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哺乳动物上皮细胞混合群体中的机械收敛。

Mechanical convergence in mixed populations of mammalian epithelial cells.

机构信息

Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo, 113-0032, Japan.

Department of Molecular Oncology, Graduate School of Medicine, Kyoto University, Kyoto, 606-8501, Japan.

出版信息

Eur Phys J E Soft Matter. 2024 Mar 27;47(3):21. doi: 10.1140/epje/s10189-024-00415-w.

Abstract

Tissues consist of cells with different molecular and/or mechanical properties. Measuring the forces and stresses in mixed-cell populations is essential for understanding the mechanisms by which tissue development, homeostasis, and disease emerge from the cooperation of distinct cell types. However, many previous studies have primarily focused their mechanical measurements on dissociated cells or aggregates of a single-cell type, leaving the mechanics of mixed-cell populations largely unexplored. In the present study, we aimed to elucidate the influence of interactions between different cell types on cell mechanics by conducting in situ mechanical measurements on a monolayer of mammalian epithelial cells. Our findings revealed that while individual cell types displayed varying magnitudes of traction and intercellular stress before mixing, these mechanical values shifted in the mixed monolayer, becoming nearly indistinguishable between the cell types. Moreover, by analyzing a mixed-phase model of active tissues, we identified physical conditions under which such mechanical convergence is induced. Overall, the present study underscores the importance of in situ mechanical measurements in mixed-cell populations to deepen our understanding of the mechanics of multicellular systems.

摘要

组织由具有不同分子和/或机械特性的细胞组成。测量混合细胞群体中的力和应力对于理解组织发育、稳态和疾病如何从不同细胞类型的合作中出现至关重要。然而,许多先前的研究主要集中在对分离细胞或单细胞类型的聚集体进行机械测量上,而对混合细胞群体的力学性质基本上没有进行探索。在本研究中,我们旨在通过对哺乳动物上皮细胞单层进行原位力学测量来阐明不同细胞类型之间相互作用对细胞力学的影响。我们的研究结果表明,虽然在混合之前,不同类型的细胞表现出不同程度的牵引力和细胞间应力,但在混合单层中,这些力学值发生了变化,在细胞类型之间几乎无法区分。此外,通过分析活性组织的混合相模型,我们确定了诱导这种机械收敛的物理条件。总的来说,本研究强调了在混合细胞群体中进行原位力学测量的重要性,以加深我们对多细胞系统力学的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a097/10973031/3baf7ed90742/10189_2024_415_Fig1_HTML.jpg

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