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Enanta Pharmaceuticals Presents New Preclinical Data on Compounds Targeting Hepatitis B Virus and Non-Alcoholic Steatohepatitis at The International Liver Congress™ 2019
today
WATERTOWN, Mass.--(BUSINESS WIRE)--Apr 11, 2019--Enanta Pharmaceuticals, Inc. (NASDAQ:ENTA), a research and development-focused biotechnology company dedicated to creating small molecule drugs for viral infections and liver diseases, announced that new preclinical data from Enanta’s wholly-owned development programs for hepatitis B virus (HBV) and non-alcoholic steatohepatitis (NASH) will be presented at The International Liver Congress™ (ILC) 2019, in Vienna, Austria.
New data include a presentation on development candidate EDP-514, Enanta’s core inhibitor for HBV that is expected to enter into a Phase 1 clinical study in the second half of 2019. Presentations also focus on Enanta’s NASH program, featuring new data on the FXR agonist EDP-305, and including in vivo data on EP-027315 and EP-026856, two prototype compounds from Enanta’s ASK-1 (apoptosis signal-regulating kinase 1 ) inhibitor project.
“Enanta continues to generate an abundance of preclinical and clinical data on our development candidates EDP-514 for HBV, and EDP-305 for NASH,” stated Jay R. Luly, President and CEO, Enanta. “Our extensive scientific research provides us the knowledge and confidence to move forward our best candidates with the highest likelihood of success. We look forward to announcing clinical results of EDP-305 in our ARGON-1 Phase 2 study in NASH patients in the third quarter and to initiating a phase 1 study with EDP-514 during the second half of 2019.”
A summary of the poster presentations at The International Liver Congress™ (ILC) 2019 are below.
Full abstracts can be found at http://ilc-congress.eu.
April 11, 2019 - 09:00 - 19:00
THU-084: “A comparative study of anti-Fibrotic therapeutics using aptamer-based quantitative proteomics in a rat model of non-alcoholic steatohepatitis cirrhosis,” Smitha Krishnan, United States
Data in this poster demonstrate that in a preclinical rat model of NASH cirrhosis utilizing an aptamer-based proteomics assay, it was possible to identify non-invasive biomarkers of treatment response and potential pathways activated by different mechanisms currently under study in clinical trials by Enanta and others. Three anti-fibrotic compounds were evaluated: two ASK-1 inhibitors, Enanta compound EP-026856 and Gilead’s selonsertib, and one FXR agonist, Enanta compound EDP-305. While all three drugs were effective in inhibiting fibrosis development in this 12-week treatment model, EP-026856 showed the greatest effect on returning non-invasive serum markers back to baseline.
April 12, 2019 - 09:00 - 17:00
FRI-191: “EDP-514, a novel HBV core inhibitor with potent antiviral activity both in vitro and in vivo, ” Kai Lin, United States
Data in this poster demonstrate that EDP-514, a novel class II HBV core inhibitor, is a potent inhibitor of HBV replication, and prevents the de novo formation of new cccDNA in primary human hepatocytes when given early during infection. Data also show that EDP-514 is pan-genotypic, and that combinations of EDP-514 with nucleoside reverse-transcriptase inhibitors (NRTIs, current anti-viral therapies for HBV) or a class I core inhibitor result in additive to synergistic antiviral effects in vitro. ln vivo, EDP-514 demonstrates excellent in vivo efficacy with >4-log viral load reduction in HBV-infected PXB mice.
FRI-340: “In vivo effects of a novel inhibitor of apoptosis signal-regulating kinase 1 in mouse models of liver injury and metabolic disease,” Manuel Roqueta-Rivera, United States
Data in this poster demonstrate that EP-027315 is a potent and highly selective inhibitor of ASK-1. It inhibits hepatic ASK-1 and decreases liver pJNK (one of the stress-activated protein kinase signaling pathways influencing inflammation in liver cells), plasma ALT (a common marker of potential liver damage), and apoptosis (cell death) in a dose-dependent manner in a mouse acute injury model. EP-027315 also protects against liver injury in a diet-induced obesity model. Suppression of markers of liver injury, inflammation, and apoptotic pathways are observed at both a transcriptional and protein level. |
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