抑制ROCK2可减轻肾纤维化和近端小管上皮细胞代谢紊乱。

Ran You, Wei Zhou, Yanwei Li, Yue Zhang, Songming Huang, Zhanjun Jia, Aihua Zhang
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引用次数: 13

摘要

在单侧输尿管梗阻(UUO)模型中,rho相关激酶(ROCKs)的非特异性抑制减轻了肾脏纤维化,而ROCK1的基因缺失对小鼠肾脏病理没有影响。因此,ROCK2是否在肾小管间质纤维化中起作用还有待明确。在本研究中,采用选择性抑制剂或遗传方法来研究ROCK2在肾小管间质纤维化中的作用。在慢性肾脏疾病(CKDs)患者的纤维化肾脏中,我们观察到ROCK2的表达增强,并与间质纤维化呈正相关。在小鼠中,在UUO模型中,ROCK2蛋白水平呈时间依赖性升高。KD025以50 mg/kg/天的剂量腹腔注射治疗CKD动物,马松三色染色显示的肾脏纤维化明显减轻,纤维化基因表达降低。在体外,通过KD025或ROCK2敲低/敲除抑制ROCK2可显著减弱转化生长因子-β1 (TGF-β1)刺激的小鼠肾近端小管上皮细胞(mptc)的促纤维化反应。此外,细胞代谢受损被认为是CKD的一个重要致病因素。通过代谢组学分析,我们发现KD025恢复了代谢紊乱,包括TGF-β1刺激的小管上皮细胞中受损的谷胱甘肽代谢。与此一致,KD025增加了纤维化模型中的抗氧化应激酶和核红细胞2相关因子2 (Nrf2)。此外,KD025在体外可降低纤维化肾脏中巨噬细胞的浸润和炎症反应,钝化巨噬细胞的活化。总之,抑制ROCK2可能是CKD肾小管间质纤维化的一种潜在的新疗法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibition of ROCK2 alleviates renal fibrosis and the metabolic disorders in the proximal tubular epithelial cells.

Non-specific inhibition of Rho-associated kinases (ROCKs) alleviated renal fibrosis in the unilateral ureteral obstruction (UUO) model, while genetic deletion of ROCK1 did not affect renal pathology in mice. Thus, whether ROCK2 plays a role in renal tubulointerstitial fibrosis needs to be clarified. In the present study, a selective inhibitor against ROCK2 or genetic approach was used to investigate the role of ROCK2 in renal tubulointerstitial fibrosis. In the fibrotic kidneys of chronic kidney diseases (CKDs) patients, we observed an enhanced expression of ROCK2 with a positive correlation with interstitial fibrosis. In mice, the ROCK2 protein level was time-dependently increased in the UUO model. By treating CKD animals with KD025 at the dosage of 50 mg/kg/day via intraperitoneal injection, the renal fibrosis shown by Masson's trichrome staining was significantly alleviated along with the reduced expression of fibrotic genes. In vitro, inhibiting ROCK2 by KD025 or ROCK2 knockdown/knockout significantly blunted the pro-fibrotic response in transforming growth factor-β1 (TGF-β1)-stimulated mouse renal proximal tubular epithelial cells (mPTCs). Moreover, impaired cellular metabolism was reported as a crucial pathogenic factor in CKD. By metabolomics analysis, we found that KD025 restored the metabolic disturbance, including the impaired glutathione metabolism in TGF-β1-stimulated tubular epithelial cells. Consistently, KD025 increased antioxidative stress enzymes and nuclear erythroid 2-related factor 2 (Nrf2) in fibrotic models. In addition, KD025 decreased the infiltration of macrophages and inflammatory response in fibrotic kidneys and blunted the activation of macrophages in vitro. In conclusion, inhibition of ROCK2 may serve as a potential novel therapy for renal tubulointerstitial fibrosis in CKD.

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