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通过组织拥挤量化细胞周期调控。

Quantifying cell cycle regulation by tissue crowding.

作者信息

Falcó Carles, Cohen Daniel J, Carrillo José A, Baker Ruth E

机构信息

Mathematical Institute, University of Oxford, Oxford, United Kingdom.

Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, New Jersey; Department of Chemical and Biological Engineering, Princeton University, Princeton, New Jersey.

出版信息

Biophys J. 2025 Mar 18;124(6):923-932. doi: 10.1016/j.bpj.2024.05.003. Epub 2024 May 7.

Abstract

The spatiotemporal coordination and regulation of cell proliferation is fundamental in many aspects of development and tissue maintenance. Cells have the ability to adapt their division rates in response to mechanical constraints, yet we do not fully understand how cell proliferation regulation impacts cell migration phenomena. Here, we present a minimal continuum model of cell migration with cell cycle dynamics, which includes density-dependent effects and hence can account for cell proliferation regulation. By combining minimal mathematical modeling, Bayesian inference, and recent experimental data, we quantify the impact of tissue crowding across different cell cycle stages in epithelial tissue expansion experiments. Our model suggests that cells sense local density and adapt cell cycle progression in response, during G1 and the combined S/G2/M phases, providing an explicit relationship between each cell-cycle-stage duration and local tissue density, which is consistent with several experimental observations. Finally, we compare our mathematical model's predictions to different experiments studying cell cycle regulation and present a quantitative analysis on the impact of density-dependent regulation on cell migration patterns. Our work presents a systematic approach for investigating and analyzing cell cycle data, providing mechanistic insights into how individual cells regulate proliferation, based on population-based experimental measurements.

摘要

细胞增殖的时空协调与调控在发育和组织维持的许多方面都至关重要。细胞有能力根据机械限制调整其分裂速率,但我们尚未完全理解细胞增殖调控如何影响细胞迁移现象。在此,我们提出了一个包含细胞周期动力学的细胞迁移最小连续模型,该模型包括密度依赖性效应,因此能够解释细胞增殖调控。通过结合最小数学建模、贝叶斯推理和近期实验数据,我们在表皮组织扩张实验中量化了不同细胞周期阶段组织拥挤的影响。我们的模型表明,在G1期以及合并的S/G2/M期,细胞感知局部密度并相应地调整细胞周期进程,给出了每个细胞周期阶段持续时间与局部组织密度之间的明确关系,这与多项实验观察结果一致。最后,我们将数学模型的预测结果与研究细胞周期调控的不同实验进行比较,并对密度依赖性调控对细胞迁移模式的影响进行了定量分析。我们的工作提出了一种研究和分析细胞周期数据的系统方法,基于群体水平的实验测量,为单个细胞如何调控增殖提供了机制性见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f410/11947467/c37a848f7e05/gr1.jpg

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