Therapeutic efficacy of hepatitis B virus vaccine in treatment of chronic HBV infections: A systematic review and meta-analysis
REVIEWS IN MEDICAL VIROLOGY
Authors: Ghozy, Sherief; Nam, Nguyen Hai; Radwan, Ibrahim; Karimzadeh, Sedighe; Tieu, Thuan Minh; Hashan, Mohammad Rashidul; Abbas, Alzhraa Salah; Eid, Peter Samuel; Vuong, Nguyen Lam; Khang, Nguyen Vinh; Elgabalawy, Eman; Sayed, Ahmed Kamal; Hoa, Pham Thi Le; Huy, Nguyen Tien
Abstract
There is a need for improved treatment of patients with chronic hepatitis B (CHB). We reviewed the literature to explore the efficacy of HB vaccines alone or in combination therapy (CT) with antiviral drugs in CHB patients and to meta-analyze data from randomized controlled trials. We conducted a systematic search in ten databases. All studies investigating the efficacy of HBV vaccine in HBV infected patients were included with no restrictions. Among 1359 studies initially identified, 23 studies (n = 1956 patients) were included for the final analysis. CT showed a significant reduction of HBV DNA compared with analogue monotherapy (AM) at the 12-month follow-up period (odds ratio (OR) = 2.835, 95% confidence interval (CI) [1.275, 6.306], p = .011). Additionally, CT also remarkably induce HbsAg loss in comparison with AM (OR = 11.736, 95% CI [1.841, 74.794], p = .009). Our pooled data revealed no difference between treatment and control regarding alanine aminotransferase normalization, HBeAg seroconversion, and HBeAg disappearance. In addition, CT using vaccine and NAs resulted in a statistically significant higher incidence of adverse effects than AM. The therapeutic effects of combination therapy for patients with CHB were encouraging, but future studies need to investigate all possible treatment combinations and assess their cost-effectiveness.
A novel recombinant cccDNA-based mouse model with long term maintenance of rcccDNA and antigenemia
ANTIVIRAL RESEARCH
Authors: Wu, Min; Wang, Cong; Shi, Bisheng; Fang, Zhong; Qin, Boyin; Zhou, Xiaohui; Zhang, Xiaonan; Yuan, Zhenghong
Abstract
The covalently closed circular DNA (cccDNA) of hepatitis B virus (HBV) is critical for viral persistence in vivo. The lack of reliable, characterized and convenient small animal models for studying cccDNA persistence has long been a bottleneck for basic and translational research on HBV cure. A mouse model that can maintain intrahepatic cccDNA is urgently needed. Through combining the Cre//oxP-mediated recombination and adeno-associated virus (AAV) vector delivery strategy, we establish a novel recombinant cccDNA (rcccDNA) mouse model. AAV-rcccDNA mice supported long-term maintenance of intrahepatic rcccDNA which could be easily detected by Southern blotting within 30 weeks after transduction. Quantitative PCR could detect the rcccDNA signal throughout the experiment duration (> 51 weeks). Furthermore, rcccDNA supported persistent serum antigenemia (> 72 weeks) and intrahepatic HBsAg and HBcAg expression (> 51 weeks). Flow cytometry analysis and single-cell RNA sequencing showed that AAV-rcccDNA mice displayed a compromised CD8(+) T cell response. Meanwhile, minimal intrahepatic inflammation and fibrosis were observed. Furthermore, three anti-HBV compounds, AKEX0007, a post-transcriptional inhibitor, Bay 41-4109, a capsid allosteric modulator, and Entecavir were assessed in this AAV-rcccDNA mouse model. The changes of viral markers by these drugs were consistent with their mode of action although neither of them diminished the level of rcccDNA. This mouse model recapitulated the immune tolerant state of HBV infection with long term maintenance of cccDNA and antigenemia, which will provide a suitable platform for studying cccDNA persistence and developing intervention strategies that would eventually break the tolerance and clear the virus.