Tian Ye, Deng Han, Han Lei, Hu Sijun, Qi Xingshun
Department of Gastroenterology, General Hospital of Shenyang Military Area, Shenyang, Liaoning Province, China.
Yuebei People's Hospital, Shaoguan, Guangdong Province, China.
J Transl Int Med. 2018 Jun 26;6(2):66-69. doi: 10.2478/jtim-2018-0018. eCollection 2018 Jun.
Budd-Chiari syndrome (BCS) leads to the development of liver fibrosis in most of the cases. However, the mechanism of BCS-related liver fibrosis is unclear, and it may be largely different from that induced by chronic viral hepatitis. Hepatic stellate cell (HSC) and its specific marker CD248/endosialin are known to play an important regulatory role in the development of liver fibrosis. Additionally, hypoxia microenvironment and hypoxia-inducible factor (HIF) are involved in the regulation of CD248/endosialin. Therefore, we hypothesize that hypoxia microenvironment which develops due to BCS can regulate the expression of CD248/endosialin in HSC via HIF signaling pathway, which then affects the function of HSC and development of liver fibrosis. To confirm the hypothesis, two major investigations are necessary: (1) in the BCS animal model and clinical studies, the relationship between the severity of liver fibrosis and the expression of HIF and CD248/endosialin in HSC will be explored; and (2) in the cell system, the effect of hypoxic microenvironment, HIF-1α or HIF-2α, on the expression of CD248/endosialin in HSC will be explored. It will be important to elucidate whether HIF signaling pathway regulates the expression of CD248/endosialin, thereby inducing the development of BCS-related liver fibrosis.
布加综合征(BCS)在大多数情况下会导致肝纤维化的发生。然而,BCS相关肝纤维化的机制尚不清楚,可能与慢性病毒性肝炎所致的肝纤维化有很大不同。肝星状细胞(HSC)及其特异性标志物CD248/内涎蛋白在肝纤维化的发生发展中起着重要的调节作用。此外,缺氧微环境和缺氧诱导因子(HIF)参与了CD248/内涎蛋白的调节。因此,我们推测BCS导致的缺氧微环境可通过HIF信号通路调节HSC中CD248/内涎蛋白的表达,进而影响HSC的功能及肝纤维化的发展。为证实这一推测,需要进行两项主要研究:(1)在BCS动物模型和临床研究中,探讨肝纤维化严重程度与HSC中HIF及CD248/内涎蛋白表达之间的关系;(2)在细胞体系中,探讨缺氧微环境、HIF-1α或HIF-2α对HSC中CD248/内涎蛋白表达的影响。阐明HIF信号通路是否调节CD248/内涎蛋白的表达,从而诱导BCS相关肝纤维化的发展至关重要。