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Ursolic acid reverses liver fibrosis by inhibiting interactive NOX4/ROS and RhoA/ROCK1 signalling pathways

机译:熊果酸通过抑制相互作用的NOX4 / ROS和RhoA / ROCK1信号通路逆转肝脏纤维化

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摘要

Liver fibrosis is the reversible deposition of extracellular matrix (ECM) and scar formation after liver damage by various stimuli. The interaction between NOX4/ROS and RhoA/ROCK1 in liver fibrosis is not yet clear. Ursolic acid (UA) is a traditional Chinese medicine with anti-fibrotic effects, but the molecular mechanism underlying these effects is still unclear. We investigated the interaction between NOX4/ROS and RhoA/ROCK1 during liver fibrosis and whether these molecules are targets for the anti-fibrotic effects of UA. First, we confirmed that UA reversed CCl4-induced liver fibrosis. In the NOX4 intervention and RhoA intervention groups, related experimental analyses confirmed the decrease in CCl4-induced liver fibrosis. Next, we determined that the expression of NOX4 and RhoA/ROCK1 was decreased in UA-treated liver fibrotic mice. Furthermore, RhoA/ROCK1 expression was decreased in the NOX4 intervention group, but there was no significant change in the expression of NOX4 in the RhoA intervention group. Finally, we found that liver fibrotic mice showed a decline in their microbiota diversity and abundance, a change in their microbiota composition, and a reduction in the number of potential beneficial bacteria. However, in UA-treated liver fibrotic mice, the microbiota dysbiosis was ameliorated. In conclusion, the NOX4/ROS and RhoA/ROCK1 signalling pathways are closely linked to the development of liver fibrosis. UA can reverse liver fibrosis by inhibiting the NOX4/ROS and RhoA/ROCK1 signalling pathways, which may interact with each other.
机译:肝纤维化是各种刺激对肝脏造成损伤后细胞外基质(ECM)的可逆沉积和瘢痕形成的过程。 NOX4 / ROS与RhoA / ROCK1在肝纤维化中的相互作用尚不清楚。熊果酸(UAs)是一种具有抗纤维化作用的传统中药,但尚不清楚这些作用的分子机制。我们研究了肝纤维化过程中NOX4 / ROS和RhoA / ROCK1之间的相互作用,以及这些分子是否是UA抗纤维化作用的靶标。首先,我们确认UA逆转了CCl4诱导的肝纤维化。在NOX4干预组和RhoA干预组中,相关实验分析证实CCl4诱导的肝纤维化减少。接下来,我们确定在UA治疗的肝纤维化小鼠中NOX4和RhoA / ROCK1的表达降低。此外,NOx4干预组中RhoA / ROCK1表达降低,但RhoA干预组中NOx4表达没有明显变化。最后,我们发现肝纤维化小鼠的微生物群多样性和丰度下降,微生物群组成发生变化,潜在有益细菌的数量减少。然而,在UA治疗的肝纤维化小鼠中,微生物群失调得以改善。总之,NOX4 / ROS和RhoA / ROCK1信号通路与肝纤维化的发展密切相关。 UA可以通过抑制可能彼此相互作用的NOX4 / ROS和RhoA / ROCK1信号通路来逆转肝纤维化。

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