. ACH-3102 has shown potent antiviral activity against all genotypes in preclinical studies. In replicon studies, ACH-3102 has shown the smallest difference in potency between genotype 1a and 1b replicons, compared with daclatasvir and ACH-2928 [69]. ACH-3102 is potent against mutants harbouring substitutions that confer resistance to first-generation NS5A inhibitors (Fig. 2), such as those at positions Y93 and L31 [69]. Antiviral efficacy is also strong against double mutants that are highly resistant to other NS5A inhibitors (unpublished data). In addition, this inhibitor has shown very low potential for emergence of resistant variants in genotype 1b replicons (unpublished data). For these reasons, ACH-3102 is considered a “second-generation” NS5A inhibitor.

Fig. 2. Antiviral efficacy of ACH-3102 (second-generation NS5A inhibitor) compared with ACH-2928 and daclatasvir (first-generation NS5A inhibitors) on wild-type (parent) and mutated HCV replicons [69].

PIIS0168827813002092_gr2_lrg

A recently reported preclinical study using ACH-3102 and ACH-2684 (an NS3/4A protease inhibitor) has shown an additive to synergistic antiviral effect against genotypes 1a and 1b without the emergence of resistance variants [70]. Recently announced results from a Phase Ia trial in patients infected with HCV genotype 1 show that a single dose of ACH-3102 produces a mean HCV RNA level reduction of up to 3.9log10, with an upper range of 4.6log10, with inhibition lasting for 4days after dosing. Moreover, ACH-3102 has a half-life of approximately 250hours (unpublished data), compared with 13–15hours for daclatasvir [71], 22–50hours for ledipasvir [53], and 25–32hours for ABT-267 [72]. A single Phase II trial has been initiated in genotype 1b patients using ACH-3102 in combination with ribavirin [73].

Progress toward all-oral combination therapies for HCV and the role of NS5A inhibitors 

Currently, the standard of care for chronic HCV genotype 1 infection is a combination of pegylated IFN-α, ribavirin, and an NS3/4A protease inhibitor (i.e., boceprevir or telaprevir), whereas patients infected with other HCV genotypes continue to be treated with pegylated IFN-α and ribavirin. The SVR rates observed with the triple combination in patients infected with HCV genotype 1 range from 67% to 75% in clinical trials [74], [75]. They are probably lower in the real-life setting, indicating that a significant proportion of patients will still experience virologic failure and that improved therapeutic regimens are needed. In addition, patients receiving pegylated IFN-α and ribavirin experience a plethora of adverse effects, some of which are aggravated by the protease inhibitor [6], [7], [76]. Clinical trials of NS5A inhibitors in combination with pegylated IFN-α and ribavirin have shown promising results. However, the trials conducted thus far have included only small numbers of patients, and more studies are needed before the efficacy of such 3-drug combinations can be fully ascertained. In this respect, the results of a Phase III trial with daclatasvir, pegylated IFN-α, and ribavirin are awaited. Quadruple therapies including an NS5A inhibitor, pegylated IFN-α, ribavirin, and another DAA also appear promising. However, recent reports of very high SVR rates, over 90%, in patients treated with all-oral, IFN-free regimens with or without ribavirin clearly indicate that the IFN era is coming to an end. It is also noteworthy that NS5A inhibitors developed by one company have been used with different classes of DAAs developed by other companies [48]; as such, a highly potent NS5A inhibitor may find uses in combinations with various other DAAs to achieve high cure rates.

Due to their specificity, potency, and low EC50, NS5A inhibitors will likely be a critical component of future all-oral, IFN-free combinations. It is interesting to note that the most attractive all-oral combinations presented at the last annual meetings of the American and European liver societies all contained an NS5A inhibitor, combined either with a nucleotide analogue or a protease inhibitor and a non-nucleoside inhibitor of HCV RdRp, with or without ribavirin. Fixed-dose combinations (i.e., 2-drug combinations in 1 pill) including an NS5A inhibitor are already available in Phase II and III clinical trials. The advent of second-generation NS5A inhibitors, with a modified structure and near-equal efficacy against variants known to resist first-generation NS5A inhibitors, is also promising.

