Tetsuhiro Shimode, Kazunori Kawaguchi, Masao Honda, Ying-Yi Li, Kazuyuki Kuroki, Kazuhisa Murai, Akihiro Seki, Kouki Nio, Tetsuro Shimakami, Hajime Takatori, Eishiro Mizukoshi, Shuichi Kaneko, Taro Yamashita
The relationship between hepatitis B virus (HBV)-infected hepatocytes and hepatic non-parenchymal cells is crucial for sustaining the pathological conditions of hepatitis B. However, the effects of endothelial cells on viral replication in HBV-infected hepatocytes remain unclear. To investigate these effects, we designed direct and indirect co-culture systems comprising HBV-integrated cells and endothelial cells. Our findings showed that endothelial cells potentiated viral replication in HBV-integrated cells. However, antibodies against hepatocyte growth factor (HGF), a humoral factor secreted by endothelial cells, attenuated the upregulated viral replication observed in HBV-integrated cells co-cultured with endothelial cells. In addition, HGF dose-dependently upregulated viral replication in HBV-integrated cells or HBV-transfected cells, reaching a peak at 5-10 ng/ml. In terms of the intracellular signaling pathways downstream of the c-Met receptor, to which HGF binds, the STAT3 and PI3K-Akt-mTOR pathways were correlated with viral replication in HBV-integrated cells co-cultured with endothelial cells or treated with HGF. Furthermore, both endocytosis inhibitors and lysosome inhibitors individually blocked the HGF dose-dependent increase in viral replication in HBV-integrated cells. In conclusion, our study provides novel evidence that endothelial cells can secrete HGF to potentiate viral replication in HBV-infected hepatocytes in the microenvironment of hepatitis B. Focusing on HGF, HGF shows peak effects on HBV replication in a dose-dependent manner.