首页> 外文期刊>Wound repair and regeneration: official publication of the Wound Healing Society [and] the European Tissue Repair Society >Green light emitting diodes accelerate wound healing: Characterization of the effect and its molecular basis in vitro and in vivo
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Green light emitting diodes accelerate wound healing: Characterization of the effect and its molecular basis in vitro and in vivo

机译:绿色发光二极管加速伤口治疗:及其特性的影响体外和体内的分子基础

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摘要

Because light-emitting diodes (LEDs) are low-coherent, quasimonochromatic, and nonthermal, they are an alternative for low level laser therapy, and have photobiostimulative effects on tissue repair. However, the molecular mechanism(s) are unclear, and potential effects of blue and/or green LEDs on wound healing are still unknown. Here, we investigated the effects of red (638nm), blue (456nm), and green (518nm) LEDs on wound healing. In an in vivo study, wound sizes in the skin of ob/ob mice were significantly decreased on day 7 following exposure to green LEDs, and complete reepithelialization was accelerated by red and green LEDs compared with the control mice. To better understand the molecular mechanism(s) involved, we investigated the effects of LEDs on human fibroblasts in vitro by measuring mRNA and protein levels of cytokines secreted by fibroblasts during the process of wound healing and on the migration of HaCat keratinocytes. The results suggest that some cytokines are significantly increased by exposure to LEDs, especially leptin, IL-8, and VEGF, but only by green LEDs. The migration of HaCat keratinocytes was significantly promoted by red or green LEDs. In conclusion, we demonstrate that green LEDs promote wound healing by inducing migratory and proliferative mediators, which suggests that not only red LEDs but also green LEDs can be a new powerful therapeutic strategy for wound healing.
机译:因为发光二极管(led)low-coherent、quasimonochromatic和非热能的,他们另一种低水平激光治疗,photobiostimulative影响组织修复。机制尚不清楚,和潜在的影响蓝色或绿色的led在伤口愈合仍然未知。红色(638海里),蓝色(456海里),绿色(518海里)led在伤口愈合。大小的皮肤ob / ob老鼠显著减少后7天绿色发光二极管,和完成reepithelialization被红色和加速绿色发光二极管与控制的老鼠相比。更好地理解的分子机制(年代)参与,我们调查了led的影响人类成纤维细胞在体外通过测量mRNA细胞因子分泌的蛋白质含量成纤维细胞在伤口愈合的过程迁移的HaCat角质细胞。结果表明,一些细胞因子大大增加了暴露于发光二极管,特别是瘦素、引发和VEGF,但只有通过绿色发光二极管。被红色或绿色led显著提升。总之,我们表明,绿色发光二极管通过诱导迁徙和促进伤口愈合增生性介质,这表明不是只能一个红色发光二极管还绿色led新强大的伤口愈合的治疗策略。

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