PIIS0168827813002092_fx2_lrg

Conclusions 

Although blood screening and other preventive measures have reduced the incidence of HCV in some parts of the world, infection with this virus remains a significant worldwide health concern. The multiple genotypes of HCV, as well as rapid development of mutations, have complicated the development of effective drugs. Until recently, a non-specific antiviral combination, pegylated IFN-α and ribavirin, was the mainstay of HCV therapy. The approval of two NS3/4A protease inhibitors has allowed the addition of a DAA to this treatment regimen. Although the first-generation protease inhibitors, telaprevir and boceprevir, in combination with pegylated IFN-α and ribavirin, have improved treatment of chronic HCV genotype 1 infection, response rates remain suboptimal. In addition, many patients are unable to tolerate this therapy and, among those who can, adverse events associated with the drugs can compromise patient compliance and lead to premature treatment discontinuations. Thus, there has been a strong desire to develop all-oral, IFN-free therapies with high efficacy. The discovery of the multiple roles of the NS5A protein in viral replication has been paralleled by the development of specific NS5A inhibitors. Evidence gathered thus far indicates that these agents are potent and possess antiviral activity against multiple HCV genotypes with acceptable safety profiles. In addition, clinical trial data support the efficacy of NS5A inhibitors with and without pegylated IFN-α and ribavirin, suggesting an important role for these agents as a component of all-oral therapeutic regimens for the treatment of HCV.

Financial support 

Editorial assistance from ACCESS Medical was funded by Achillion Pharmaceuticals.

Conflict of interest 

The author has received research grants from Gilead. He has served as an advisor for Abbott, Abbvie, Achillion, Boehringer-Ingelheim, Bristol-Myers Squibb, Gilead, Idenix, Janssen-Cilag, Madaus-Rottapharm, Merck, Novartis, and Roche.

Acknowledgments

The author would like to thank Amlan RayChaudhury, PhD, of ACCESS Medical, LLC, for editorial assistance in preparing the manuscript.

References

Source

July 2, 2013

Achillion Provides Update on Sovaprevir Development Program

ACH

July 1, 2013

Following Phase 1 drug-drug interaction study with ritonavir-boosted atazanavir showing elevated liver enzymes, sovaprevir placed on clinical hold by FDA

Ongoing enrollment and treatment of patients remains unaffected in Phase 2 -007 combination trial evaluating 12-weeks of sovaprevir and ACH-3102 for treatment-naive genotype 1 patients

Conference call and webcast to be hosted today at 4:15 p.m. EDT

NEW HAVEN, Conn., July 1, 2013 (GLOBE NEWSWIRE) -- Achillion Pharmaceuticals, Inc. (Nasdaq:ACHN) today announced that the Company has received notice from the U.S. Food and Drug Administration (FDA) that a clinical hold has been placed on sovaprevir after elevations in liver enzymes associated with significantly higher than anticipated exposures to atazanivir and sovaprevir were noted in a Phase 1 healthy subject drug-drug interaction (DDI) study evaluating the effects of concomitant administration of sovaprevir with ritonavir-boosted atazanavir. The FDA has allowed continued enrollment and treatment of patients in the Phase 2 -007 clinical trial evaluating 12-weeks of sovaprevir in combination with ACH-3102 and ribavirin for patients with treatment-naive genotype 1 hepatitis C viral infection (HCV).

