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《秩序的起源》

On the origins of order.

机构信息

Harvard T.H. Chan School of Public Health, Boston, MA 02115, USA.

出版信息

Soft Matter. 2022 Mar 23;18(12):2346-2353. doi: 10.1039/d1sm01716k.

Abstract

A cardinal feature common to embryonic development and tissue reorganization, as well as to wound healing and cancer cell invasion, is collective cellular migration. During collective migratory events the phenomena of cell jamming and unjamming are increasingly recognized, and underlying mechanical, genomic, transcriptional, and signaling events are increasingly coming to light. In this brief perspective I propose a synthesis that brings together in a new way two key concepts. On the one hand, it has been suggested that the unjammed phase of the cellular collective evolved under a selective pressure favoring fluid-like migratory dynamics as would be required so as to accommodate episodes of tissue evolution, development, plasticity, and repair. Being dynamic, such an unjammed migratory phase is expected to be energetically expensive compared with the jammed non-migratory phase, which is presumed to have evolved under a selective pressure favoring a solid-like homeostatic regime that, by comparison, is energetically economical and mechanically stable. On the other hand, well before the discovery of cell jamming and unjamming Kauffman proposed the general biological principle that living systems exist in a solid regime near the edge of chaos, and that natural selection achieves and sustains such a poised state. Here I propose that, in certain systems at least, this poised solid-like state as predicted in the abstract by Kauffman is realized in the particular by the jammed regime just at the brink of unjamming.

摘要

胚胎发育和组织重组、创伤愈合和癌细胞浸润所共有的一个主要特征是细胞的集体迁移。在集体迁移事件中,细胞堵塞和疏通的现象越来越被认识到,而潜在的机械、基因组、转录和信号事件也越来越被揭示出来。在这篇简短的观点文章中,我提出了一个综合的观点,以一种新的方式将两个关键概念结合在一起。一方面,有人提出,细胞集体的无堵塞相是在有利于类似液体的迁移动力学的选择性压力下进化而来的,这是为了适应组织进化、发育、可塑性和修复的阶段所必需的。由于具有动态性,与被认为是在有利于类似固体的稳态的选择性压力下进化而来的堵塞的非迁移相相比,这种无堵塞的迁移相预计在能量上是昂贵的,而后者被认为在能量上是经济的和机械上是稳定的。另一方面,早在发现细胞堵塞和疏通之前,Kauffman 就提出了一个普遍的生物学原理,即生命系统存在于混沌边缘的固体状态,而自然选择实现并维持这种平衡状态。在这里,我提出,至少在某些系统中,Kauffman 在抽象中预测的这种平衡的类似固体的状态是通过堵塞状态在接近疏通的边缘来实现的。

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