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首页> 外文期刊>Translational stroke research >Hypoxia-Induced MicroRNA-212/132 Alter Blood-Brain Barrier Integrity Through Inhibition of Tight Junction-Associated Proteins in Human and Mouse Brain Microvascular Endothelial Cells
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Hypoxia-Induced MicroRNA-212/132 Alter Blood-Brain Barrier Integrity Through Inhibition of Tight Junction-Associated Proteins in Human and Mouse Brain Microvascular Endothelial Cells

机译:通过抑制人和小鼠脑微血管内皮细胞中的紧密结合相关蛋白,缺氧诱导的微小RORNA-212/132改变血脑屏障完整性

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摘要

Blood-brain barrier (BBB) integrity is one of the important elements of central nervous system (CNS) homeostasis. MicroRNAs (miRs) have been demonstrated to play a role in many CNS disorders such as stroke and traumatic brain injury. MiR-212/132 are highly expressed in the CNS but their role at the BBB has not been characterized yet. Thus, we analyzed the expression of miR-212/132 in hypoxic mouse and human brain microvascular endothelial cells (BMEC) as well as in posttraumatic mouse and human brain tissue and serum exosomes. MiR-212/132 expression was detected in brain capillaries by in situ hybridization and was increased up to ten times in hypoxic BMEC. Over-expression of pre-miR-212/132 in BMEC decreased barrier properties and reduced migration of BMEC in the wound healing assay. We identified and validated tight junction proteins claudin-1 (Cldn1), junctional adhesion molecule 3 (Jam3), and tight junction-associated protein 1 (Tjap1) as potential miR-212/132 targets. Over-expression of miRs led to a decrease in mRNA and protein expression of Cldn1, Jam3, and Tjap1, which could be rescued by a respective anti-miR. In conclusion, our study identifies miR-212/132 as critical players at the hypoxic BBB. In addition, we propose three new direct miR-212/132 targets to be involved in miR-212/132-mediated effects on BBB properties.
机译:血脑屏障(BBB)完整性是中枢神经系统(CNS)稳态的重要元素之一。已经证明MicroRNA(MIRS)在许多CNS疾病中发挥作用,例如中风和创伤性脑损伤。 MiR-212/132在CNS中高度表达,但它们在BBB的作用尚未表征。因此,我们分析了缺氧小鼠和人脑微血管内皮细胞(BMEC)中miR-212/132的表达以及错误的小鼠和人脑组织和血清外泌体。通过原位杂交在脑毛细血管中检测miR-212/132表达,并且在缺氧BMEC中增加了10次。 BMEC在BMEC中的MIR-212/132的过度表达降低了阻挡性能下降,并降低了BMEC在伤口愈合测定中的迁移。我们鉴定并验证了紧密的结蛋白克劳德蛋白-1(CLDN1),连接粘附分子3(CLDN1),以及紧密结合的蛋白1(TJAP1)作为潜在的miR-212/132靶标。 MIR的过表达导致CLDN1,JAM3和TJAP1的mRNA和蛋白表达的降低,这可以通过相应的抗miR来救出。总之,我们的研究将MIR-212/132识别为缺氧BBB的关键参与者。此外,我们提出了三种新的直接miR-212/132靶标涉及MiR-212/132介导的BBB性质的影响。

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