In a Phase 1 drug-drug interaction study, Achillion was evaluating the effects of concomitant administration of sovaprevir with ritonavir-boosted atazanavir. While conducting this study, Achillion detected unanticipated elevations in ALT liver enzymes (grade 3 or 4) in multiple subjects, although none of these met the criteria for a serious adverse event (SAE). Achillion voluntarily stopped further dosing in the DDI study and promptly notified the FDA of these findings. Preliminary pharmacokinetic results indicate a metabolic interaction whereby plasma concentrations of both atazanavir and sovaprevir were substantially increased upon co-administration. Such ALT elevations have not been seen in the 12-week combination -007 trial, the 12-week combination -005 trial with ACH-3102 and ribavirin, or in any other drug-drug interaction studies completed with sovaprevir to date.

With the preliminary draft data on hand at the time of notification, the FDA placed sovaprevir on clinical hold. In order to resolve the clinical hold, the FDA has asked for study reports from two drug-drug interaction studies and an integrated safety analysis of on-going sovaprevir trials, each of which Achillion expects to provide to the FDA within approximately six weeks.

With respect to the ongoing -007 Phase 2 clinical trial, Achillion is treating patients in the first segment of the study and plans to release interim clinical trial results, including rapid virologic response (RVR) during the third quarter and sustained viral response (SVR) during the fourth quarter, as previously anticipated. To date, patients enrolled in the trial have received up to six weeks of combination treatment with no safety issues noted.

Conference Call

The Company will host a conference call and simultaneous webcast on Monday, July 1, 2013 at 4:15 p.m. Eastern time. To participate in the conference call, please dial (877) 266-0482 in the U.S. or (631) 291-4567 for international callers. A live audio webcast of the call will be accessible at http://www.achillion.com or http://ir.achillion.com. Please connect to Achillion's website several minutes prior to the start of the broadcast to ensure adequate time for any software download that may be necessary.

A replay of the webcast will be available on www.achillion.com. Alternatively, a replay of the conference call will be available starting at 7:15 p.m. Eastern time on July 1, 2013, through 11:59 p.m. Eastern time on July 7, 2013 by dialing (855) 859-2056 or (404) 537-3406. The replay passcode is 14259844.

About Achillion Pharmaceuticals

Achillion is an innovative pharmaceutical company dedicated to bringing important new treatments to patients with infectious disease. Achillion's discovery, clinical development, and commercial teams have advanced multiple novel product candidates with proven mechanisms of action into studies and toward the market. Achillion is focused on solutions for the most challenging problems in infectious disease including HCV and resistant bacterial infections. For more information on Achillion Pharmaceuticals, please visit www.achillion.com or call 1-203-624-7000.

Forward-Looking Statements

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 important factors that could cause actual results to differ materially from those indicated by such forward-looking statements, including statements with respect to: the potential causative factors for the unexpected results in Achillion's Phase 1 drug-drug interaction study of sovaprevir and ritonavir; Achillion's expectations regarding timing for the completion and reporting of results of its clinical trial of ACH-3102 in combination with sovaprevir and ribavirin; and Achillion's expectations regarding timelines for submitting additional data to FDA in response to the clinical hold. We may use words such as "expect," "anticipate," "project," "intend," "plan," "believe," "seek," " estimate," and "may" and similar expressions to identify such forward-looking statements. Among the important factors that could cause actual results to differ materially from those indicated by such forward-looking statements are risks relating to, among other things Achillion's ability to: satisfactorily respond to regulatory actions with regard to its clinical development programs, including the FDA's request for further information and data regarding the Phase 1 drug-drug interaction study; successfully resolve the partial clinical hold with regard to sovaprevir; continue to advance sovaprevir in clinical trials; replicate in later clinical trials positive results found in preclinical and earlier stage clinical trials of sovaprevir, ACH-3102, and its other product candidates; advance the development of its drug candidates under the timelines it anticipates in current and future clinical trials; obtain necessary regulatory approvals; obtain patent protection for its drug candidates and the freedom to operate under third party intellectual property; establish commercial manufacturing arrangements; identify, enter into and maintain collaboration agreements with appropriate third-parties; compete successfully with other companies that are seeking to develop improved therapies for the treatment of HCV; manage expenses; and raise the substantial additional capital needed to achieve its business objectives. These and other risks are described in the reports filed by Achillion with the U.S. Securities and Exchange Commission, including its Quarterly Report on Form 10-Q for the fiscal quarter ended March 31, 2013 and its subsequent SEC filings.

