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细胞周期依赖性形态、几何形状和力学特性在肿瘤细胞转移中的潜在作用。

Possible role of cell cycle-dependent morphology, geometry, and mechanical properties in tumor cell metastasis.

作者信息

Needham D

机构信息

Department of Mechanical Engineering and Materials Science, Duke University, Durham, NC.

出版信息

Cell Biophys. 1991 Apr;18(2):99-121. doi: 10.1007/BF02989809.

Abstract

Studies that examine the shear- and abrasion-sensitivity of proliferating cells are important in order to understand the behavior of hybridoma cells in bioreactor culture and metastasizing cancer cells in the bloodstream. Little is known about the link between morphology, structure, and mechanical properties of a given cell line, especially with respect to variations throughout the cell cycle. In our experiments with GAP A3 hybridoma cells, distinct cell morphologies were identified and correlated with phases of the cell cycle by video microscopic observation of synchronized cells, and of individual cells that were followed throughout their cell cycle. Micropipet manipulation was used to measure the geometrical (cell volume) and mechanical (apparent cell viscosity) properties of single cells. As the cell cycle progressed at 37 degrees C, an increase in cell volume from 1400 microns 3 to 5700 microns 3 was accompanied by an increase in apparent cell viscosity from 430 poise to 12,000 poise, consistent with an accumulation of more cytoplasmic material in the "older" cells. Hybridomas are representative of the various leukemias derived from hemopoietic cells, and even though as a whole, they appeared to be rather shear-insensitive, the wide range of property values demonstrates that a given cell line cannot be characterized by a single value for any one property, and that properties must be related to the cell cycle when considering proliferating cells. It is interesting to see if distinct stages in the metastatic sequence of events might correlate with any of these physical features of the cell cycle, irrespective of cell type or cell line. For example, the cytokinetic doublet could represent a fragile structure that may fail and produce cell death under fluid-shear conditions that would not affect the cells at any other stage in the cell cycle. Identifying such cell cycle-dependent features in metastasizing cancer cells could lead to a better understanding of the metastatic process and to possible clinical treatments directed at making cells more shear- and abrasion-sensitive, and therefore, more likely to be killed by the natural hydrodynamic forces of the circulatory system.

摘要

为了了解杂交瘤细胞在生物反应器培养中的行为以及血液循环中转移癌细胞的行为,研究增殖细胞的剪切敏感性和磨损敏感性非常重要。对于给定细胞系的形态、结构和力学性能之间的联系,人们了解甚少,尤其是在整个细胞周期中的变化方面。在我们对GAP A3杂交瘤细胞的实验中,通过对同步化细胞以及在整个细胞周期中跟踪的单个细胞进行视频显微镜观察,识别出了不同的细胞形态,并将其与细胞周期阶段相关联。使用微吸管操作来测量单个细胞的几何特性(细胞体积)和力学特性(表观细胞粘度)。当细胞周期在37℃下进行时,细胞体积从1400立方微米增加到5700立方微米,同时表观细胞粘度从430泊增加到12000泊,这与“老”细胞中更多细胞质物质的积累一致。杂交瘤代表了源自造血细胞的各种白血病,尽管总体而言它们似乎对剪切不敏感,但广泛的特性值表明,对于任何一种特性,给定的细胞系都不能用单一值来表征,并且在考虑增殖细胞时,特性必须与细胞周期相关。有趣的是,转移事件序列中的不同阶段是否可能与细胞周期的任何这些物理特征相关,而与细胞类型或细胞系无关。例如,细胞分裂双联体可能代表一种脆弱结构,在流体剪切条件下可能会失败并导致细胞死亡,而这种条件不会影响细胞周期的任何其他阶段的细胞。识别转移癌细胞中这种依赖细胞周期的特征可能会更好地理解转移过程,并可能导致针对使细胞对剪切和磨损更敏感从而更有可能被循环系统的自然流体动力杀死的临床治疗方法。

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