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细胞运动分析

Analysis of cell movement.

作者信息

Gruler H, Bültmann B D

出版信息

Blood Cells. 1984;10(1):61-77.

PMID:6487816
Abstract

The methods of statistical physics have been applied to the analysis of cell movement. Human leukocytes (granulocytes) were observed using time-lapse photography. The center of gravity of a cell, variations of cell shape, and cell orientation were investigated. This analytical description leads to a better understanding of cell movement. Stationary motion of a cell is described by the anisotropy of the cell shape. The cell displacement can be characterized by three different types of movement: The persistent mode where the cell moves away from an arbitrary chosen origin with its track velocity. The diffusion mode where the cells become dispersed in space by a random walk process. The drift mode where the cell moves with a drift velocity, v parallel, in a concentration gradient of chemoattractant molecules. The chemokinetic response is described by the diffusion constant D (= 240 microns2/min) and the track velocity vc (= 30 microns/min). The chemotactic response is described by the degree of orientation P1 (= 0.8), which is identical with the McCutcheon index and the chemotropism index. Cell movement can be described by elementary moving states, and the life time of such a moving state is 0.5 min. The survival probability of the moving state is determined by an internal program. It is not described by a stochastic process. The angular change in moving direction is also programmed, as the square root of the mean square angular change is +/- 50 degrees. The plus and minus direction are equally probable in a chemokinetic response. However, in a chemotactic assay the plus and minus directions are not equally probably. We found that the information transfer from the chemotactic gradient to the migrating cell is 1 bit per change in moving direction. A disturbance in this information transfer leads to an order-disorder transition. Furthermore, we found that the migrating cell exhibits a directional memory of 75 s.

摘要

统计物理学方法已应用于细胞运动分析。使用延时摄影观察人类白细胞(粒细胞)。研究了细胞的重心、细胞形状变化和细胞取向。这种分析性描述有助于更好地理解细胞运动。细胞的静止运动由细胞形状的各向异性来描述。细胞位移可由三种不同类型的运动来表征:持续模式,即细胞以其轨迹速度远离任意选定的原点移动;扩散模式,即细胞通过随机游走过程在空间中分散;漂移模式,即细胞在趋化因子分子的浓度梯度中以漂移速度v平行移动。化学动力学响应由扩散常数D(=240平方微米/分钟)和轨迹速度vc(=30微米/分钟)来描述。趋化响应由取向度P1(=0.8)来描述,它与麦卡琴指数和向性指数相同。细胞运动可以用基本运动状态来描述,这种运动状态的寿命为0.5分钟。运动状态的存活概率由内部程序决定。它不是由随机过程描述的。运动方向的角度变化也是编程的,因为均方角变化的平方根为+/-50度。在化学动力学响应中,正负方向的可能性相等。然而,在趋化试验中,正负方向的可能性不相等。我们发现,从趋化梯度到迁移细胞的信息传递在运动方向每次变化时为1比特。这种信息传递的干扰会导致有序-无序转变。此外,我们发现迁移细胞表现出75秒的方向记忆。

相似文献

1
Analysis of cell movement.细胞运动分析
Blood Cells. 1984;10(1):61-77.
2
Cell movement analysis in a necrotactic assay.坏死趋化分析中的细胞运动分析。
Blood Cells. 1984;10(1):107-21.
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Locomotion of white blood cells: a biophysical analysis.白细胞的运动:生物物理分析
Blood Cells. 1989;15(2):315-33.
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Echo 9 virus-induced order-disorder transition of chemotactic response of human polymorphonuclear leucocytes: phenomenology and molecular biology.埃可9型病毒诱导人多形核白细胞趋化反应的有序-无序转变:现象学与分子生物学
Blood Cells. 1984;10(1):79-106.
5
[Studies on the mobilities of granulocytes and the chemotactic factor production by human mononuclear cells (author's transl)].[关于粒细胞移动及人单核细胞趋化因子产生的研究(作者译)]
Hokkaido Igaku Zasshi. 1981 Mar;56(2):217-31.
6
The method of moments as applied to the study of granulocytes' shape and movement.应用于粒细胞形状和运动研究的矩量法。
Mater Med Pol. 1993 Apr-Jun;25(2):87-92.
7
Analysis of the directed and nondirected movement of human granulocytes: influence of temperature and ECHO 9 virus on N-formylmethionylleucylphenylalanine-induced chemokinesis and chemotaxis.人粒细胞定向与非定向运动的分析:温度和ECHO 9病毒对N-甲酰甲硫氨酰亮氨酰苯丙氨酸诱导的化学增活作用和趋化作用的影响。
J Cell Biol. 1983 Jun;96(6):1708-16. doi: 10.1083/jcb.96.6.1708.
8
Directed cell movement: a biophysical analysis.
Blood Cells. 1993;19(1):91-110; discussion 110-3.
9
Run and tumble chemotaxis in a shear flow: the effect of temporal comparisons, persistence, rotational diffusion, and cell shape.剪切流中的趋化性随机游走:时间比较、持续性、旋转扩散和细胞形状的影响
Bull Math Biol. 2009 Jul;71(5):1089-116. doi: 10.1007/s11538-009-9395-9. Epub 2009 Feb 7.
10
Chemotactic movement of single cells.单细胞的趋化运动。
ASGSB Bull. 1991 Jul;4(2):75-85.

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