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通过新型近红外发光二极管(nNIR)照明增强皮肤焕新和头发生长:体外和体内研究。

Enhancement of skin rejuvenation and hair growth through novel near-infrared light emitting diode (nNIR) lighting: in vitro and in vivo study.

机构信息

Department of Plastic and Reconstructive Surgery, Seoul National University Bundang Hospital, Seongnam, Republic of Korea.

Korean Institute of Nonclinical Study, Seongnam, Republic of Korea.

出版信息

Lasers Med Sci. 2024 Apr 17;39(1):104. doi: 10.1007/s10103-024-04044-9.

Abstract

The study aimed to explore the impact of a novel near-infrared LED (nNIR) with an extended spectrum on skin enhancement and hair growth. Various LED sources, including White and nNIRs, were compared across multiple parameters: cytotoxicity, adenosine triphosphate (ATP) synthesis, reactive oxygen species (ROS) reduction, skin thickness, collagen synthesis, collagenase expression, and hair follicle growth. Experiments were conducted on human skin cells and animal models. Cytotoxicity, ATP synthesis, and ROS reduction were evaluated in human skin cells exposed to nNIRs and Whites. LED irradiation effects were also studied on a UV-induced photoaging mouse model, analyzing skin thickness, collagen synthesis, and collagenase expression. Hair growth promotion was examined as well. Results revealed both White and nNIR were non-cytotoxic to human skin cells. nNIR enhanced ATP and collagen synthesis while reducing ROS levels, outperforming the commonly used 2chip LEDs. In the UV-induced photoaging mouse model, nNIR irradiation led to reduced skin thickness, increased collagen synthesis, and lowered collagenase expression. Additionally, nNIR irradiation stimulated hair growth, augmented skin thickness, and increased hair follicle count. In conclusion, the study highlighted positive effects of White and nNIR irradiation on skin and hair growth. However, nNIR exhibited superior outcomes compared to White. Its advancements in ATP content, collagen synthesis, collagenase inhibition, and hair growth promotion imply increased ATP synthesis activity. These findings underscore nNIR therapy's potential as an innovative and effective approach for enhancing skin and promoting hair growth.

摘要

本研究旨在探索一种新型近红外 LED(nNIR)的扩展光谱对皮肤增强和头发生长的影响。通过比较多种 LED 光源(包括白光和 nNIR)的多个参数:细胞毒性、三磷酸腺苷(ATP)合成、活性氧(ROS)减少、皮肤厚度、胶原蛋白合成、胶原酶表达和毛囊生长,来研究其影响。在人类皮肤细胞和动物模型上进行了实验。在暴露于 nNIR 和白光的人类皮肤细胞中评估了细胞毒性、ATP 合成和 ROS 减少。还研究了 LED 照射对 UV 诱导的光老化小鼠模型的影响,分析了皮肤厚度、胶原蛋白合成和胶原酶表达。还检查了头发生长的促进作用。结果表明,白光和 nNIR 对人类皮肤细胞均无细胞毒性。nNIR 增强了 ATP 和胶原蛋白的合成,同时降低了 ROS 水平,优于常用的 2chip LEDs。在 UV 诱导的光老化小鼠模型中,nNIR 照射导致皮肤厚度减少、胶原蛋白合成增加和胶原酶表达降低。此外,nNIR 照射刺激头发生长,增加皮肤厚度并增加毛囊数量。综上所述,该研究强调了白光和 nNIR 照射对皮肤和头发生长的积极影响。然而,nNIR 的效果优于白光。其在 ATP 含量、胶原蛋白合成、胶原酶抑制和头发生长促进方面的优势表明其具有更高的 ATP 合成活性。这些发现强调了 nNIR 治疗作为增强皮肤和促进头发生长的创新有效方法的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/702d/11024053/3ad772ae1eb9/10103_2024_4044_Fig1_HTML.jpg

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