肥大细胞中流体剪切应力诱导的胞质钙信号和脱颗粒动力学

Fei Wei, Xiaomin Shi, Jiyao Chen, Luwei Zhou
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引用次数: 8

摘要

利用肥大细胞系(大鼠嗜碱性白血病细胞,RBL-2H3)在体外研究细胞皿中对旋转转子产生的流体剪切应力的细胞反应。用共聚焦荧光显微镜对肥大细胞进行Fluo-3/AM(乙酰氧基甲酯)染色,检测细胞内[Ca2+]c(胞质钙浓度)。在施加弱、中等或强流体剪切应力后,胞质钙荧光强度分别振荡、脉冲或稳定增加。从数学模型中,我们重现了肥大细胞在不同水平的流体剪切应力下[Ca2+]c的变化。模型计算证实了另一个实验观察结果,即随着剪切应力的增大,脱粒率增大,达到一定的稳定值。由于肥大细胞对机械刺激的反应清晰、快速和明显,钙信号和脱颗粒动力学可能是针刺和按摩治疗的机制之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Fluid shear stress-induced cytosolic calcium signalling and degranulation dynamics in mast cells

A mast cell line (rat basophilic leukaemia cells, RBL-2H3) was used in vitro to study cellular responses to fluid shear stress generated by a rotating rotor in a cell dish. The [Ca2+]c (cytosolic calcium concentration) in mast cells was detected by confocal fluorescence microscopy after Fluo-3/AM (acetoxymethyl ester) staining. Cytosolic calcium fluorescence intensity oscillated, pulsed, or steadily increased after the application of a weak, moderate or strong fluid shear stress respectively. From a mathematical model, we reproduced a change in [Ca2+]c under different levels of fluid shear stress in mast cells. The model calculation confirmed another experimental observation, specifically, that the degranulation rate increases with shear stress and reaches certain steady values. Since mast cells can react clearly and quickly and obviously to mechanical stimuli, calcium signalling and degranulation dynamics could be one of the mechanisms of acupuncture and massage therapies.

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