Department of Internal Medicine, Transitional Year Residency Program, Henry Ford Hospital, Detroit, Michigan, USA.
The Henry W Lim, MD, Division of Photobiology and Photomedicine, Department of Dermatology, Henry Ford Health, Detroit, Michigan, USA.
Photodermatol Photoimmunol Photomed. 2024 Jan;40(1):e12943. doi: 10.1111/phpp.12943.
The human skin microbiome is a dynamic ecosystem that plays an important role in skin health. The skin microbiome has been implicated in numerous diseases, and our knowledge surrounding it continues to evolve. A better understanding of the interactions between the environment and the skin microbiome will lead to improvements in skin health.
This article reviews the published literature surrounding the impact of ultraviolet radiation (UVR) and sunscreen on the skin microbiome.
Skin microbes are differentially impacted by UVR, and alterations in the microbiome can be detected following UVR exposure. These changes are related to direct bactericidal effects, alterations in the cutaneous metabolome, and changes in the cutaneous immune system. UV filters used in sunscreen have been shown to have bactericidal effects, and many compounds used in sunscreen emulsions can also negatively impact cutaneous microbes.
A healthy microbiome has been shown to produce compounds that help protect the skin from UVR, and sunscreen has the potential to reduce the diversity of the skin microbiome. This indicates that designing sunscreen products that both provide protection against UVR and preserve the skin microbiome may offer additional benefits to skin health when compared with traditional sunscreen products.
人体皮肤微生物组是一个动态的生态系统,在皮肤健康中起着重要作用。皮肤微生物组与许多疾病有关,我们对它的认识还在不断发展。更好地了解环境与皮肤微生物组之间的相互作用将有助于改善皮肤健康。
本文综述了有关紫外线辐射(UVR)和防晒霜对皮肤微生物组影响的已发表文献。
皮肤微生物受到 UVR 的不同影响,并且可以在 UVR 暴露后检测到微生物组的变化。这些变化与直接杀菌作用、皮肤代谢组的改变以及皮肤免疫系统的改变有关。防晒霜中使用的紫外线滤光剂已显示出杀菌作用,许多用于防晒霜乳液的化合物也会对皮肤微生物产生负面影响。
健康的微生物组产生的化合物有助于保护皮肤免受 UVR 的伤害,防晒霜有可能减少皮肤微生物组的多样性。这表明,与传统防晒霜产品相比,设计既能提供 UVR 防护又能保护皮肤微生物组的防晒霜产品可能会为皮肤健康带来额外的益处。