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用于细胞和组织力学的主动粘弹性模型。

Active viscoelastic models for cell and tissue mechanics.

作者信息

Tajvidi Safa Bahareh, Huang Changjin, Kabla Alexandre, Yang Ruiguo

机构信息

Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588, USA.

School of Mechanical & Aerospace Engineering, Nanyang Technological University, Singapore 639798, Singapore.

出版信息

R Soc Open Sci. 2024 Apr 24;11(4):231074. doi: 10.1098/rsos.231074. eCollection 2024 Apr.

Abstract

Living cells are out of equilibrium active materials. Cell-generated forces are transmitted across the cytoskeleton network and to the extracellular environment. These active force interactions shape cellular mechanical behaviour, trigger mechano-sensing, regulate cell adaptation to the microenvironment and can affect disease outcomes. In recent years, the mechanobiology community has witnessed the emergence of many experimental and theoretical approaches to study cells as mechanically active materials. In this review, we highlight recent advancements in incorporating active characteristics of cellular behaviour at different length scales into classic viscoelastic models by either adding an active tension-generating element or adjusting the resting length of an elastic element in the model. Summarizing the two groups of approaches, we will review the formulation and application of these models to understand cellular adaptation mechanisms in response to various types of mechanical stimuli, such as the effect of extracellular matrix properties and external loadings or deformations.

摘要

活细胞是处于非平衡态的活性物质。细胞产生的力通过细胞骨架网络传递到细胞外环境。这些活性力相互作用塑造细胞的力学行为,触发机械传感,调节细胞对微环境的适应,并可能影响疾病结果。近年来,力学生物学领域出现了许多实验和理论方法,将细胞作为机械活性物质进行研究。在本综述中,我们重点介绍了通过在经典粘弹性模型中添加一个产生主动张力的元件或调整模型中弹性元件的静止长度,将不同长度尺度下细胞行为的活性特征纳入其中的最新进展。总结这两类方法,我们将回顾这些模型的公式和应用,以理解细胞对各种类型机械刺激的适应机制,如细胞外基质特性以及外部载荷或变形的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2280/11040246/0d3a4c078bf2/rsos.231074.f001.jpg

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