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单细胞黏附力动力学及其应用综述。

A Review of Single-Cell Adhesion Force Kinetics and Applications.

机构信息

Department of Engineering Design, Indian Institute of Technology Madras, Chennai 600036, Tamil Nadu, India.

Department of Biosystems Engineering, Kangwon National University, Chuncheon-Si, Gangwon-Do 24341, Korea.

出版信息

Cells. 2021 Mar 5;10(3):577. doi: 10.3390/cells10030577.

Abstract

Cells exert, sense, and respond to the different physical forces through diverse mechanisms and translating them into biochemical signals. The adhesion of cells is crucial in various developmental functions, such as to maintain tissue morphogenesis and homeostasis and activate critical signaling pathways regulating survival, migration, gene expression, and differentiation. More importantly, any mutations of adhesion receptors can lead to developmental disorders and diseases. Thus, it is essential to understand the regulation of cell adhesion during development and its contribution to various conditions with the help of quantitative methods. The techniques involved in offering different functionalities such as surface imaging to detect forces present at the cell-matrix and deliver quantitative parameters will help characterize the changes for various diseases. Here, we have briefly reviewed single-cell mechanical properties for mechanotransduction studies using standard and recently developed techniques. This is used to functionalize from the measurement of cellular deformability to the quantification of the interaction forces generated by a cell and exerted on its surroundings at single-cell with attachment and detachment events. The adhesive force measurement for single-cell microorganisms and single-molecules is emphasized as well. This focused review should be useful in laying out experiments which would bring the method to a broader range of research in the future.

摘要

细胞通过多种机制来施加、感知和响应不同的物理力,并将其转化为生化信号。细胞的黏附对于各种发育功能至关重要,例如维持组织形态发生和内稳态,并激活调节细胞存活、迁移、基因表达和分化的关键信号通路。更重要的是,黏附受体的任何突变都可能导致发育障碍和疾病。因此,借助定量方法了解细胞黏附在发育过程中的调控及其对各种疾病的贡献至关重要。涉及提供不同功能的技术,例如表面成像,以检测细胞基质中存在的力,并提供定量参数,这将有助于表征各种疾病的变化。在这里,我们简要回顾了使用标准和最近开发的技术进行力学转导研究的单细胞力学特性。这用于从细胞变形性的测量到细胞与附着和脱附事件产生的细胞与周围环境之间的相互作用力的定量来功能化。单细胞微生物和单分子的黏附力测量也得到了强调。这篇重点综述应该有助于规划实验,为未来更广泛的研究带来该方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5d6/8000588/33dae58e3cef/cells-10-00577-g001.jpg

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