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中性粒细胞在活跃运动期间细胞质变形的运动学

Kinematics of cytoplasmic deformation in neutrophils during active motion.

作者信息

Simon S I, Schmid-Schönbein G W

机构信息

Department of AMES-Bioengineering, University of California, San Diego, La Jolla 92093-0412.

出版信息

J Biomech Eng. 1990 Aug;112(3):303-10. doi: 10.1115/1.2891188.

Abstract

A procedure is proposed to measure the cytoplasmic deformation in active motile neutrophils in the form of cytoplasmic strains and strain rates. Three neighboring microspheres in a local region of the cytoplasm serve as markers for local motion. Their positions are tracked by means of a high resolution light microscope and serve to compute nonlinear measures of strains and strain rates together with the principal strains and principal directions. Active neutrophils exhibit large cytoplasmic strains both during periodic pseudopod projections and during continuous locomotion in a polarized shape. The cytoplasmic motion is often synchronized with the whole cell deformation. The local cytoplasmic strains exceed the strains estimated for the whole cell and are not reversible except in some cases of single pseudopod projections. Large strains are observed both in attached and freely suspended cells. Strain rates are relatively constant but show an increase during the pseudopod retraction phase. Local cytoplasmic strains in neutrophils are inhomogeneous and reach large values during passage of the contraction rings. Neutrophils rendered passive by treatment with cytochalasin or EDTA show a random motion of microspheres with much smaller displacements. These observations suggest that the cytoplasm of active neutrophil exhibits large cytoplasmic strains and strain rates in the absence of an external stress resulting in a high degree of intracellular mixing. The proposed technique may be applied to a wide range of problems in cell biology.

摘要

本文提出了一种测量活跃运动中性粒细胞胞质变形的方法,以胞质应变和应变率的形式呈现。细胞质局部区域中的三个相邻微球作为局部运动的标记物。通过高分辨率光学显微镜跟踪它们的位置,并与主应变和主方向一起用于计算应变和应变率的非线性度量。活跃的中性粒细胞在周期性伪足突出期间以及以极化形态连续运动期间均表现出较大的胞质应变。胞质运动通常与整个细胞变形同步。局部胞质应变超过了对整个细胞估计的应变,并且除了在某些单个伪足突出的情况下是不可逆的。在贴壁细胞和自由悬浮细胞中均观察到较大的应变。应变率相对恒定,但在伪足回缩阶段有所增加。中性粒细胞中的局部胞质应变是不均匀的,并且在收缩环通过期间达到较大值。用细胞松弛素或乙二胺四乙酸处理后变为被动状态的中性粒细胞显示微球的随机运动,位移小得多。这些观察结果表明,活跃中性粒细胞的细胞质在没有外部应力的情况下表现出较大的胞质应变和应变率,从而导致高度的细胞内混合。所提出的技术可应用于细胞生物学中的广泛问题。

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