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生物学家的基础流变学

Basic rheology for biologists.

作者信息

Janmey Paul A, Georges Penelope C, Hvidt Søren

机构信息

Department of Bioengineering, Institute for Medicine and Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

Methods Cell Biol. 2007;83:3-27. doi: 10.1016/S0091-679X(07)83001-9.

Abstract

Many cellular processes lead to changes in elastic and viscous properties of cells. Rheology is the science that deals with deformation and flow of materials. Fundamental rheologic concepts are explained, and some of the main techniques are discussed. Nonperturbing oscillatory techniques are especially useful for monitoring structure formation including gelation, whereas other techniques such as steady shear flow and creep are useful for determining flow properties. Sample preparation is often a major obstacle, and advantages of different deformation geometries are discussed. Simple biological samples such as purified biopolymers can be investigated with a range of rheologic techniques, and factors affecting gelation of, for example, blood or cytoskeletal proteins can be studied in detail. More complex biological systems such as intact tissues can often only be studied with more qualitative techniques and results. With proper choice of experimental setup, rheologic techniques can give valuable information about cellular systems and dynamics on a timescale that is closely related to biological functions.

摘要

许多细胞过程会导致细胞弹性和粘性特性的变化。流变学是研究材料变形和流动的科学。文中解释了基本的流变学概念,并讨论了一些主要技术。非侵入性振荡技术对于监测包括凝胶化在内的结构形成特别有用,而其他技术如稳态剪切流和蠕变则有助于确定流动特性。样品制备往往是一个主要障碍,文中还讨论了不同变形几何形状的优点。诸如纯化生物聚合物之类的简单生物样品可以用一系列流变技术进行研究,例如,可以详细研究影响血液或细胞骨架蛋白凝胶化的因素。诸如完整组织之类的更复杂生物系统通常只能用更定性的技术和结果进行研究。通过正确选择实验装置,流变技术可以在与生物功能密切相关的时间尺度上提供有关细胞系统和动力学的有价值信息。

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