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Hedgehog signaling pathway regulates hexavalent chromium-induced liver fibrosis by activation of hepatic stellate cells

机译:刺猬信号通路通过激活肝星状细胞来调节六价铬诱导的肝纤维化

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With the spread of hexavalent chromium [Cr(VI)] contamination, risk of exposure in non-occupational populations is increasing. The liver is the main target organ for Cr(VI) accumulation; however, the effect of long-term Cr(VI) exposure on liver toxicity is largely unknown. In this study, we investigated the effect of chronic Cr(VI) exposure on liver fibrosis and its possible mechanism. Mice were injected with Cr(VI) for two months, and our results showed Cr(VI) treatment caused liver toxicity characterized by liver structure disorganization, liver dysfunction, and antioxidant enzyme system inhibition. The development of liver fibrosis was also found via the emergence of collagen fibril deposition, increased expression of extracellular matrix-related genes, activation of hepatic stellate cells (HSCs) and increase the expression levels of Hedgehog (Hh) signaling pathway-related molecules. To demonstrate the role of Hh signaling in the regulation of Cr(VI)-induced liver fibrosis, genetically modified mice with heterozygous deficiency of Shh (Shh(+/-)) were used. In the Shh(+/-) mice, Hh signaling, HSCs activation and liver fibrosis development were all ameliorated. In conclusion, we demonstrated that Cr(VI)induced liver fibrosis development resulted from Hh pathway-mediated HSCs activation. Our findings strongly suggest that inhibition of Hh pathway may help in the development of new strategies for Cr(VI)-associated liver fibrosis.
机译:随着六价铬的涂抹污染,非职业群体暴露的风险正在增加。肝脏是Cr(vi)积累的主要目标器官;然而,长期Cr(vi)暴露对肝脏毒性的影响在很大程度上是未知的。在这项研究中,我们研究了慢性Cr(vi)暴露对肝纤维化及其可能机制的影响。将小鼠用Cr(VI)注射两个月,我们的结果显示Cr(VI)治疗引起的肝脏毒性,其特征在于肝脏结构紊乱,肝功能障碍和抗氧化酶系统抑制。还通过出现胶原纤维沉积,增加细胞外基质相关基因的表达,激活肝星状细胞(HSC)并增加刺猬(HH)信号传导途径相关分子的表达水平的肝纤维化。为了证明HH信号传导在Cr(VI)的调节中的作用,使用具有SHH的杂合缺乏的遗传修饰小鼠(SHH(+/-)。在SHH(+/-)小鼠中,HH信号,HSCs激活和肝纤维化发育都是改善的。总之,我们证明CR(VI)诱导的肝纤维化发育是由HH途径介导的HSC活化产生的。我们的研究结果表明,HH途径的抑制可能有助于开发Cr(VI) - 分配肝纤维化的新策略。

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