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Cell Signaling Experiments Driven by Optical Manipulation

机译:光学操纵驱动的细胞信号实验

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摘要

Cell signaling involves complex transduction mechanisms in which information released by nearby cells or extracellular cues are transmitted to the cell, regulating fundamental cellular activities. Understanding such mechanisms requires cell stimulation with precise control of low numbers of active molecules at high spatial and temporal resolution under physiological conditions. Optical manipulation techniques, such as optical tweezing, mechanical stress probing or nano-ablation, allow handling of probes and sub-cellular elements with nanometric and millisecond resolution. PicoNewton forces, such as those involved in cell motility or intracellular activity, can be measured with femtoNewton sensitivity while controlling the biochemical environment. Recent technical achievements in optical manipulation have new potentials, such as exploring the actions of individual molecules within living cells. Here, we review the progress in optical manipulation techniques for single-cell experiments, with a focus on force probing, cell mechanical stimulation and the local delivery of active molecules using optically manipulated micro-vectors and laser dissection.
机译:细胞信号传导涉及复杂的转导机制,其中附近细胞或细胞外信号释放的信息被传递到细胞,从而调节基本的细胞活动。了解这些机制需要在生理条件下以高时空分辨率精确控制少量活性分子的细胞刺激。光学操纵技术,例如光镊,机械应力探测或纳米消融,可以处理纳米级和毫秒级分辨率的探针和亚细胞元件。 PicoNewton力,例如涉及细胞运动或细胞内活性的力,可以在控制生化环境的同时以femtoNewton灵敏度进行测量。光学操纵方面的最新技术成就具有新的潜力,例如探索活细胞内单个分子的作用。在这里,我们回顾了用于单细胞实验的光学操纵技术的进展,重点是力探测,细胞机械刺激以及使用光学操纵的微载体和激光解剖的活性分子的局部递送。

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