In addition, any forward-looking statement in this press release represents Achillion's views only as of the date of this press release and should not be relied upon as representing its views as of any subsequent date. Achillion disclaims any duty to update any forward-looking statement, except as required by applicable law.

CONTACT: Company Contact:

Glenn Schulman

Achillion Pharmaceuticals, Inc.

Tel. (203) 624-7000

gschulman@achillion.com

Media:

Sally Barton Ogilvy

PR Tel. (212)880-5240

sally.barton@ogilvy.com

Investors:

Kay Fenton

Achillion Pharmaceuticals, Inc.

Tel. (203) 624-7000

mfenton@achillion.com

Investors:

Seth Lewis The Trout Group, LLC

Tel. (646) 378-2952

slewis@troutgroup.com

Source

April 23, 2013

Achillion Presents New Data on ACH-3102 to Treat Hepatitis C at the International Liver Congress

ACH

April 23, 2013

- Phase 1 Results Further Demonstrate Potency of ACH-3102 in Genotypes 1a and 1b and Against Resistant HCV-

- Study Shows ACH-3102 and Sovaprevir Can be Co-Administered Without Interaction -

- Total of Six Poster Presentations to be Made During EASL -

AMSTERDAM, The Netherlands, April 23, 2013 (GLOBE NEWSWIRE) -- Achillion Pharmaceuticals, Inc. (Nasdaq:ACHN)today announced the presentation of new data demonstrating the efficacy, safety, tolerability, and combinability of ACH-3102, a second-generation, pan-genotypic NS5A inhibitor, at the 48th Annual Meeting of the European Association for the Study of the Liver (EASL) during the International Liver Congress 2013. ACH-3102 and sovaprevir are currently in Phase II combination development for the treatment of patients with chronic Hepatitis C infection (HCV). During the upcoming poster presentations, data will be reported that demonstrates ACH-3102 achieves a reduction in HCV RNA despite the presence of resistant variants. In addition, ACH-3102 demonstrates no drug-drug interaction with sovaprevir, Achillion's second-generation protease inhibitor.

Data highlights include:

Poster No. 876: A Second Generation NS5A Inhibitor, Demonstrates Potent Antiviral Activity in Patients with Genotype 1A HCV Infection Despite the Presence of Baseline NS5A-Resistant Variants. Friday, April 26, 2013: Poster Session — Category 08c: Viral Hepatitis C: Clinical (therapy).

  • Treatment naïve patients with genotype 1 chronic HCV infection, patients received a single dose of ACH-3102 at various doses (Group 1: 50 mg, n=4; 150 mg, n=4; 300 mg, n=4 or placebo, n=2) or placebo and were evaluated for baseline NS5A-resistant viral variants, which was present in the majority of patients. Based on the robust anti-viral effect observed in Group 1, a lower dose (25 mg, n=6) of ACH-3102 or placebo (n=3) was studied in Group 2.
  • All tested doses of ACH-3102 were safe and well-tolerated in subjects with chronic HCV Genotype 1 infection.
  • Robust, rapid and sustained suppression of plasma HCV RNA levels was observed in all doses (mean reduction of 4.04 log10, 3.78 log10, 3.52 log10, and 3.93 log10 IU/mL for 25 mg, 50 mg, 150 mg and 300 mg doses, respectively, versus reduction of 0.68 log10 IU/mL for placebo). Plasma HCV RNA levels sharply declined within the first two days post-treatment, and remained lower than baseline for at least 14 days.
  • ACH-3102 retains potent anti-viral activity against both wild-type and NS5A-resistant viral variants, differentiating it from first-generation NS5A inhibitors.

