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Calcium Signaling in Live Cells on Elastic Gels under Mechanical Vibration at Subcellular Levels

机译:机械振动下亚细胞水平的弹性凝胶上的活细胞中的钙信号。

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摘要

A new device was designed to generate a localized mechanical vibration of flexible gels where human umbilical vein endothelial cells (HUVECs) were cultured to mechanically stimulate these cells at subcellular locations. A Fluorescence Resonance Energy Transfer (FRET)-based calcium biosensor (an improved Cameleon) was used to monitor the spatiotemporal distribution of intracellular calcium concentrations in the cells upon this mechanical stimulation. A clear increase in intracellular calcium concentrations over the whole cell body (global) can be observed in the majority of cells under mechanical stimulation. The chelation of extracellular calcium with EGTA or the blockage of stretch-activated calcium channels on the plasma membrane with streptomycin or gadolinium chloride significantly inhibited the calcium responses upon mechanical stimulation. Thapsigargin, an endoplasmic reticulum (ER) calcium pump inhibitor, or U73122, a phospholipase C (PLC) inhibitor, resulted in mainly local calcium responses occurring at regions close to the stimulation site. The disruption of actin filaments with cytochalasin D or inhibition of actomyosin contractility with ML-7 also inhibited the global calcium responses. Therefore, the global calcium response in HUVEC depends on the influx of calcium through membrane stretch-activated channels, followed by the release of inositol trisphosphate (IP3) via PLC activation to trigger the ER calcium release. Our newly developed mechanical stimulation device can also provide a powerful tool for the study of molecular mechanism by which cells perceive the mechanical cues at subcellular levels.
机译:设计了一种新设备,以产生柔性凝胶的局部机械振动,在该凝胶中培养人脐静脉内皮细胞(HUVEC)以在亚细胞位置机械刺激这些细胞。基于荧光共振能量转移(FRET)的钙生物传感器(改进的Cameleon)用于监测机械刺激后细胞内细胞内钙浓度的时空分布。在机械刺激下的大多数细胞中,可以观察到整个细胞体内(整体)细胞内钙浓度的明显增加。细胞外钙与EGTA的螯合或链霉素或氯化ado对质膜上拉伸活化钙通道的阻塞显着抑制了机械刺激后的钙反应。 Thapsigargin,一种内质网(ER)钙泵抑制剂,或U73122,一种磷脂酶C(PLC)抑制剂,导致主要的局部钙反应发生在靠近刺激部位的区域。用细胞松弛素D破坏肌动蛋白丝或用ML-7抑制肌动球蛋白的收缩力也抑制了总体钙反应。因此,HUVEC中的总体钙反应取决于钙通过膜拉伸激活通道的流入,然后通过PLC激活释放肌醇三磷酸酯(IP3)以触发ER钙释放。我们新开发的机械刺激设备还可以为研究分子机制提供强大的工具,从而使细胞在亚细胞水平上感知机械信号。

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