Genova Tullio, Gaglioti Deborah, Munaron Luca
Department of Life Sciences and Systems Biology, University of Turin, Turin, Italy.
Front Physiol. 2020 May 5;11:421. doi: 10.3389/fphys.2020.00421. eCollection 2020.
The vascular endothelium constitutes a semi-permeable barrier between blood and interstitial fluids. Since an augmented endothelial permeability is often associated to pathological states, understanding the molecular basis for its regulation is a crucial biomedical and clinical challenge. This review focuses on the processes controlling paracellular permeability that is the permeation of fluids between adjacent endothelial cells (ECs). Cytosolic calcium changes are often detected as early events preceding the alteration of the endothelial barrier (EB) function. For this reason, great interest has been devoted in the last decades to unveil the molecular mechanisms underlying calcium fluxes and their functional relationship with vessel permeability. Beyond the dicotomic classification between store-dependent and independent calcium entry at the plasma membrane level, the search for the molecular components of the related calcium-permeable channels revealed a difficult task for intrinsic and technical limitations. The contribution of redundant channel-forming proteins including members of TRP superfamily and Orai1, together with the very complex intracellular modulatory pathways, displays a huge variability among tissues and along the vascular tree. Moreover, calcium-independent events could significantly concur to the regulation of vascular permeability in an intricate and fascinating multifactorial framework.
血管内皮在血液和组织液之间构成了一道半透屏障。由于内皮通透性增加常与病理状态相关,了解其调节的分子基础是一项至关重要的生物医学和临床挑战。本综述聚焦于控制细胞旁通透性的过程,即相邻内皮细胞(ECs)之间的液体渗透。胞质钙变化常被检测为内皮屏障(EB)功能改变之前的早期事件。因此,在过去几十年中,人们对揭示钙通量的分子机制及其与血管通透性的功能关系产生了浓厚兴趣。除了在质膜水平上对储存依赖性和非依赖性钙内流进行二分法分类外,由于内在和技术限制,寻找相关钙通透通道的分子成分是一项艰巨的任务。包括瞬时受体电位(TRP)超家族成员和Orai1在内的冗余通道形成蛋白的贡献,以及非常复杂的细胞内调节途径,在不同组织和整个血管系统中表现出巨大的变异性。此外,在一个复杂而迷人的多因素框架中,钙非依赖性事件可能对血管通透性的调节有显著贡献。