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脑内皮细胞中的囊泡运输机制:已知与未知。

Vesicular Transport Machinery in Brain Endothelial Cells: What We Know and What We Do not.

机构信息

Department of Biomedicine, Faculty of Health, Aarhus University, Høegh-Guldberg Gade 10, 8000 Aarhus C, Denmark.

出版信息

Curr Pharm Des. 2020;26(13):1405-1416. doi: 10.2174/1381612826666200212113421.

Abstract

The vesicular transport machinery regulates numerous essential functions in cells such as cell polarity, signaling pathways, and the transport of receptors and their cargoes. From a pharmaceutical perspective, vesicular transport offers avenues to facilitate the uptake of therapeutic agents into cells and across cellular barriers. In order to improve receptor-mediated transcytosis of biologics across the blood-brain barrier and into the diseased brain, a detailed understanding of intracellular transport mechanisms is essential. The vesicular transport machinery is a highly complex network and involves an array of protein complexes, cytosolic adaptor proteins, and the subcellular structures of the endo-lysosomal system. The endo-lysosomal system includes several types of vesicular entities such as early, late, and recycling endosomes, exosomes, ectosomes, retromer-coated vesicles, lysosomes, trans-endothelial channels, and tubules. While extensive research has been done on the trafficking system in many cell types, little is known about vesicular trafficking in brain endothelial cells. Consequently, assumptions on the transport system in endothelial cells are based on findings in polarised epithelial cells, although recent studies have highlighted differences in the endothelial system. This review highlights aspects of the vesicular trafficking machinery in brain endothelial cells, including recent findings, limitations, and opportunities for further studies.

摘要

囊泡运输机制调节了细胞中的许多重要功能,如细胞极性、信号通路以及受体及其货物的运输。从药物的角度来看,囊泡运输为促进治疗剂进入细胞和穿过细胞屏障提供了途径。为了提高生物制剂穿过血脑屏障并进入病变大脑的受体介导的胞吞作用,深入了解细胞内运输机制至关重要。囊泡运输机制是一个高度复杂的网络,涉及一系列蛋白复合物、胞质衔接蛋白和内体溶酶体系统的亚细胞结构。内体溶酶体系统包括几种囊泡实体,如早期、晚期和再循环内体、外泌体、ectosomes、逆行蛋白包被囊泡、溶酶体、跨内皮通道和小管。虽然已经对许多细胞类型中的运输系统进行了广泛的研究,但对脑内皮细胞中的囊泡运输知之甚少。因此,关于内皮细胞运输系统的假设是基于对极化上皮细胞的研究结果,尽管最近的研究强调了内皮系统的差异。这篇综述强调了脑内皮细胞中囊泡运输机制的各个方面,包括最近的发现、局限性和进一步研究的机会。

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