Desmet Kristina D, Paz David A, Corry Jesse J, Eells Janis T, Wong-Riley Margaret T T, Henry Michele M, Buchmann Ellen V, Connelly Mary P, Dovi Julia V, Liang Huan Ling, Henshel Diane S, Yeager Ronnie L, Millsap Deborah S, Lim Jinhwan, Gould Lisa J, Das Rina, Jett Marti, Hodgson Brian D, Margolis David, Whelan Harry T
Department of Clinical Laboratory Sciences, University of Wisconsin-Milwaukee, 53226, USA.
Photomed Laser Surg. 2006 Apr;24(2):121-8. doi: 10.1089/pho.2006.24.121.
This review presents current research on the use of far-red to near-infrared (NIR) light treatment in various in vitro and in vivo models. Low-intensity light therapy, commonly referred to as "photobiomodulation," uses light in the far-red to near-infrared region of the spectrum (630-1000 nm) and modulates numerous cellular functions. Positive effects of NIR-light-emitting diode (LED) light treatment include acceleration of wound healing, improved recovery from ischemic injury of the heart, and attenuated degeneration of injured optic nerves by improving mitochondrial energy metabolism and production. Various in vitro and in vivo models of mitochondrial dysfunction were treated with a variety of wavelengths of NIR-LED light. These studies were performed to determine the effect of NIR-LED light treatment on physiologic and pathologic processes. NIRLED light treatment stimulates the photoacceptor cytochrome c oxidase, resulting in increased energy metabolism and production. NIR-LED light treatment accelerates wound healing in ischemic rat and murine diabetic wound healing models, attenuates the retinotoxic effects of methanol-derived formic acid in rat models, and attenuates the developmental toxicity of dioxin in chicken embryos. Furthermore, NIR-LED light treatment prevents the development of oral mucositis in pediatric bone marrow transplant patients. The experimental results demonstrate that NIR-LED light treatment stimulates mitochondrial oxidative metabolism in vitro, and accelerates cell and tissue repair in vivo. NIR-LED light represents a novel, noninvasive, therapeutic intervention for the treatment of numerous diseases linked to mitochondrial dysfunction.
本综述介绍了目前关于在各种体外和体内模型中使用远红光至近红外(NIR)光治疗的研究。低强度光疗法,通常称为“光生物调节”,使用光谱中远红光至近红外区域(630 - 1000 nm)的光,并调节多种细胞功能。近红外发光二极管(LED)光治疗的积极作用包括加速伤口愈合、改善心脏缺血性损伤后的恢复,以及通过改善线粒体能量代谢和生成来减轻受损视神经的退化。用各种波长的近红外发光二极管光处理了线粒体功能障碍的各种体外和体内模型。进行这些研究是为了确定近红外发光二极管光治疗对生理和病理过程的影响。近红外发光二极管光治疗刺激光受体细胞色素c氧化酶,导致能量代谢和生成增加。近红外发光二极管光治疗可加速缺血大鼠和小鼠糖尿病伤口愈合模型中的伤口愈合,减轻大鼠模型中甲醇衍生的甲酸的视网膜毒性作用,并减轻鸡胚中二恶英的发育毒性。此外,近红外发光二极管光治疗可预防儿科骨髓移植患者口腔黏膜炎的发生。实验结果表明,近红外发光二极管光治疗在体外刺激线粒体氧化代谢,并在体内加速细胞和组织修复。近红外发光二极管光代表了一种用于治疗与线粒体功能障碍相关的多种疾病的新型、非侵入性治疗干预措施。