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光生物调节治疗黄褐斑:综合评价和最新进展。

Photobiomodulation for melasma treatment: Integrative review and state of the art.

机构信息

Postgraduate Program in Biophotonics Medicine, Universidade Nove de Julho, UNINOVE, São Paulo, SP, Brazil.

Centro Universitário Univates - CCBS, Lajeado, RS, Brazil.

出版信息

Photodermatol Photoimmunol Photomed. 2024 Jan;40(1):e12935. doi: 10.1111/phpp.12935. Epub 2023 Nov 28.

Abstract

PURPOSE

Photobiomodulation therapy (PBM) is a versatile technique for treating skin diseases. Melasma, a chronic hyperpigmentation condition, has recently been associated with vascular features and dermal photoaging and poses significant management challenges. We review the recent literature on melasma etiology and the evidence supporting PBM as a therapeutic modality for melasma treatment.

METHODS

We conducted a comprehensive literature search in three different databases from May to August 2023, focusing on studies published in the past 10 years. The inclusion criteria comprised full-text studies investigating low-power lasers and/or light-emitting diodes (LEDs) in in vitro or in vivo models, as well as clinical trials. We excluded studies discussing alternative melasma therapies or lacking experimental data. We identified additional studies by searching the reference lists of the selected articles.

RESULTS

We identified nine relevant studies. Clinical studies, in agreement with in vitro experiments and animal models, suggest that PBM effectively reduces melasma-associated hyperpigmentation. Specific wavelengths (red: 630 nm; amber: 585 and 590 nm; infrared: 830 and 850 nm) at radiant exposures between 1 and 20 J/cm exert modulatory effects on tyrosinase activity, gene expression, and protein synthesis of melanocytic pathway components, and thus significantly reduce the melanin content. Additionally, PBM is effective in improving the dermal structure and reducing erythema and neovascularization, features recently identified as pathological components of melasma.

CONCLUSION

PBM emerges as a promising, contemporary, and non-invasive procedure for treating melasma. Beyond its role in inhibiting melanogenesis, PBM shows potential in reducing erythema and vascularization and improving dermal conditions. However, robust and well-designed clinical trials are needed to determine optimal light parameters and to evaluate the effects of PBM on melasma thoroughly.

摘要

目的

光生物调节疗法(PBM)是一种治疗皮肤疾病的多功能技术。最近,黄褐斑,一种慢性色素沉着病,与血管特征和皮肤光老化有关,并带来了重大的治疗挑战。我们综述了黄褐斑发病机制的最新文献以及支持 PBM 作为黄褐斑治疗的治疗方法的证据。

方法

我们于 2023 年 5 月至 8 月在三个不同的数据库中进行了全面的文献检索,重点关注过去 10 年发表的研究。纳入标准包括研究低功率激光和/或发光二极管(LED)在体外或体内模型中以及临床试验的全文字研究。我们排除了讨论替代黄褐斑治疗方法或缺乏实验数据的研究。我们通过搜索选定文章的参考文献列表来确定其他研究。

结果

我们确定了九项相关研究。临床研究与体外实验和动物模型一致,表明 PBM 可有效减轻黄褐斑相关的色素沉着过度。特定波长(红色:630nm;琥珀色:585nm 和 590nm;红外线:830nm 和 850nm)在 1 至 20J/cm 的辐射暴露下对酪氨酸酶活性、黑素细胞途径成分的基因表达和蛋白质合成产生调节作用,从而显著降低黑色素含量。此外,PBM 可有效改善皮肤结构并减少红斑和新生血管形成,这些特征最近被确定为黄褐斑的病理成分。

结论

PBM 作为一种有前途的、现代的、非侵入性的治疗黄褐斑的方法。除了抑制黑色素生成外,PBM 还显示出减少红斑和血管化以及改善皮肤状况的潜力。然而,需要进行强有力的、精心设计的临床试验来确定最佳的光参数,并全面评估 PBM 对黄褐斑的作用。

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