Poster No. 1201: No Clinically Significant Pharmacokinetic Interaction between Sovaprevir and ACH-3102 in Healthy Volunteers. Saturday, April 27, 2013. Poster Session — Category 08d: Viral Hepatitis C: Clinical (new compounds, resistance).

  • In a 24-patient healthy volunteer study, there was no clinically significant pharmacokinetic interaction between ACH-3102 and sovaprevir, Achillion's 2nd generation NS3 Protease Inhibitor (PI), when co-administered with or without food.
  • Co-administration of ACH-3102 and sovaprevir was deemed safe and well-tolerated and the results support a combination Phase 2 study which is currently underway

Poster No. 1199: Findings from Clinical Virology Studies on ACH-3102 are Consistent with Preclinical Observations on its Improved Potency Against Genotype-1A HCV and Resistant Variants. Saturday, April 27, 2013: Poster Session — Category 08d: Viral Hepatitis C: Clinical (new compounds, resistance).

  • Single doses of ACH-3102 at 25 mg - 300 mg have previously shown robust antiviral activity in Genotype 1a patients, with reductions in HCV RNA observed in presence of baseline mutations associated with viral resistance to NS5A inhibitors.
  • These results show that ACH-3102 administered in 50 mg, 150 mg, and 300 mg doses reduced viral load by 3.98-4.60 log10 IU/mL in four patients with Y93C/D/H mutation, 3.35-4.02 log10 IU/mL in four patients with M28T/V mutation, and 3.40 log10 IU/mL in one patient with L31M mutation.
  • Also in GT-1a patients, a comparison of 1-150 NS5A versus full-length NS5A showed less than five-fold differences in their susceptibility to ACH-3102, compared with up to a greater than 358-fold differences in susceptibility to daclatasvir.
  • ACH-3102 retained potency (EC500.042 nM) in GT-1b patients with pooled NS5A mutations, all of whom carried the L31M and Y93H double mutation. In contrast, daclatasvir potency was reduced 2,200-fold (EC50 22 nM).

"The high barrier to resistance observed with ACH-3102 to date continues to confirm our view that ACH-3102 is unique from other NS5As and has the promise to be a cornerstone therapy in the treatment of Hepatitis C," said Milind Deshpande, Ph.D., President of Research and Development and Chief Scientific Officer of Achillion. "The unique characteristics of ACH-3102, combined with the unique profile of our 2nd generation PI, sovaprevir, which also has a higher barrier to resistance than typical PIs, make for what we believe is a high potential combo, competitive against both current and emerging combinations."

Additional Poster Presentations at EASL:

Friday, April 26, 2013: Poster Session — Category 08c: Viral Hepatitis C: Clinical (therapy).

  • Lawitz E., et al. ACH-2684 Demonstrates Potent Viral Suppression in Genotype 1 Hepatitis C Patients with and without Cirrhosis: Safety, Pharmacokinetic, and Viral Kinetic Analysis. Pres. #847.
  • Agarwal A., et al. Viral Kinetics Modeling to Predict cEVR and Aid in Dose Selection Decisions for Phase 2/3 Clinical Trials. Pres. #784.

Saturday, April 27, 2013: Poster Session — Category 08d: Viral Hepatitis C: Clinical (new compounds, resistance).

  • Fabrycki J., et al. Findings from Clinical Virology Studies on Sovaprevir, a Phase 2 HCV NS3A Protease Inhibitor, Indicate a High Pharmacological Barrier to Viral Resistance. Pres. #1200.

