动态预应力如何控制从亚细胞到组织尺度的生命系统的形状。

IF 3.6 3区 生物学 Q1 BIOLOGY Interface Focus Pub Date : 2022-10-14 eCollection Date: 2022-12-06 DOI:10.1098/rsfs.2022.0038
Alexander Erlich, Jocelyn Étienne, Jonathan Fouchard, Tom Wyatt
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引用次数: 2

摘要

细胞和组织在执行其功能和病理过程中都会改变形状。在大多数情况下,这些变形是从系统本身内部驱动的。这是由一系列分子行为者允许的,如活性交联剂和离子泵,其活性在空间和时间上受到生物控制。由此产生的应力在复杂和动态的结构中传播,如网络或细胞聚集体。从力学的角度来看,这些效应可以看作是收缩或生长活动产生的预应力或预应变。在这篇综述中,我们提出了预应力的概念,以及可用于概念化生命系统的静力学和动力学的理论工具。然后,我们描述了一系列现象,其中预应力控制生物聚合物网络(特别是肌动蛋白细胞骨架和纤维组织)和细胞化组织的形状变化。尽管规模和组织存在多样性,但我们证明,这些现象源于有限数量的预应力空间分布,可分为非均匀、各向异性或微分。我们认为,除了生长和收缩之外,第三种类型的预应力拓扑预应力可能是由改变组织微观结构的主动过程引起的。
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How dynamic prestress governs the shape of living systems, from the subcellular to tissue scale.

Cells and tissues change shape both to carry out their function and during pathology. In most cases, these deformations are driven from within the systems themselves. This is permitted by a range of molecular actors, such as active crosslinkers and ion pumps, whose activity is biologically controlled in space and time. The resulting stresses are propagated within complex and dynamical architectures like networks or cell aggregates. From a mechanical point of view, these effects can be seen as the generation of prestress or prestrain, resulting from either a contractile or growth activity. In this review, we present this concept of prestress and the theoretical tools available to conceptualize the statics and dynamics of living systems. We then describe a range of phenomena where prestress controls shape changes in biopolymer networks (especially the actomyosin cytoskeleton and fibrous tissues) and cellularized tissues. Despite the diversity of scale and organization, we demonstrate that these phenomena stem from a limited number of spatial distributions of prestress, which can be categorized as heterogeneous, anisotropic or differential. We suggest that in addition to growth and contraction, a third type of prestress-topological prestress-can result from active processes altering the microstructure of tissue.

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来源期刊
Interface Focus
Interface Focus BIOLOGY-
CiteScore
9.20
自引率
0.00%
发文量
44
审稿时长
6-12 weeks
期刊介绍: Each Interface Focus themed issue is devoted to a particular subject at the interface of the physical and life sciences. Formed of high-quality articles, they aim to facilitate cross-disciplinary research across this traditional divide by acting as a forum accessible to all. Topics may be newly emerging areas of research or dynamic aspects of more established fields. Organisers of each Interface Focus are strongly encouraged to contextualise the journal within their chosen subject.
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