首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >MiR-203 Targets to the 3′-UTR of SLUG to Suppress Cerebral Infarction-Induced Endothelial Cell Growth and Motility
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MiR-203 Targets to the 3′-UTR of SLUG to Suppress Cerebral Infarction-Induced Endothelial Cell Growth and Motility

机译:miR-203靶向SLUG的3'-UTR以抑制脑梗死诱导的内皮细胞生长和运动

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Cerebral infarction is one of the leading causes of death worldwide, in which angiogenesis plays a critical role. On the other hand, accumulating evidence has demonstrated that microRNAs (miRNAs) function as key modulators in the formation and progression of cerebral infarction. However, the molecular mechanisms of miRNAs underlying cerebral infarction-associated angiogenesis remain unclear. In the present study, we indicated that the expression of miR-203 was significantly downregulated in serum samples derived from patients with cerebral infarction and in mice brain samples following middle cerebral artery occlusion (MCAO) compared with healthy controls. In vitro , the expression of miR-203 was obviously downregulated in hypoxia-induced human umbilical vein vascular endothelial cells (HUVECs). Functionally, ectopic expression of miR-203 drastically suppressed HUVEC proliferation, invasion, and migration. In addition, SLUG, a zinc finger transcriptional repressor, was identified as a direct target of miR-203 and was negatively correlated with miR-203 expression in MCAO mice and in hypoxia-induced HUVECs. Furthermore, overexpression of SLUG reversed the inhibitory effect of miR-203 on proliferation, invasion, and migration abilities of HUVECs. Taken together, our research provides a novel insight of the miR-203-SLUG axis into cerebral infarction-associated endothelial behaviors and may offer a powerful therapeutic target of cerebral ischemia.
机译:脑梗死是全世界的主要死因之一,其中血管生成起着关键作用。另一方面,累积证据表明MicroRNAS(miRNA)作为脑梗死的形成和进展中的关键调节剂。然而,MiRNA潜在的脑梗塞相关血管生成的分子机制仍然不清楚。在本研究中,我们表示了miR-203的表达从患者脑梗塞和小鼠脑样品在以下与健康对照相比,大脑中动脉闭塞(MCAO)的血清样品中显著下调。体外,MIR-203的表达明显下调缺氧诱导的人脐静脉内皮细胞(HUVEC)。在功能上,miR-203的异位表达急剧抑制HUVEC增殖,侵袭和迁移。此外,SLUIs是锌指转录阻遏物被鉴定为miR-203的直接靶标,并与MCAO小鼠的miR-203表达和缺氧诱导的Huvecs负相关。此外,SLUG的过表达逆转了MIR-203对HUVECS的增殖,侵袭和迁移能力的抑制作用。我们的研究成功,提供了MiR-203-Slux轴的新颖洞察力进入脑梗塞相关的内皮行为,并可提供脑缺血的强大治疗靶标。

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