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白细胞如何感知化学梯度?

How do leucocytes perceive chemical gradients?

作者信息

Wilkinson P C

机构信息

Bacteriology and Immunology Department, University of Glasgow (Western Infirmary), U.K.

出版信息

FEMS Microbiol Immunol. 1990 Dec;2(5-6):303-11. doi: 10.1111/j.1574-6968.1990.tb03533.x.

Abstract

Chemoattractants determine not only the direction of leucocyte locomotion (chemotaxis) but also its speed (chemokinesis). Various mechanisms by which leucocytes may detect chemotactic gradients, including spatial and temporal detection, are briefly reviewed. These mechanisms as originally proposed did not address the question how attractants cause leucocytes to migrate in persistent random paths in the absence of a gradient. Stochastic models have recently been presented in which leucocytes either respond by polarizing and migrating in the direction from which they receive their first signal, or respond to random fluctuations in the perceived attractant concentration. Stochastic models allow an explanation for the persistent random walk shown by cells in uniform concentrations of attractant as well as for directional locomotion in gradients. They suggest that, at the biochemical level, the mechanisms by which attractants stimulate chemotaxis and chemokinesis are probably the same.

摘要

化学引诱剂不仅决定白细胞移动的方向(趋化性),还决定其速度(化学增活现象)。本文简要综述了白细胞检测趋化梯度的各种机制,包括空间和时间检测。最初提出的这些机制并未解决引诱剂如何使白细胞在没有梯度的情况下沿持续随机路径迁移的问题。最近提出的随机模型表明,白细胞要么通过极化并朝着接收第一个信号的方向迁移来做出反应,要么对感知到的引诱剂浓度的随机波动做出反应。随机模型能够解释细胞在均匀浓度引诱剂中表现出的持续随机游动以及在梯度中的定向移动。它们表明,在生化水平上,引诱剂刺激趋化性和化学增活现象的机制可能是相同的。

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