About ACH-3102

The NS5A protein is a clinically validated target that serves multiple functions at various stages of the HCV life cycle including involvement in virion production, interaction with host proteins and association with interferon-resistance. ACH-3102, Achillion's second generation NS5A inhibitor, has demonstrated potent activity against all HCV genotypes in vitro and in preclinical studies achieved additive to synergistic activity when combined with NS3 protease inhibitors, NS5B polymerase inhibitors, interferon and ribavirin. In preclinical studies, ACH-3102 demonstrated excellent potency, in the pico-molar range, against wild type HCV RNA replication, as well as potency against resistant mutants that have been identified in clinical studies. ACH-3102 was deemed to be safe and well-tolerated in Phase 1 development and achieved mean maximal reductions in HCV RNA of 3.78 log10 after a single dose. ACH-3102 has been granted fast track designation by the FDA and is currently being evaluated in Phase 2 for the treatment of HCV.

About Sovaprevir

Sovaprevir, previously referred to as ACH-1625, is a pan-genotypic HCV protease inhibitor designed and synthesized based on crystal structures of enzyme/inhibitor complex. Sovaprevir is an open chain, non-covalent, reversible inhibitor of NS3 protease. In preclinical studies, sovaprevir demonstrated high potency, unique pharmacokinetic properties and an excellent safety profile at high drug exposures. Sovaprevir has rapid and extensive partitioning to the liver, as well as high liver/plasma ratios, and has shown low single-digit nanomolar potency that is specific to HCV. It is equipotent against HCV genotypes 1a and 1b at IC50 of approximately 1nM. Sovaprevir is currently in Phase 2 clinical development and has shown clinical antiviral activity against genotypes 1 and 3. Fast Track status was granted to sovaprevir in 2012 for the treatment of chronic HCV.

About HCV

The hepatitis C virus is the most common cause of viral hepatitis, which is an inflammation of the liver. It is currently estimated that more than 170 million people are infected with HCV worldwide including more than 5 million people in the United States, making HCV more than twice as widespread as HIV. Three-fourths of the global HCV patient population is undiagnosed; it is a silent epidemic and a major global health threat. Chronic hepatitis, if left untreated, can lead to permanent liver damage that can result in the development of liver cancer, liver failure or death. Few therapeutic options currently exist for the treatment of HCV infection. The current standard of care is limited by its specificity for certain types of HCV, significant side-effect profile, and injectable route of administration.

About Achillion Pharmaceuticals

Achillion is an innovative pharmaceutical company dedicated to bringing important new treatments to patients with infectious disease. Achillion's proven discovery and development teams have advanced multiple product candidates with novel mechanisms of action. Achillion is focused on solutions for the most challenging problems in infectious disease including HCV and resistant bacterial infections. For more information on Achillion Pharmaceuticals, please visit www.achillion.com or call 1-203-624-7000 begin_of_the_skype_highlighting 1-203-624-7000 end_of_the_skype_highlighting.

Forward-Looking Statements

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 important factors that could cause actual results to differ materially from those indicated by such forward-looking statements, including statements with respect to: the expected potency, safety, tolerability, effectiveness, combinability and other characteristics of sovaprevir and ACH-3102; and Achillion's expectations regarding timing for the commencement, completion and reporting of results of its clinical trials of both ACH-3102 in combination with ribavirin and sovaprevir in combination with ACH-3102. We may use words such as "expect," "anticipate," "project," "intend," "plan," "believe," "seek," " estimate," and "may" and similar expressions to identify such forward-looking statements. Among the important factors that could cause actual results to differ materially from those indicated by such forward-looking statements are risks relating to, among other things Achillion's ability to: replicate in later clinical trials positive results found in earlier stage clinical trials of sovaprevir, ACH-3102 and its other product candidates; advance the development of its drug candidates under the timelines it anticipates in current and future clinical trials; obtain necessary regulatory approvals; obtain patent protection for its drug candidates and the freedom to operate under third party intellectual property; establish commercial manufacturing arrangements; identify, enter into and maintain collaboration agreements with appropriate third-parties; compete successfully with other companies that are seeking to develop improved therapies for the treatment of HCV; manage expenses; and raise the substantial additional capital needed to achieve its business objectives. These and other risks are described in the reports filed by Achillion with the U.S. Securities and Exchange Commission, including its Annual Report on Form 10-K for the fiscal year ended December 31, 2012 and its subsequent SEC filings.

