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Low level light promotes the proliferation and differentiation of bone marrow derived mesenchymal stem cells

机译:低水平光促进骨髓衍生间充质干细胞的增殖和分化

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Low-level light irradiation (LLLI) reported to stimulate the proliferation or differentiation of a variety of cell types. However, very little is known about the effect of light therapy on stem cells. The aim of the present study was to evaluate the effect of LLLI on the molecular physiological change of human bone marrow derived stem cells (hBMSC) by wavelength (470, 630, 660, 740 and 850, 50mW). The laser diode was performed with different time interval (0, 7.5, 15, 30J/cm~2, 50mW) on hBMSC. To determine the molecular physiological changes of cellular level of hBMSC, the clonogenic assay, ATP assay, reactive oxygen species (ROS) detection, mitochondria membrane potential (MMPΦ) staining and calcium efflux assay were assessed after irradiation. There was a difference between with and without irradiation on hBMSCs. An energy density up to 30 J/cm~2 improved the cell proliferation in comparison to the control group. Among these irradiated group, 630 and 660nm were significantly increased the cell proliferation. The cellular level of ATP and calcium influx was increased with energy dose-dependent in all LLLI groups. Meanwhile, ROS and MMPΦ were also increased after irradiation except 470nm. It can be concluded that LLLI using infrared light and an energy density up to 30 J/cm~2 has a positive stimulatory effect on the proliferation or differentiation of hBMSCs. Our results suggest that LLLI may influence to the mitochondrial membrane potential activity through ATP synthesis and increased cell metabolism which leads to cell proliferation and differentiation.
机译:据报道,低水平的光辐射(LLLI)刺激各种细胞类型的增殖或分化。然而,关于光治疗对干细胞的影响很少。本研究的目的是评价LLLI通过波长(470,630,660,740和850,50mW)的人骨髓衍生干细胞(HBMSC)分子生理变化的影响。在HBMSC上用不同的时间间隔(0,7.5,15,30J / cm〜2,50mW)进行激光二极管。为了确定HBMSC细胞水平的分子生理变化,在照射后评估克隆核酸睾丸测定,ATP测定,反应性氧物质(ROS)检测,线粒体膜电位(MMPφ)染色和钙流速测定。 HBMSCs的辐照有差异。与对照组相比,能量密度高达30J / cm〜2改善了细胞增殖。在这些辐照基团中,细胞增殖显着提高630和660nm。通过依赖于所有LLLI组的能量剂量依赖于能量剂量增加,ATP和钙流入的细胞水平增加。同时,除了470nm之外,射击后,ROS和MMPΦ也增加了。可以得出结论,使用红外光的LLLI和高达30J / cm〜2的能量密度对HBMSCs的增殖或分化具有正刺激作用。我们的研究结果表明,LLLI可能通过ATP合成和增加的细胞代谢对线粒体膜电位活性影响,这导致细胞增殖和分化。

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