Mierke Claudia Tanja
Faculty of Physics and Earth System Science, Peter Debye Institute of Soft Matter Physics, Biological Physics Division, Leipzig University, Leipzig, Germany.
Front Cell Dev Biol. 2024 Oct 23;12:1446452. doi: 10.3389/fcell.2024.1446452. eCollection 2024.
The endothelial cells of the blood circulation are exposed to hemodynamic forces, such as cyclic strain, hydrostatic forces, and shear stress caused by the blood fluid's frictional force. Endothelial cells perceive mechanical forces via mechanosensors and thus elicit physiological reactions such as alterations in vessel width. The mechanosensors considered comprise ion channels, structures linked to the plasma membrane, cytoskeletal spectrin scaffold, mechanoreceptors, and junctional proteins. This review focuses on endothelial mechanosensors and how they alter the vascular functions of endothelial cells. The current state of knowledge on the dysregulation of endothelial mechanosensitivity in disease is briefly presented. The interplay in mechanical perception between endothelial cells and vascular smooth muscle cells is briefly outlined. Finally, future research avenues are highlighted, which are necessary to overcome existing limitations.
血液循环中的内皮细胞会受到血流动力学力的影响,如循环应变、静水压以及由血液摩擦力引起的剪切应力。内皮细胞通过机械传感器感知机械力,从而引发诸如血管宽度改变等生理反应。所涉及的机械传感器包括离子通道、与质膜相连的结构、细胞骨架血影蛋白支架、机械感受器和连接蛋白。本综述重点关注内皮机械传感器以及它们如何改变内皮细胞的血管功能。简要介绍了疾病中内皮机械敏感性失调的当前知识状态。简要概述了内皮细胞与血管平滑肌细胞在机械感知方面的相互作用。最后,强调了未来的研究途径,这对于克服现有局限性是必要的。