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物理力和非线性动力学塑造分形细胞形状:定量形态参数和细胞表型。

Physical forces and non linear dynamics mould fractal cell shape: quantitative morphological parameters and cell phenotype.

机构信息

Department of Experimental Medicine, Sapienza University of Rome, Rome, Italy.

出版信息

Histol Histopathol. 2013 Feb;28(2):155-74. doi: 10.14670/HH-28.155.

Abstract

Cell shape is mainly determined by biophysical constraints, interacting according to non-linear dynamics upon the basic units provided by the genome. In turn, the specific configuration a cell acquires plays a fundamental, permissive role in modulating gene expression and many other complex biological functions. Cell shape is tightly connected to cell activity and can be considered the most critical determinant of cell function. As a consequence, measurable parameters describing shape could be considered as 'omics' descriptors of the specific level of observation represented by the cell-stroma system. Such an approach promises to formalize some of the underlying basic mechanisms and, ultimately, provide a holistic understanding of the biological processes.

摘要

细胞形状主要由生物物理约束决定,根据基因组提供的基本单元按非线性动力学相互作用。反过来,细胞获得的特定构象在调节基因表达和许多其他复杂的生物学功能中起着基本的许可作用。细胞形状与细胞活性紧密相连,可以被认为是细胞功能的最关键决定因素。因此,描述形状的可测量参数可以被视为细胞-基质系统所代表的特定观察水平的“组学”描述符。这种方法有望使一些潜在的基本机制形式化,并最终提供对生物过程的整体理解。

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