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Microfluidics study of intracellular calcium response to mechanical stimulation on single suspension cells

机译:microfluidics study of intracellular calcium response to mechanical stimulation on single suspension cells

摘要

A microfluidic microdevice was developed to exert mechanical stimulation on an individual suspension cell for mechanosensation research. In this microfluidic chip, an individual cell was isolated from a population of cells, and trapped in a microchannel with a compressive component made of a deflectable membrane. The mechanosensation of HL60 cells ( leukemic cells) was studied using this chip, and the results showed that mechanical stimulations could trigger extracellular calcium to flow into HL60 cells through ion channels on cell membranes. The tension on individual HL60 cells exerted by the microdevice was showed large variations in the threshold of mechanosensation activation. In contrast to previous reports using patch clamp technique, there was little influence of cytoskeleton interruption on HL60 cell mechanosensation triggered by whole-cell compression. Additionally, two functional units were integrated in one chip for carrying out mechanosensation study in parallel, where HL60 cells ( leukemic cells) and Jurkat cells ( lymphocytes) were shown to respond to mechanical stimulation with different kinetics. The results demonstrated that the microfluidic device provides a novel approach to investigating the mechanosensation of single suspension cells in high-throughput.
机译:开发了一种微流体微装置,以对单个悬浮细胞施加机械刺激,以进行机械传感研究。在该微流控芯片中,从一组细胞中分离出单个细胞,并将其捕获在微通道中,该微通道具有由可偏转膜制成的压缩组件。使用该芯片研究了HL60细胞(白血病细胞)的机械传感,结果表明机械刺激可以触发细胞外钙通过细胞膜上的离子通道流入HL60细胞。微型设备对单个HL60细胞施加的张力在机械感觉激活阈值中显示出很大的变化。与以前使用膜片钳技术的报道相反,细胞骨架中断对全细胞压迫触发的HL60细胞机械感觉的影响很小。此外,将两个功能单元集成在一个芯片中,以并行进行机械感测研究,其中HL60细胞(白血病细胞)和Jurkat细胞(淋巴细胞)被证明对机械刺激具有不同的动力学响应。结果表明,微流体装置提供了一种新颖的方法来研究高通量的单个悬浮细胞的机械传感。

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