首页> 外文期刊>Journal of drugs in dermatology: JDD >Histological and clinical studies on the effects of low to medium level infrared light therapy on human and mouse skin.
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Histological and clinical studies on the effects of low to medium level infrared light therapy on human and mouse skin.

机译:低至中水平红外光疗法对人和小鼠皮肤的影响的组织学和临床研究。

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BACKGROUND AND OBJECTIVE: Deep heating or denaturation of collagen has been reported to be necessary for nonablative skin rejuvenation. The purpose of this study was to examine whether thermally damaged collagen is an indispensable factor to increase the amount of collagen in vivo. Epidermal and dermal responses to infrared light therapy using a Titan source were examined with the aim of correlating histological and clinical responses in human and amelanotic mouse skin. STUDY DESIGN/MATERIALS AND METHODS: Ten, 20, or 30 J/cm2 infrared light were irradiated on the human subject's skin (thigh), while 5, 10, 20, or 30 J/cm2 were used on amelanotic mouse skin. Biopsies were taken and analyzed using hematoxylin and eosin (H&E) and Elastica von Gieson stain. RESULTS: Ten or 20 J/cm2 infrared light increased the amount of both collagen and elastin in all layers of the dermis without denaturing the collagen in human skin. A higher dose of 30 J/cm2 also increased the amount of collagen and elastin, but denatured the collagen in human skin. (In addition to the thigh, 2 treatments of 10 J/cm2 infrared light improved skin toning and texture on the subject's face). In mouse skin, 5 or 10 J/cm2 remarkably increased the amount of both collagen and elastin, and of epidermal cells. Twenty or 30 J/cm increased the amount of collagen and elastin and the number of keratinocytes, but caused some vacuolated degeneration of keratinocytes. The presence of denatured collagen was not evident due to the high density of collagen. CONCLUSIONS: This study shows that the denaturation of collagen is not required to increase the amounts of collagen or elastin in vivo in human skin. The activation of the mitochondria as well as the denaturation of collagen may play important roles in infrared phototherapy.
机译:背景与目的:据报道,胶原蛋白的深层加热或变性对于非烧蚀性皮肤的再生是必需的。这项研究的目的是检查热损伤的胶原蛋白是否是增加体内胶原蛋白含量的必不可少的因素。检验了使用Titan光源对红外光疗法产生的表皮和真皮反应,目的是在人类和变态小鼠皮肤中关联组织学和临床反应。研究设计/材料和方法:在人的皮肤(大腿)上照射10、20或30 J / cm2的红外光,而在搪瓷小鼠皮肤上使用5、10、20或30 J / cm2的红外光。使用苏木精和曙红(H&E)和Elastica von Gieson染色剂进行活检并进行分析。结果:10或20 J / cm2红外光可增加真皮所有层中胶原蛋白和弹性蛋白的含量,而不会使人体皮肤中的胶原蛋白变性。更高的30 J / cm2剂量也会增加胶原蛋白和弹性蛋白的含量,但会使人皮肤中的胶原蛋白变性。 (除了大腿以外,还有10 J / cm2红外光的2种治疗方法可以改善对象面部的皮肤色调和质感)。在小鼠皮肤中,5或10 J / cm2会显着增加胶原蛋白,弹性蛋白和表皮细胞的数量。二十或30 J / cm增加了胶原蛋白和弹性蛋白的数量以及角质形成细胞的数量,但引起了角质形成细胞的空泡变性。由于胶原蛋白的高密度,变性胶原蛋白的存在并不明显。结论:这项研究表明,胶原蛋白变性不需要增加人体皮肤中体内胶原蛋白或弹性蛋白的含量。线粒体的活化以及胶原的变性在红外光疗中可能起重要作用。

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