Virus-like vesicles expressing multiple antigens for immunotherapy of chronic hepatitis B

Author:

Yarovinsky Timur O.ORCID,Mason Stephen W.,Menon Manisha,Krady Marie M.,Haslip Maria,Madina Bhaskara R.,Ma Xianyong,Moshkani Safiehkhatoon,Chiale Carolina,Pal Anasuya Chattopadhyay,Almassian Bijan,Rose John K.,Robek Michael D.,Nakaar Valerian

Abstract

ABSTRACTInfection with hepatitis B virus (HBV) can initiate chronic hepatitis and liver injury, eventually progressing to liver fibrosis or cancer and causing more than 600,000 deaths each year worldwide. Current treatments for chronic hepatitis B, relying on nucleoside antivirals and interferon, are inadequate and leave an unmet need for immunotherapeutic approaches. This report describes virus-like vesicles (VLV), a form of self-amplifying RNA replicons, which express multiple HBV antigens (polymerase, core, and middle surface) from a single vector (HBV-VLV). The HBV-VLV induces HBV-specific T cell responses to all three HBV antigens. Immunization of naive mice with the multiantigen HBV-VLV renders them resistant to acute challenge with HBV delivered by adeno-associated virus (AAV). Using a chronic model of HBV infection by AAV delivery of HBV, we demonstrate immunotherapeutic potential of the multiantigen HBV-VLV in combination with DNA booster immunization, as 40% of the HBV-VLV-treated mice showed a decline of the serum HBV surface antigen below the detection limit and marked reduction in liver HBV RNA accompanied by induction of HBsAg-specific CD8 T cells. These results warrant further evaluation of multiantigen HBV-VLV for immunotherapy of chronic hepatitis B.IMPORTANCEMore than 240 million people worldwide are chronically infected with hepatitis B virus. Current therapies are not sufficiently effective and are often beyond reach in the developing world. We describe a virus-like vesicle-based immunotherapeutic vaccine that expresses three major antigens of hepatitis B virus as a self-amplifying RNA replicon. By incorporating three HBV antigens in a single vaccine, we ensure broad T cell responses. We demonstrate that immunization with this vaccine protects mice from hepatitis B virus in a model of acute challenge. Importantly, treatment with this vaccine shows 40% efficacy in a mouse model of chronic hepatitis B. Thus, this study paves the way for evaluation of the multi-antigen virus-like vesicles as a tool for immunotherapy of chronic hepatitis B.

Publisher

Cold Spring Harbor Laboratory

Reference37 articles.

1. Molecular biology of hepatitis B virus infection;Virology,2015

2. Hepatitis B Virus Infection — Natural History and Clinical Consequences

3. Chronic Hepatitis B Infection

4. Mechanisms of Hepatitis B Virus Persistence

5. WHO | Hepatitis B. World Health Organization.

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