In addition, any forward-looking statement in this press release represents Achillion's views only as of the date of this press release and should not be relied upon as representing its views as of any subsequent date. Achillion disclaims any duty to update any forward-looking statement, except as required by applicable law.

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Achillion Announces Updated Phase 2 Results Including Early Sustained Virologic Response on ACH-3102 Plus Ribavirin in Genotype 1b Treatment-Naive Hepatitis C Patients

ACH

April 23, 2013

- ACH-3102 deemed safe and well-tolerated following 12 weeks of therapy -
- High barrier to resistance demonstrated with no on-treatment virologic breakthrough observed -
- Novel NS5A inhibitor study supports differentiated profile of ACH-3102 -

NEW HAVEN, Conn., April 23, 2013 (GLOBE NEWSWIRE) -- Achillion Pharmaceuticals, Inc. (Nasdaq:ACHN) today announced updated interim safety and efficacy results, including early sustained virologic response (SVR4) data, from the pilot Phase 2 trial evaluating once-daily ACH-3102 plus ribavirin (RBV) in treatment-naïve patients with genotype 1b, IL28B CC subtype, chronic hepatitis C virus (HCV) infection. All of the 8 patients enrolled in the trial completed 12 weeks of treatment with no virologic breakthrough observed. ACH-3102 also demonstrated continued declines in HCV RNA in the presence of up to six baseline mutations that are known to confer a high level of resistance to 1st generations NS5A inhibitors. ACH-3102 was deemed safe and well-tolerated with no significant adverse events reported. In all, 75% of patients (6 of 8) had HCV RNA < 25 IU/ml at the end of treatment and 63% (5 of 8) achieved early sustained virologic response 4 weeks (SVR4) after the completion of therapy.

Dr. Andrew Muir, Principal Investigator and Assistant Professor of Medicine and Director of Gastroenterology/Hepatology Research at Duke Clinical Research Institute commented, "The preliminary results from this novel study of a single DAA, an NS5A inhibitor, plus ribavirin demonstrates the safety, high barrier to resistance, and preliminary efficacy of ACH-3102. The profound activity of ACH-3102 as a single DAA, along with its safety profile and lack of virologic breakthrough to date makes this a very promising compound to study further in combination with other oral agents, including sovaprevir, for the treatment of HCV."

Overall, ACH-3102 was well-tolerated and demonstrated a safety profile consistent with that seen during Phase 1 trials in both healthy subjects and HCV-infected patients. No patients experienced virologic breakthrough while on treatment and no patients discontinued treatment due to an adverse event. Final study results are expected to be submitted for presentation at a medical conference later this year.

Virologic End Points
Total 8 subjects enrolled RVR ETR SVR4
n = 8 n = 8 n = 8
# of subjects 6 / 8 6 / 8* 5 / 8 **
(%) (75%) (75%) (63%)
RVR = Rapid Virologic Response, HCV RNA < LLOQ ( < 25 IU/mL) at week 4 of treatment
ETR = End of Treatment Response, HCV RNA < LLOQ ( < 25 IU/mL) at week 12 of treatment
* The 2 patients who did not achieve ETR were started on pegylated interferon, ribavirin and telaprevir at the end of the 12-week treatment period, and demonstrated undetectable viral levels beginning at week 13.
** 1 patient with virologic relapse at week 15.

"We believe that these interim results further strengthen our position that ACH-3102 is a differentiated NS5A inhibitor possessing attributes that make it a true second-generation compound," commented Michael D. Kishbauch, President and Chief Executive Officer of Achillion. "The safety and efficacy profile support our recently initiated Phase 2 -007 trial evaluating 12 weeks of our protease inhibitor, sovaprevir, in combination with ACH-3012 for the treatment of genotype 1 HCV. With that study now underway, we look forward to reporting interim results beginning in the third quarter of this year, and will continue to explore and execute opportunities to combine our agents with other compounds that could further shorten the treatment duration or provide additional flexibility for treatment regimens to broadly cure HCV."

