首页> 美国卫生研究院文献>Aging (Albany NY) >miR-195-5p alleviates acute kidney injury through repression of inflammation and oxidative stress by targeting vascular endothelial growth factor A
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miR-195-5p alleviates acute kidney injury through repression of inflammation and oxidative stress by targeting vascular endothelial growth factor A

机译:miR-195-5p通过靶向血管内皮生长因子A抑制炎症和氧化应激减轻了急性肾脏损伤

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摘要

Acute kidney injury (AKI) is a common renal dysfunction. Renal ischemia-reperfusion (I/R) injury contributes to AKI progression. The microRNA miR-195-5p can act as a crucial tumor inhibitor in various cancers. However, the potential biological effects of miR-195-5p on AKI are not well-understood. We found that miR-195-5p levels were decreased in the serum samples of patients with AKI. Next, we determined miR-195-5p expression in the renal tissues of the rats and found that it was downregulated. Renal function was evaluated and confirmed using blood urea nitrogen and serum Cr levels. In parallel, the hypoxia-induced NRK-52E cell model was employed, and miR-195-5p was found to be markedly reduced under hypoxic conditions. Furthermore, miR-195-5p was modulated in NRK-52E cells. miR-195-5p induced NRK-52E cell proliferation and protected NRK-52E cells against hypoxia-triggered apoptosis. In an I/R mouse model, miR-195-5p alleviated renal injury triggered by I/R. In addition, oxidative stress and inflammatory factor concentrations were assessed using ELISA. The results showed that miR-195-5p mimicked attenuated oxidative stress induced by I/R injury and downregulated the protein expression of inflammatory factors. Moreover, we identified that vascular endothelial growth factor A (VEGFA) was a target gene of miR-195-5p, which could negatively regulate VEGFA expression in vitro. Inhibitors of miR-195-5p subsequently contributed to renal injury, which was reversed by VEGFA loss. In conclusion, miR-195-5p may repress AKI by targeting VEGFA.
机译:急性肾损伤(AKI)是常见的肾功能不全。肾脏缺血再灌注(I / R)损伤有助于AKI进展。 microRNA miR-195-5p可以在多种癌症中起关键性的肿瘤抑制剂的作用。然而,人们对miR-195-5p对AKI的潜在生物学影响还没有充分了解。我们发现,AKI患者的血清样本中的miR-195-5p水平降低。接下来,我们确定了miR-195-5p在大鼠肾组织中的表达,并发现其下调。使用血液尿素氮和血清Cr水平评估并确认肾功能。平行地,使用低氧诱导的NRK-52E细胞模型,并且发现miR-195-5p在低氧条件下显着降低。此外,在NRK-52E细胞中调节了miR-195-5p。 miR-195-5p诱导NRK-52E细胞增殖并保护NRK-52E细胞免受缺氧触发的细胞凋亡。在I / R小鼠模型中,miR-195-5p减轻了I / R触发的肾损伤。另外,使用ELISA评估氧化应激和炎性因子浓度。结果表明,miR-195-5p模拟减轻了I / R损伤引起的氧化应激,并下调了炎症因子的蛋白表达。此外,我们确定血管内皮生长因子A(VEGFA)是miR-195-5p的靶基因,它可以在体外负调节VEGFA的表达。随后,miR-195-5p的抑制剂导致了肾脏损伤,这种损伤可以通过VEGFA的丧失来逆转。总之,miR-195-5p可能通过靶向VEGFA来抑制AKI。

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