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交叉口的连接点:机械线索对内皮细胞-细胞连接构象和血管通透性的影响。

Junctions at the crossroads: the impact of mechanical cues on endothelial cell-cell junction conformations and vascular permeability.

机构信息

Fischell Department of Bioengineering, University of Maryland, College Park, Maryland, United States.

Department of Biology, University of Puerto Rico in Ponce, Ponce, Puerto Rico.

出版信息

Am J Physiol Cell Physiol. 2024 Oct 1;327(4):C1073-C1086. doi: 10.1152/ajpcell.00605.2023. Epub 2024 Aug 12.

Abstract

Cells depend on precisely regulating barrier function within the vasculature to maintain physiological stability and facilitate essential substance transport. Endothelial cells achieve this through specialized adherens and tight junction protein complexes, which govern paracellular permeability across vascular beds. Adherens junctions, anchored by vascular endothelial (VE)-cadherin and associated catenins to the actin cytoskeleton, mediate homophilic adhesion crucial for barrier integrity. In contrast, tight junctions composed of occludin, claudin, and junctional adhesion molecule A interact with Zonula Occludens proteins, reinforcing intercellular connections essential for barrier selectivity. Endothelial cell-cell junctions exhibit dynamic conformations during development, maturation, and remodeling, regulated by local biochemical and mechanical cues. These structural adaptations play pivotal roles in disease contexts such as chronic inflammation, where junctional remodeling contributes to increased vascular permeability observed in conditions from cancer to cardiovascular diseases. Conversely, the brain microvasculature's specialized junctional arrangements pose challenges for therapeutic drug delivery due to their unique molecular compositions and tight organization. This commentary explores the molecular mechanisms underlying endothelial cell-cell junction conformations and their implications for vascular permeability. By highlighting recent advances in quantifying junctional changes and understanding mechanotransduction pathways, we elucidate how physical forces from cellular contacts and hemodynamic flow influence junctional dynamics.

摘要

细胞依赖于精确调节血管内的屏障功能,以维持生理稳定性并促进必要物质的运输。内皮细胞通过专门的黏附连接和紧密连接蛋白复合物来实现这一点,这些复合物控制着穿过血管床的细胞旁通透性。黏附连接由血管内皮 (VE)-钙黏蛋白和相关连环蛋白锚定在肌动蛋白细胞骨架上,介导同质黏附对于屏障完整性至关重要。相比之下,由封闭蛋白、紧密连接蛋白和连接黏附分子 A 组成的紧密连接与 Zonula Occludens 蛋白相互作用,增强了细胞间连接对于屏障选择性的重要性。内皮细胞-细胞连接在发育、成熟和重塑过程中表现出动态构象,受局部生化和机械线索的调节。这些结构适应性在疾病情况下发挥着关键作用,如慢性炎症,其中连接重塑导致从癌症到心血管疾病等疾病中观察到的血管通透性增加。相反,由于其独特的分子组成和紧密的组织,脑微血管的特殊连接排列给治疗性药物输送带来了挑战。本评论探讨了内皮细胞-细胞连接构象的分子机制及其对血管通透性的影响。通过强调定量研究连接变化和理解力学转导途径的最新进展,我们阐明了细胞接触和血流产生的物理力如何影响连接的动态。

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