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细胞能量循环介导类似平流的向前细胞流动,以支持集体侵袭。

Cellular Energy Cycle Mediates an Advection-Like Forward Cell Flow to Support Collective Invasion.

机构信息

Department of Biomedical Engineering, Vanderbilt University, 2301 Vanderbilt Place, Nashville, TN, 37235, USA.

Department of Biomedical Engineering, University of Arkansas, 790 W. Dickson St, Fayetteville, AR, 72701, USA.

出版信息

Adv Sci (Weinh). 2024 Aug;11(32):e2400719. doi: 10.1002/advs.202400719. Epub 2024 Jun 21.

Abstract

Collective cell migration is a model for nonequilibrium biological dynamics, which is important for morphogenesis, pattern formation, and cancer metastasis. The current understanding of cellular collective dynamics is based primarily on cells moving within a 2D epithelial monolayer. However, solid tumors often invade surrounding tissues in the form of a stream-like 3D structure, and how biophysical cues are integrated at the cellular level to give rise to this collective streaming remains unclear. Here, it is shown that cell cycle-mediated bioenergetics drive a forward advective flow of cells and energy to the front to support 3D collective invasion. The cell division cycle mediates a corresponding energy cycle such that cellular adenosine triphosphate (ATP) energy peaks just before division. A reaction-advection-diffusion (RAD) type model coupled with experimental measurements further indicates that most cells enter an active division cycle at rear positions during 3D streaming. Once the cells progress to a later stage toward division, the high intracellular energy allows them to preferentially stream toward the tip and become leader cells. This energy-driven cellular flow may be a fundamental characteristic of 3D collective dynamics based on thermodynamic principles important for not only cancer invasion but also tissue morphogenesis.

摘要

细胞集体迁移是一种非平衡生物动力学模型,对于形态发生、模式形成和癌症转移非常重要。目前对细胞集体动力学的理解主要基于细胞在二维上皮单层内的运动。然而,实体瘤通常以类似于流的三维结构形式侵入周围组织,细胞水平上如何整合生物物理线索以产生这种集体流动仍不清楚。本研究表明,细胞周期介导的生物能量学驱动细胞和能量向前的平流,以支持三维集体入侵。细胞分裂周期介导相应的能量循环,使得细胞三磷酸腺苷 (ATP) 能量在分裂前达到峰值。反应-平流-扩散 (RAD) 型模型结合实验测量进一步表明,在三维流动过程中,大多数细胞在后部位置进入活跃的分裂周期。一旦细胞向分裂的后期阶段推进,高细胞内能量使它们优先向尖端流动并成为主导细胞。这种能量驱动的细胞流动可能是基于对癌症侵袭和组织形态发生都很重要的热力学原理的三维集体动力学的基本特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/029b/11348062/fec1d5ee07d2/ADVS-11-2400719-g002.jpg

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