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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >MALAT1 Protected the Angiogenesis Function of Human Brain Microvascular Endothelial Cells (HBMECs) Under Oxygen Glucose Deprivation/re-oxygenation (OGD/R) Challenge by Interacting with miR-205-5p/VEGFA Pathway
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MALAT1 Protected the Angiogenesis Function of Human Brain Microvascular Endothelial Cells (HBMECs) Under Oxygen Glucose Deprivation/re-oxygenation (OGD/R) Challenge by Interacting with miR-205-5p/VEGFA Pathway

机译:通过与miR-205-5P / VEGFA途径相互作用,保护MALAT1保护人脑微血管内皮细胞(HBMEC)的血管生成函数(HBMECS)攻击(OGD / R)攻击

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Long non-coding RNA MALAT1 was previously revealed to express abnormally in animal and cellular models of stroke, suggesting its indispensable role in stroke. The aims of the present study were to further investigate the functions of MALAT1 and to elucidate the underlying molecular mechanisms. Oxygen glucose deprivation/re-oxygenation (OGD/R) challenge was used in human brain microvascular endothelial cells (HBMECs) to mimic stroke injury in vitro. MALAT1 and miR-205-5p expression levels were evaluated by qRT-PCR. A tube formation assay was employed to verify the angiogenesis of HBMECs. Cell proliferation and apoptosis were evaluated using the ErdU assay and flow cytometry analysis, respectively. The interaction between miR-205-5p and MALAT1 was verified by dual-luciferase reporter assay. MALAT1 and miR-205-5p were both significantly upregulated in the serum of CIS patients and HBMECs under OGD/R, and the tube formation of HBMECs was damaged after OGD/R treatment. Silencing miR-205-5p remarkably promoted HBMEC proliferation and angiogenesis to resist OGD/R injury. Knockdown of MALAT1 markedly inhibited HBMEC proliferation and angiogenesis, and meanwhile promoted apoptosis induced by OGD/R treatment. Most importantly, MALAT1 acted as a competing endogenous RNA (ceRNA) of miR-205-5p via direct bonding with each other in HBMECs under OGD/R damage, indirectly upregulating the downstream targeted gene VEGFA. MALAT1 protected the angiogenesis function of HBMECs under OGD/R conditions by interacting with miR-205-5p/VEGFA pathway. (C) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:前面揭示了长期非编码RNA Malat1以表达卒中的动物和细胞模型异常,表明其中风中不可或缺的作用。本研究的目的是进一步研究马拉特1的功能,并阐明潜在的分子机制。氧血糖剥夺/重新氧合(OGD / R)攻击用于人脑微血管内皮细胞(HBMEC)以模仿体外卒中损伤。通过QRT-PCR评估Malat1和MiR-205-5P表达水平。使用管形成测定以验证HBMECs的血管生成。使用ERDU测定和流式细胞术分析评估细胞增殖和细胞凋亡。通过双荧光素酶报告酶测定验证MIR-205-5P和MALAT1之间的相互作用。 MALAT1和MIR-205-5P均在CIS患者和OGD / R下的HBMEC血清中显着上调,ogd / R处理后HBMEC的管形成损坏。沉默miR-205-5p显着促进了HBMEC的增殖和血管生成,以抵抗OGD / R损伤。 Malat1的敲低明显抑制HBMEC增殖和血管生成,同时促进OGD / R治疗诱导的细胞凋亡。最重要的是,经由MALAT1直接键合充当竞争内源RNA的miR-205-5p的(CERNA)与HBMECs彼此下OGD / R损伤,间接上调下游靶基因VEGFA。通过与MiR-205-5P / VEGFA途径相互作用,MALAT1保护OGD / R条件下HBMECS的血管生成函数。 (c)2020年度IBRO。 elsevier有限公司出版。保留所有权利。

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