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Toward correlating structure and mechanics of platelets

机译:走向血小板的相关结构和力学

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ABSTRACT The primary physiological function of blood platelets is to seal vascular lesions after injury and form hemostatic thrombi in order to prevent blood loss. This task relies on the formation of strong cellular-extracellular matrix interactions in the subendothelial lesions. The cytoskeleton of a platelet is key to all of its functions: its ability to spread, adhere and contract. Despite the medical significance of platelets, there is still no high-resolution structural information of their cytoskeleton. Here, we discuss and present 3-dimensional (3D) structural analysis of intact platelets by using cryo-electron tomography (cryo-ET) and atomic force microscopy (AFM). Cryo-ET provides in situ structural analysis and AFM gives stiffness maps of the platelets. In the future, combining high-resolution structural and mechanical techniques will bring new understanding of how structural changes modulate platelet stiffness during activation and adhesion.
机译:摘要血小板的主要生理功能是在受伤后封闭血管病变并形成止血血栓,以防止失血。该任务依赖于内皮下损伤中强烈的细胞-细胞外基质相互作用的形成。血小板的细胞骨架是其所有功能的关键:其扩散,粘附和收缩的能力。尽管血小板具有医学意义,但仍没有其细胞骨架的高分辨率结构信息。在这里,我们讨论并通过使用冷冻电子断层扫描(cryo-ET)和原子力显微镜(AFM)对完整的血小板进行三维(3D)结构分析。 Cryo-ET提供原位结构分析,AFM提供血小板的刚度图。将来,将高分辨率的结构技术和机械技术相结合将使人们对激活和粘附过程中结构变化如何调节血小板硬度产生新的认识。

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