Nanomechanics of Blood Clot and Thrombus Formation.

IF 10.4 1区 生物学 Q1 BIOPHYSICS
Annual Review of Biophysics Pub Date : 2022-05-09 Epub Date: 2022-01-06 DOI:10.1146/annurev-biophys-111821-072110
Marco M Domingues, Filomena A Carvalho, Nuno C Santos
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引用次数: 2

Abstract

Mechanical properties have been extensively studied in pure elastic or viscous materials; however, most biomaterials possess both physical properties in a viscoelastic component. How the biomechanics of a fibrin clot is related to its composition and the microenvironment where it is formed is not yet fully understood. This review gives an outline of the building mechanisms for blood clot mechanical properties and how they relate to clot function. The formation of a blood clot in health conditions or the formation of a dangerous thrombus go beyond the mere polymerization of fibrinogen into a fibrin network. The complex composition and localization of in vivo fibrin clots demonstrate the interplay between fibrin and/or fibrinogen and blood cells. The study of these protein-cell interactions and clot mechanical properties may represent new methods for the evaluation of cardiovascular diseases (the leading cause of death worldwide), creating new possibilities for clinical diagnosis, prognosis, and therapy.

血凝块和血栓形成的纳米力学。
纯弹性或粘性材料的力学性能得到了广泛的研究;然而,大多数生物材料具有粘弹性成分的物理性质。纤维蛋白凝块的生物力学与它的组成和形成它的微环境之间的关系尚不完全清楚。本文综述了血凝块力学特性的形成机制及其与血凝块功能的关系。健康状况下血栓的形成或危险血栓的形成超出了纤维蛋白原聚合成纤维蛋白网络的范畴。体内纤维蛋白凝块的复杂组成和定位证明了纤维蛋白和/或纤维蛋白原和血细胞之间的相互作用。这些蛋白质-细胞相互作用和凝块力学特性的研究可能代表心血管疾病(世界范围内死亡的主要原因)评估的新方法,为临床诊断、预后和治疗创造新的可能性。
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来源期刊
Annual Review of Biophysics
Annual Review of Biophysics 生物-生物物理
CiteScore
21.00
自引率
0.00%
发文量
25
期刊介绍: The Annual Review of Biophysics, in publication since 1972, covers significant developments in the field of biophysics, including macromolecular structure, function and dynamics, theoretical and computational biophysics, molecular biophysics of the cell, physical systems biology, membrane biophysics, biotechnology, nanotechnology, and emerging techniques.
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