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Photobiomodulation (blue and green light) encourages osteoblastic-differentiation of human adipose-derived stem cells: role of intracellular calcium and light-gated ion channels

机译:光生物调节(蓝光和绿光)促进人脂肪干细胞的成骨细胞分化:细胞内钙和光门控离子通道的作用

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摘要

Human adipose-derived stem cells (hASCs) have the potential to differentiate into several different cell types including osteoblasts. Photobiomodulation (PBM) or low level laser therapy (LLLT) using red or near-infrared wavelengths has been reported to have effects on both proliferation and osteogenic differentiation of stem cells. We examined the effects of delivering four different wavelengths (420 nm, 540 nm, 660 nm, 810 nm) at the same dose (3 J/cm2) five times (every two days) on hASCs cultured in osteogenic medium over three weeks. We measured expression of the following transcription factors by RT-PCR: RUNX2, osterix, and the osteoblast protein, osteocalcin. The 420 nm and 540 nm wavelengths were more effective in stimulating osteoblast differentiation compared to 660 nm and 810 nm. Intracellular calcium was higher after 420 nm and 540 nm, and could be inhibited by capsazepine and , which also inhibited osteogenic differentiation. We hypothesize that activation of light-gated calcium ion channels by blue and green light could explain our results.
机译:人类脂肪干细胞(hASCs)具有分化成几种不同细胞类型(包括成骨细胞)的潜力。据报道,使用红色或近红外波长的光生物调节(PBM)或低水平激光疗法(LLLT)对干细胞的增殖和成骨分化都有影响。我们研究了以相同的剂量(3 J / cm 2 )五次(每两天)递送四种不同波长(420 nm,540 nm,660 nm,810 nm)对培养的hASC的影响在成骨培养基中放置三周。我们通过RT-PCR测量了以下转录因子的表达:RUNX2,osterix和成骨细胞蛋白,骨钙素。与660nm和810nm相比,420nm和540nm波长在刺激成骨细胞分化方面更有效。细胞内钙在420 nm和540 nm处较高,可被辣椒碱和抑制,同时也抑制成骨分化。我们假设蓝和绿光激活钙离子门控的钙离子通道可以解释我们的结果。

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