About ACH-3102

The NS5A protein is a clinically validated target that serves multiple functions at various stages of the HCV life cycle including involvement in virion production, interaction with host proteins and association with interferon-resistance. ACH-3102, Achillion's second generation NS5A inhibitor, has demonstrated potent activity against all HCV genotypes in vitro and in preclinical studies achieved additive to synergistic activity when combined with NS3 protease inhibitors, NS5B polymerase inhibitors, interferon and ribavirin. In preclinical studies, ACH-3102 demonstrated excellent potency, in the pico-molar range, against wild type HCV RNA replication, as well as potency against resistant mutants that have been identified in clinical studies. ACH-3102 was deemed to be safe and well-tolerated in Phase 1 development and achieved mean maximal reductions in HCV RNA of 3.78 log10 after a single dose. ACH-3102 has been granted fast track designation by the FDA and is currently being evaluated in Phase 2 for the treatment of HCV.

About HCV

The hepatitis C virus is the most common cause of viral hepatitis, which is an inflammation of the liver. It is currently estimated that more than 170 million people are infected with HCV worldwide including more than 5 million people in the United States, making HCV more than twice as widespread as HIV. Three-fourths of the global HCV patient population is undiagnosed; it is a silent epidemic and a major global health threat. Chronic hepatitis, if left untreated, can lead to permanent liver damage that can result in the development of liver cancer, liver failure or death. Few therapeutic options currently exist for the treatment of HCV infection. The current standard of care is limited by its specificity for certain types of HCV, significant side-effect profile, and injectable route of administration.

About Achillion Pharmaceuticals

Achillion is an innovative pharmaceutical company dedicated to bringing important new treatments to patients with infectious disease. Achillion's proven discovery and development teams have advanced multiple product candidates with novel mechanisms of action. Achillion is focused on solutions for the most challenging problems in infectious disease including HCV and resistant bacterial infections. For more information on Achillion Pharmaceuticals, please visit www.achillion.com or call 1-203-624-7000 begin_of_the_skype_highlighting 1-203-624-7000 end_of_the_skype_highlighting.

Forward-Looking Statements

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 important factors that could cause actual results to differ materially from those indicated by such forward-looking statements, including statements with respect to: the expected potency, safety, tolerability, effectiveness and other characteristics of sovaprevir and ACH-3102; and Achillion's expectations regarding timing for the commencement, completion and reporting of results of its clinical trials of both ACH-3102 in combination with ribavirin and sovaprevir in combination with ACH-3102. We may use words such as "expect," "anticipate," "project," "intend," "plan," "believe," "seek," " estimate," and "may" and similar expressions to identify such forward-looking statements. Among the important factors that could cause actual results to differ materially from those indicated by such forward-looking statements are risks relating to, among other things Achillion's ability to: replicate in later clinical trials positive results found in earlier stage clinical trials of sovaprevir, ACH-3102 and its other product candidates; advance the development of its drug candidates under the timelines it anticipates in current and future clinical trials; obtain necessary regulatory approvals; obtain patent protection for its drug candidates and the freedom to operate under third party intellectual property; establish commercial manufacturing arrangements; identify, enter into and maintain collaboration agreements with appropriate third-parties; compete successfully with other companies that are seeking to develop improved therapies for the treatment of HCV; manage expenses; and raise the substantial additional capital needed to achieve its business objectives. These and other risks are described in the reports filed by Achillion with the U.S. Securities and Exchange Commission, including its Annual Report on Form 10-K for the fiscal year ended December 31, 2012 and its subsequent SEC filings.

In addition, any forward-looking statement in this press release represents Achillion's views only as of the date of this press release and should not be relied upon as representing its views as of any subsequent date. Achillion disclaims any duty to update any forward-looking statement, except as required by applicable law.

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