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Melatonin as a principal component of red light therapy.

机译:褪黑激素是红光疗法的主要成分。

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Melatonin is well recognized for its role as a potent antioxidant and is directly implicated in the free radical theory of aging [1] [Reiter RJ, Pablos MI, Agapito TT, Guerrero JM. Melatonin in the context of the free radical theory of aging. Ann N Y Acad Sci 1996;786:362-78]. Moreover, melatonin has been shown to retard age-related increases in lipid peroxidation and oxidative damage [2] [Okatani Y, Wakatsuki A, Reiter RJ. Melatonin protects hepatic mitochondrial respiratory chain activity in senescence-accelerated mice. J Pineal Res 2002;32:143-8] and to act directly upon the immune system [3] [Poon AM, Liu ZM, Pang CS, Brown GM, Pang SF. Evidence for a direct action of melatonin on the immune system. Biol Signals 1994;3:107-17]. This report focuses on characterizing documented functions of melatonin in the context of red light therapy and proposes that melatonin is a potential mediator of red light's therapeutic effects, a hypothesis that is as yet untested. Red light therapy (670 nm, 4J/cm(2)) has been shown to restore glutathione redox balance upon toxicological insult and enhance both cytochrome c oxidase and energy production, all of which may be affected by melatonin. The red light treatment has also been successfully implemented in the clinical setting for its effectiveness in reducing both the number of incidences and severity of oral mucositis resulting in part from the chemotherapy and/or radiation administered prior to bone marrow transplants. Moreover, red light therapy improves wound healing and is being further tested for its ability to ameliorate toxicant-induced retinal and visual cortical neuron damage. Researchers in the growing field of light therapy may be in a position to draw from and collaborate with melatonin researchers to better characterize this alternative treatment.
机译:褪黑素因其有效的抗氧化剂作用而广为人知,并直接与衰老的自由基理论有关[1] [Reiter RJ,Pablos MI,Agapito TT,Guerrero JM。褪黑素在自由基衰老理论的背景下。 Ann N Y Acad Sci 1996; 786:362-78]。此外,褪黑素已显示出可延缓与年龄相关的脂质过氧化和氧化损伤[2] [Okatani Y,Wakatsuki A,Reiter RJ。褪黑素可保护衰老加速小鼠的肝线粒体呼吸链活性。 J Pineal Res 2002; 32:143-8]并直接对免疫系统起作用[3] [Poon AM,Liu ZM,Pang CS,Brown GM,Pang SF。褪黑激素直接作用于免疫系统的证据。生物信号,1994; 3:107-17]。该报告着重描述了褪黑素在红光治疗中的功能特征,并提出褪黑素是红光治疗作用的潜在介体,这一假设尚未得到验证。红光疗法(670 nm,4J / cm(2))已被证明可在毒理学损害后恢复谷胱甘肽氧化还原平衡,并增强细胞色素C氧化酶和能量产生,所有这些都可能受到褪黑激素的影响。红光治疗还有效地减少了部分由于在骨髓移植之前进行的化学疗法和/或放射治疗而导致的口腔粘膜炎的发生次数和严重程度,从而在临床环境中成功实施。此外,红光疗法改善了伤口的愈合,并且其改善有毒物质引起的视网膜和视觉皮层神经元损伤的能力正在接受进一步测试。光疗领域的研究人员可能会从褪黑素研究人员那里汲取经验并与之合作,以更好地表征这种替代疗法。

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