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首页> 外文期刊>Clinical Science >Involvement of the Hippo pathway in regeneration and fibrogenesis after ischaemic acute kidney injury: YAP is the key effector
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Involvement of the Hippo pathway in regeneration and fibrogenesis after ischaemic acute kidney injury: YAP is the key effector

机译:Hippo通路参与缺血性急性肾损伤后再生和纤维生成的作用:YAP是关键效应子

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摘要

Renal tubule cells can recover after they undergo AKI (acute kidney injury). An incomplete repair of renal tubules can result in progressive fibrotic CKD (chronic kidney disease). Studies have revealed the relationship between tubular epithelial cells and kidney fibrogenesis. However, the underlying mechanism remains unclear. Hippo pathway components were evaluated in complete/incomplete repair of I/R (ischaemia/reperfusion) AKI rat models, HK-2 cells and AKI human renal biopsy samples. We found that the expression levels of the Hippo pathway components changed dynamically during kidney regeneration and fibrogenesis in rat models of I/R-induced AKI and human renal biopsy samples. The transcription cofactor YAP (Yes-associated protein) might be a key effector of renal regeneration and fibrogenesis. Our results showed further that YAP might elicit both beneficial and detrimental effects on I/R AKI. After I/R injury occurred, YAP could promote the repair of the injured epithelia. The constant YAP increase and activation might be related to interstitial fibrosis and abnormal renal tubule differentiation. These results indicate that the proper modulation of the Hippo pathway, specifically the transcription cofactor YAP, during repair might be a potent therapeutic target in AKI-CKD transition after I/R injury.
机译:肾小管细胞经过AKI(急性肾损伤)后可以恢复。肾小管修复不完全会导致进行性纤维化CKD(慢性肾脏疾病)。研究表明,肾小管上皮细胞与肾纤维化之间的关系。但是,其潜在机制仍不清楚。在I / R(缺血/再灌注)AKI大鼠模型,HK-2细胞和AKI人肾活检样本的完全/不完全修复中评估了Hippo通路的成分。我们发现,在I / R诱导的AKI和人类肾脏活检样本的大鼠模型中,在肾脏再生和纤维形成过程中,Hippo通路成分的表达水平动态变化。转录辅因子YAP(是相关蛋白)可能是肾脏再生和纤维形成的关键效应器。我们的结果进一步表明,YAP可能对I / R AKI产生有益和有害的影响。 I / R损伤发生后,YAP可以促进受损上皮的修复。 YAP的持续增加和激活可能与间质纤维化和异常的肾小管分化有关。这些结果表明修复过程中对Hippo途径的正确调节,特别是转录辅因子YAP,可能是I / R损伤后AKI-CKD过渡的有效治疗靶标。

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