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Mechanotransduction in neutrophil activation and deactivation

机译:中性粒细胞活化和失活的机械转导

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摘要

Mechanotransduction refers to the processes through which cells sense mechanical stimuli by converting them to biochemical signals and, thus, eliciting specific cellular responses. Cells sense mechanical stimuli from their 3D environment, including the extracellular matrix, neighboring cells and other mechanical forces. Incidentally, the emerging concept of mechanical homeostasis,long term or chronic regulation of mechanical properties, seems to apply to neutrophils in a peculiar manner, owing to neutrophils' ability to dynamically switch between the activated/primed and deactivated/deprimed states. While neutrophil activation has been known for over a century, its deactivation is a relatively recent discovery. Even more intriguing is the reversibility of neutrophil activation and deactivation. We review and critically evaluate recent findings that suggest physiological roles for neutrophil activation and deactivation and discuss possible mechanisms by which mechanical stimuli can drive the oscillation of neutrophils between the activated and resting states. We highlight several molecules that have been identified in neutrophil mechanotransduction, including cell adhesion and transmembrane receptors, cytoskeletal and ion channel molecules. The physiological and pathophysiological implications of such mechanically induced signal transduction in neutrophils are highlighted as a basis for future work. This article is part of a Special Issue entitled: Mechanobiology. (C) 2015 Elsevier B.V. All rights reserved.
机译:机械转导是指细胞通过将机械刺激转化为生化信号,从而引发特定的细胞反应而感应机械刺激的过程。细胞从其3D环境中感知机械刺激,包括细胞外基质,邻近细胞和其他机械力。顺便提及,由于中性粒细胞在活化/启动状态和去活化/去活化状态之间动态切换的能力,因此机械稳态的新兴概念,长期或长期调节机械性质似乎适用于中性粒细胞。尽管嗜中性粒细胞活化已经有一个多世纪的历史了,但它的失活是一个相对较新的发现。更有趣的是嗜中性粒细胞活化和失活的可逆性。我们审查和批判性地评估建议中性粒细胞激活和失活的生理作用的最新发现,并讨论机械刺激可以驱动中性粒细胞在激活状态和静止状态之间振荡的可能机制。我们重点介绍了在嗜中性粒细胞机械转导中已鉴定的几种分子,包括细胞粘附和跨膜受体,细胞骨架和离子通道分子。这种在中性粒细胞中机械诱导的信号转导的生理和病理生理意义被强调为未来工作的基础。本文是《机械生物学》特刊的一部分。 (C)2015 Elsevier B.V.保留所有权利。

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