Arrowhead Pharmaceuticals today announced results from studies of ARC-520, a prior-generation RNAi therapeutic candidate against chronic hepatitis B virus (HBV) infection, in a Phase 2 clinical study in HBV patients and a complementary study in chimpanzees chronically infected with HBV. These studies demonstrated that HBV DNA integrated into the host genome is an under-appreciated source of HBV surface antigen (HBsAg), a key protein implicated in maintaining chronic HBV infection.
In many patients, integrated HBV DNA appeared to be the dominant source of HBsAg production. The findings expand the understanding of HBV biology and host interactions, and could have important implications for future trial design and endpoint expectations for new therapies developed to cure chronic HBV. These data from study, “RNAi-based treatment of chronically infected patients and chimpanzees implicates integrated hepatitis B virus DNA as a source of HBsAg” were published in Science Translational Medicine.
Bruce D. Given, M.D., chief operating officer and head of R&D for Arrowhead Pharmaceuticals, said: “Our experience from Arrowhead’s multiple clinical studies of our prior therapeutic candidates ARC-520 and ARC-521, and the extensive non-clinical research we completed, have provided us with invaluable insights that guide the development path of follow-on candidate ARO-HBV, a new therapy for patients with chronic HBV that utilizes the company’s next generation Targeted RNAi Molecule (TRiMTM) platform. We think long-term immune control of HBV will require reduction of HBsAg from both integrated DNA and cccDNA, which ARO-HBV is designed to do. Importantly, the findings described in the Science Translational Medicine paper extend beyond HBsAg in showing reductions in other viral antigens and viral DNA. The ARC-520 and ARC-521 data suggest that an RNAi-based approach, like ARO-HBV, could serve as a cornerstone therapy for combinations intended to cure chronic HBV because it can act as a direct anti-viral against all HBV viral products and has the potential to synergize with other agents.”