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Salvianolate ameliorates oxidative stress and podocyte injury through modulation of NOX4 activity in db/db mice

机译:Salvianolate通过调节DB / DB小鼠的NOx4活性来改善氧化应激和泛骨细胞损伤

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摘要

Podocyte injury is associated with albuminuria and the progression of diabetic nephropathy (DN). NADPH oxidase 4 (NOX4) is the main source of reactive oxygen species (ROS) in the kidney and NOX4 is up‐regulated in podocytes in response to high glucose. In the present study, the effects of Salvianolate on DN and its underlying mechanisms were investigated in diabetic db/db mice and human podocytes. We confirmed that the Salvianolate administration exhibited similar beneficial effects as the NOX1/NOX4 inhibitor GKT137831 treated diabetic mice, as reflected by attenuated albuminuria, reduced podocyte loss and mesangial matrix accumulation. We further observed that Salvianolate attenuated the increase of Nox4 protein, NOX4‐based NADPH oxidase activity and restored podocyte loss in the diabetic kidney. In human podocytes, NOX4 was predominantly localized to mitochondria and Sal B treatment blocked HG‐induced mitochondrial NOX4 derived superoxide generation and thereby ameliorating podocyte apoptosis, which can be abrogated by AMPK knockdown. Therefore, our results suggest that Sal B possesses the reno‐protective capabilities in part through AMPK‐mediated control of NOX4 expression. Taken together, our results identify that Salvianolate could prevent glucose‐induced oxidative podocyte injury through modulation of NOX4 activity in DN and have a novel therapeutic potential for DN.
机译:泛细胞损伤与白蛋白尿和糖尿病肾病(DN)的进展有关。 NADPH氧化酶4(NOX4)是肾脏中反应性氧物质(ROS)的主要来源,NOx4响应于高葡萄糖在足细胞中上调。在本研究中,在糖尿病DB / DB小鼠和人孔细胞中研究了Salvianolate对DN及其潜在机制的影响。我们证实,Salvianolate施用表现出与NOx1 / NOX4抑制剂GKT137831处理的糖尿病小鼠相似的有益效果,如通过减毒的白蛋白尿,降低的泛细胞损失和Mesangial基质积累的反映。我们进一步观察到Salvianolate衰减NOx4蛋白的增加,NOx4基NADPH氧化酶活性和糖尿病肾的恢复孔细胞损失。在人龟细胞中,NOX4主要局部地定位于线粒体和SAL B处理阻断的HG诱导的线粒体NOx4衍生的超氧化物产生,从而改善了多粒细胞凋亡,其可以通过AMPK敲低消除。因此,我们的结果表明,SAL B部分通过AMPK介导的NOX4表达进行了肾脏保护能力。我们的结果鉴定,Salvianolate可以通过调节DN中的NOx4活性来防止葡萄糖诱导的氧化致纤维细胞损伤,并具有DN的新治疗潜力。

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