Wu He-shui, Zhang Jin-xiang, Wang Lin, Wang Hui, Wang Feng, Wang Yang, Tian Yuan, Zheng Qi-chang, Wang Chun-you
Emergency Surgery Department, Union Hospital Affiliated to Huazhong Science and Technology University, Wuhan 430022, China.
Zhonghua Gan Zang Bing Za Zhi. 2005 Jun;13(6):447-50.
To study changes of TLR2 signaling pathway expression in Kupffer cells during the process of hepatic ischemia/reperfusion in a mice model and the mechanism of TLR2 signaling pathway participating in hepatic ischemia/reperfusion injury.
BALB/c mice were divided into 3 groups: sham operation (SH), ischemia/reperfusion (I/R) and GdCl3 treatment (Gd) groups. After 4 h of reperfusion, the expression of TLR2 mRNA and membrane TLR2 protein were analyzed in ischemic lobes of the livers, and in Kupffer cells isolated from ischemic lobes. The expression of NF-kappaB in ischemic lobes was also examined. Levels of endotoxin, ALT and TNFalpha were measured at the same time point.
The expressions of TLR2 mRNA and protein in both ischemic hepatic lobes and Kupffer cells isolated from ischemic lobes were increased in the I/R group compared to those in the SH group, as well as the expression of NF-kappaB in ischemic lobes, which was down regulated by intravenous GdCl3 treatment. Levels of ALT and TNFalpha in the portal vein were higher in the I/R group than in the SH group, which also were decreased with treatment of GdCl3. The level of endotoxin in the three groups remained constant.
TLR2 signaling pathway in Kupffer cells is activated during the process of hepatic ischemic/reperfusion injury. The activation of TLR2 signaling pathway in Kupffer cells may play a role in this process.
研究小鼠肝缺血/再灌注模型中枯否细胞TLR2信号通路表达的变化以及TLR2信号通路参与肝缺血/再灌注损伤的机制。
将BALB/c小鼠分为3组:假手术组(SH)、缺血/再灌注组(I/R)和GdCl3处理组(Gd)。再灌注4小时后,分析肝脏缺血叶以及从缺血叶分离的枯否细胞中TLR2 mRNA和膜TLR2蛋白的表达。同时检测缺血叶中NF-κB的表达。在同一时间点测量内毒素、ALT和TNFα水平。
与SH组相比,I/R组缺血肝叶和从缺血叶分离的枯否细胞中TLR2 mRNA和蛋白的表达均增加,缺血叶中NF-κB的表达也增加,静脉注射GdCl3处理可使其下调。I/R组门静脉中ALT和TNFα水平高于SH组,GdCl3处理也使其降低。三组内毒素水平保持恒定。
肝缺血/再灌注损伤过程中枯否细胞TLR2信号通路被激活。枯否细胞中TLR2信号通路的激活可能在此过程中起作用。