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首页> 外文期刊>Cellular and molecular life sciences: CMLS >Intracellular transport and regulation of transcytosis across the blood-brain barrier
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Intracellular transport and regulation of transcytosis across the blood-brain barrier

机译:细胞内运输和调节血脑屏障对血脑屏障的转胞增分

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The blood-brain barrier is a dynamic multicellular interface that regulates the transport of molecules between the blood circulation and the brain parenchyma. Proteins and peptides required for brain homeostasis cross the blood-brain barrier via transcellular transport, but the mechanisms that control this pathway are not well characterized. Here, we highlight recent studies on intracellular transport and transcytosis across the blood-brain barrier. Endothelial cells at the blood-brain barrier possess an intricate endosomal network that allows sorting to diverse cellular destinations. Internalization from the plasma membrane, endosomal sorting, and exocytosis all contribute to the regulation of transcytosis. Transmembrane receptors and blood-borne proteins utilize different pathways and mechanisms for transport across brain endothelial cells. Alterations to intracellular transport in brain endothelial cells during diseases of the central nervous system contribute to blood-brain barrier disruption and disease progression. Harnessing the intracellular sorting mechanisms at the blood-brain barrier can help improve delivery of biotherapeutics to the brain.
机译:血脑屏障是一种动态多细胞界面,调节血液循环和脑干之间分子的运输。脑稳态所需的蛋白质和肽通过造细胞运输通过血脑屏障,但控制该途径的机制并不具备很好的表征。在这里,我们突出了最近对血脑屏障的细胞内运输和转红菌体的研究。血脑屏障的内皮细胞具有复杂的内体网络,允许分类到不同的蜂窝目的地。从血浆膜,内体分选和卵尿的内化所有促成了转胞增多症的调节。跨膜受体和血型蛋白使用不同的途径和机制,用于脑内皮细胞的运输。在中枢神经系统疾病期间脑内皮细胞内部内皮细胞内部转运的改变有助于血脑屏障中断和疾病进展。利用血脑屏障的细胞内分选机制可以帮助改善生物治疗剂的递送到大脑。

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