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Control of intracellular ionic concentrations by mid-infrared laser irradiation

机译:通过中红外激光照射控制细胞内离子浓度

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摘要

We successfully induced intracellular ion concentration changes in live culture cells using mid-infrared laser irradiation. The laser used for irradiation was a quantum cascade laser with a wavelength of 6.1 micrometers. We tuned the power of the laser to be between 30 to 60 mW at the sample. Cell lines, namely HeLa and Chinese hamster ovary cell lines, were used. They were cultured on specially fabricated silicon-bottom dishes. Live cells were stained using ion-sensitive dyes such as Calcium Green-1. The mid-infrared light was incident on the cell samples from the bottom of the dish through the silicon plate, and fluorescence imaging of the ion concentrations was performed using an upright fluorescence microscope placed on top of the sample stage. The mid-infrared lasers were operated in the continuous wave mode and light irradiations onto the cells were temporally controlled using a mechanical shutter in a periodical on-and-off pattern in the second timescale. The cells showed oscillations in their ionic concentration, which was synchronized with the periodical mid-infrared irradiation, and the threshold power needed for evoking the ion concentration change was dependent on the cell types and ion species. These results demonstrated that mid-infrared light directly changed the ionic response within cells and had the ability to change cell functions.
机译:我们使用中红外激光辐照成功诱导了活培养细胞中细胞内离子浓度的变化。用于照射的激光器是波长为6.1微米的量子级联激光器。我们将样品的激光功率调整为30至60 mW。使用了细胞系,即HeLa和中国仓鼠卵巢细胞系。将它们培养在特制的硅底培养皿上。使用离子敏感染料(例如Calcium Green-1)对活细胞进行染色。中红外光从培养皿的底部通过硅板入射到细胞样品上,并使用放置在样品台顶部的立式荧光显微镜对离子浓度进行荧光成像。以连续波模式操作中红外激光器,并在第二时间范围内使用机械快门以周期性的开-关模式临时控制照射到细胞上的光。细胞显示出其离子浓度的振荡,这与周期性的中红外辐射同步,引起离子浓度变化所需的阈值功率取决于细胞类型和离子种类。这些结果表明,中红外光直接改变细胞内的离子反应,并具有改变细胞功能的能力。

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