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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Mir-203-mediated tricellulin mediates lead-induced in vitro loss of blood-cerebrospinal fluid barrier (BCB) function
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Mir-203-mediated tricellulin mediates lead-induced in vitro loss of blood-cerebrospinal fluid barrier (BCB) function

机译:Mir-203介导的甘油三酸酯介导铅诱导的体外血脑脊液屏障(BCB)功能丧失

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The blood-cerebrospinal fluid barrier (BCB) plays a critical role in the maintenance of optimal brain function. Tricellulin (TRIC), a protein localized at the tricellular contact sites of epithelial cells is involved in the formation of tight junctions in various epithelial barriers. However, little is known about its expression in the choroidal epithelial cells. It is well established that lead (Pb) exposure increases the leakage of the BCB. The purpose of this study is to investigate the expression and localization of TRIC in choroidal epithelial cells in vitro and whether altered TRIC expression mediates Pb-induced loss of barrier function. We found that TRIC protein and mRNA were expressed in choroidal epithelial cells in vitro and TRIC was localized at the tricellular contacts, colocalizing with occludin. Downregulation of TRIC by siRNA increased the BCB permeability corroborated by altered transendothelial electrical resistance (TEER) and FITC-dextran flux. Treatment with 10 mu M Pb reduced TRIC protein expression, but overexpression of TRIC alleviated the Pb-induced increase in BCB permeability. Bioinformatics analysis showed that mir-203 was a potential microRNA (miRNA) binding motif on TRIC 3'UTR, and that Pb exposure increased the expression of mir-203. Treatment with a mir-203 inhibitor increased TRIC protein expression and attenuated the Pb-induced BCB leakage. Our results establish that TRIC plays an important role in regulating BCB function. (C) 2015 Elsevier Ltd. All rights reserved.
机译:血脑脊液屏障(BCB)在维持最佳脑功能中起着关键作用。 Tricellulin(TRIC)是一种位于上皮细胞三细胞接触位点的蛋白质,参与各种上皮屏障中紧密连​​接的形成。然而,对其在脉络膜上皮细胞中的表达了解甚少。众所周知,铅(Pb)暴露会增加BCB的泄漏。这项研究的目的是调查体外在脉络膜上皮细胞中TRIC的表达和定位,以及改变的TRIC表达是否介导Pb诱导的屏障功能丧失。我们发现,TRIC蛋白和mRNA在体外的脉络膜上皮细胞中表达,并且TRIC定位在三细胞接触处,与occludin共定位。 siRNA对TRIC的下调增加了跨内皮电阻(TEER)和FITC-葡聚糖通量的变化,从而证实了BCB渗透性。用10μMPb处理可降低TRIC蛋白的表达,但TRIC的过表达可减轻Pb诱导的BCB通透性增加。生物信息学分析表明,mir-203是TRIC 3'UTR上潜在的microRNA(miRNA)结合基序,而Pb暴露增加了mir-203的表达。用mir-203抑制剂治疗可增加TRIC蛋白的表达并减弱Pb诱导的BCB泄漏。我们的结果表明,TRIC在调节BCB功能中起重要作用。 (C)2015 Elsevier Ltd.保留所有权利。

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