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皮肤中低强度可见光和近红外光诱导的细胞信号通路:综述

Low-Intensity Visible and Near-Infrared Light-Induced Cell Signaling Pathways in the Skin: A Comprehensive Review.

作者信息

Barolet Augustin C, Villarreal Amelia M, Jfri Abdulhadi, Litvinov Ivan V, Barolet Daniel

机构信息

Clinical & Biomedical Sciences Graduate Program, Department of Medicine, CHU de Quebec, Université Laval, Quebec City, Quebec, Canada.

CMDGT/LOEX, CHU de Quebec, Université Laval, Quebec City, Quebec, Canada.

出版信息

Photobiomodul Photomed Laser Surg. 2023 Apr;41(4):147-166. doi: 10.1089/photob.2022.0127.

Abstract

To describe current knowledge regarding established and putative cell signaling pathways involved in skin photobiomodulation. The skin is the largest and most accessible organ of the body. It is the first line of defense against the external environment, including solar radiation. Among solar rays, visible and infrared non-ionizing photons may reach human skin and trigger a cascade of non-thermal cell signaling pathways called photobiomodulation (PBM). The use of PBM using artificial light sources has been known for more than 50 years, but it has not yet been widely accepted due to uncertainty about the cellular mechanisms of action. However, much knowledge has been gained in this field in recent years, which will be summarized in this review. An extensive literature review was performed using Medline, Embase, and Google Scholar as research databases to acquire relevant publications in this particular field. A comprehensive description of chromophores, primary and secondary effectors is provided in addition to a visual representation of known and putative cell signaling mechanisms involved in such complex light-skin interactions. Also, a summary of clinical indications of skin PBM, key light parameters, and promising skin applications (local and systemic) are mentioned. In PBM, skin cells are the first to absorb photons, triggering specific cell-signaling pathways through primary and secondary effectors, leading to enhanced cell repair and survival, notably in hypoxic or stressed cells. A better understanding of the mechanisms of action will help us optimize known indications and discover new ones.

摘要

描述目前关于皮肤光生物调节中已确立和推测的细胞信号通路的知识。皮肤是人体最大且最易触及的器官。它是抵御外部环境(包括太阳辐射)的第一道防线。在太阳光线中,可见光和红外非电离光子可到达人体皮肤,并触发一系列被称为光生物调节(PBM)的非热细胞信号通路。使用人工光源进行光生物调节已为人所知超过50年,但由于其作用的细胞机制尚不确定,尚未被广泛接受。然而,近年来该领域已取得了许多知识,本综述将对此进行总结。使用Medline、Embase和谷歌学术作为研究数据库进行了广泛的文献综述,以获取该特定领域的相关出版物。除了以可视化方式呈现这种复杂的光 - 皮肤相互作用中已知和推测的细胞信号机制外,还提供了对发色团、初级和次级效应器的全面描述。此外,还提到了皮肤光生物调节的临床适应症、关键光参数以及有前景的皮肤应用(局部和全身)。在光生物调节中,皮肤细胞首先吸收光子,通过初级和次级效应器触发特定的细胞信号通路,从而增强细胞修复和存活能力,特别是在缺氧或应激细胞中。更好地理解其作用机制将有助于我们优化已知适应症并发现新的适应症。

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