Puerarin alleviates the high glucose-induced oxidative stress via the RAGE/PKC/NOX4 axis in renal mesangial cells.

IF 1.8 4区 医学 Q4 TOXICOLOGY Journal of Toxicological Sciences Pub Date : 2024-01-01 DOI:10.2131/jts.49.497
Hongbin Wang, Wei Li
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Abstract

Diabetic nephropathy (DN) is a severe microvascular complication of diabetes, of which progression is related to high glucose (HG)-induced oxidative stress in renal mesangial cells. Our study aims to explore the antioxidant activity and the underlying mechanism of Puerarin (Pu) in renal mesangial cells exposed to HG. After the cells finished different treatments, DCFH-DA was used to detect the generation of ROS while the expression of AGE, MDA, SOD, and GSH-PX was measured by the ELISA and corresponding kits. The cell morphology was captured by optical microscopy. The mRNA expressions of RAGE, PKCα, PKCβ, PKCγ, and NOX4 were calculated by RT-PCR assays, while the protein expressions of RAGE, NOX4, and PKCβ were quantified via western blotting. Compared with the normal glucose (NG) group, the ROS level, SOD activity, and GSH-PX expression were markedly reduced in the HG group while the MDA expression was increased in the HG group. Then, Pu treatment was proved to significantly prevent the HG-induced up-regulation of ROS level, MDA expression, and down-regulation of SOD activity and GSH-PX expression. Besides, Pu treatment can notably inhibit the AGE expression and reverse the increased RAGE, PKCβ, and NOX4 expressions by HG environment at both RNA and protein levels. Moreover, the antioxidant effect of Pu against access glucose could not be observed in PKCβ knockdown cells. Pu can alleviate the HG-induced oxidative stress via the RAGE/PKC/NOX4 axis in renal mesangial cells, which innovatively suggests the therapeutic potential of Pu for DN treatment.

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葛根素通过RAGE/PKC/NOX4轴减轻高血糖诱导的肾间质细胞氧化应激。
糖尿病肾病(DN)是一种严重的糖尿病微血管并发症,其进展与高糖(HG)诱导的肾间质细胞氧化应激有关。我们的研究旨在探讨葛根素(Pu)在暴露于 HG 的肾间质细胞中的抗氧化活性及其内在机制。在细胞完成不同的处理后,用 DCFH-DA 检测 ROS 的产生,同时用 ELISA 和相应的试剂盒检测 AGE、MDA、SOD 和 GSH-PX 的表达。细胞形态由光学显微镜捕捉。RT-PCR法计算了RAGE、PKCα、PKCβ、PKCγ和NOX4的mRNA表达量,Western印迹法定量了RAGE、NOX4和PKCβ的蛋白表达量。与正常葡萄糖(NG)组相比,HG 组的 ROS 水平、SOD 活性和 GSH-PX 表达明显降低,而 MDA 表达升高。实验证明,Pu 能显著阻止 HG 诱导的 ROS 水平和 MDA 表达的上调,以及 SOD 活性和 GSH-PX 表达的下调。此外,Pu 还能明显抑制 AGE 的表达,并在 RNA 和蛋白水平上逆转 HG 环境导致的 RAGE、PKCβ 和 NOX4 表达的增加。此外,在 PKCβ 敲除的细胞中无法观察到 Pu 对接入葡萄糖的抗氧化作用。Pu能通过RAGE/PKC/NOX4轴缓解HG诱导的肾间质细胞氧化应激,这创新性地提示了Pu治疗DN的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.20
自引率
5.00%
发文量
53
审稿时长
4-8 weeks
期刊介绍: The Journal of Toxicological Sciences (J. Toxicol. Sci.) is a scientific journal that publishes research about the mechanisms and significance of the toxicity of substances, such as drugs, food additives, food contaminants and environmental pollutants. Papers on the toxicities and effects of extracts and mixtures containing unidentified compounds cannot be accepted as a general rule.
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