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Photobiomodulation of human adipose-derived stem cells using 810nm and 980nm lasers operates via different mechanisms of action

机译:使用810nm和980nm激光对人类脂肪干细胞进行光生物调节其作用机理不同

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摘要

Photobiomodulation (PBM) using red or near-infrared (NIR) light has been used to stimulate the proliferation and differentiation of adipose-derived stem cells. The use of NIR wavelengths such as 810nm is reasonably well accepted to stimulate mitochondrial activity and ATP production via absorption of photons by cytochrome c oxidase. However, the mechanism of action of 980nm is less well understood. Here we study the effects of both wavelengths (810 nm and 980 nm) on adipose-derived stem cells in vitro. Both wavelengths showed a biphasic dose response, but 810nm had a peak dose response at 3J/cm2 for stimulation of proliferation at 24 hours, while the peak dose for 980nm was 10–100 times lower at 0.03 or 0.3 J/cm2. Moreover, 980nm (but not 810nm) increased cytosolic calcium while decreasing mitochondrial calcium. The effects of 980nm could be blocked by calcium channel blockers (capsazepine for TRPV1 and for TRPC channels), which had no effect on 810nm. To test the hypothesis that the chromophore for 980nm was intracellular water, which could possibly form a microscopic temperature gradient upon laser irradiation, we added cold medium (4°C) during the light exposure, or pre-incubated the cells at 42°C, both of which abrogated the effect of 980nm but not 810nm. We conclude that 980nm affects temperature-gated calcium ion channels, while 810nm largely affects mitochondrial cytochrome c oxidase.
机译:使用红色或近红外(NIR)光的光生物调节(PBM)已用于刺激脂肪干细胞的增殖和分化。使用NIR波长(例如810nm)被细胞色素C氧化酶吸收光子,以刺激线粒体活性和ATP产生,是相当被接受的。但是,人们对980nm的作用机理了解得很少。在这里,我们研究了两种波长(810 nm和980 nm)对脂肪干细胞的体外影响。两种波长均显示出双相剂量响应,但810nm的峰值剂量响应在3J / cm 2 处在24小时刺激增殖,而980nm的峰值剂量在0.03或更低时降低了10-100倍。 0.3 J / cm 2 。此外,980nm(而不是810nm)增加了胞质钙,同时降低了线粒体钙。 980nm的效应可以被钙离子通道阻滞剂(卡帕西平用于TRPV1和TRPC通道)阻断,而钙离子通道阻滞剂对810nm没有影响。为了验证980nm的发色团是细胞内水的假说,在激光照射下它可能会形成微观温度梯度,我们在曝光期间添加了冷培养基(4°C),或者将细胞在42°C下预孵育,两者都取消了980nm的效果,但没有取消810nm的效果。我们得出的结论是980nm影响门控温度的钙离子通道,而810nm主要影响线粒体细胞色素c氧化酶。

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