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紫外线暴露基于微生物组调节皮肤代谢组。

Ultraviolet exposure regulates skin metabolome based on the microbiome.

机构信息

Department of Dermatology, Medical University of Graz, Graz, Austria.

Centre International de Recherche en Infectiologie, Institut National de la Santé et de la Recherche Médicale, U1111, Université Claude Bernard Lyon 1, Centre National de la Recherche Scientifique, UMR5308, Ecole Normale Supérieure de Lyon, Université de Lyon, Lyon, France.

出版信息

Sci Rep. 2023 May 3;13(1):7207. doi: 10.1038/s41598-023-34073-3.

Abstract

Skin metabolites (< 1500 Da) play a critical role in barrier function, hydration, immune response, microbial invasion, and allergen penetration. We aimed to understand the global metabolic profile changes of the skin in relation to the microbiome and UV exposure and exposed germ-free (devoid of microbiome), disinfected mice (partially devoid of skin microbiome) and control mice with intact microbiome to immunosuppressive doses of UVB radiation. Targeted and untargeted lipidome and metabolome profiling was performed with skin tissue by high-resolution mass spectrometry. UV differentially regulated various metabolites such as alanine, choline, glycine, glutamine, and histidine in germ-free mice compared to control mice. Membrane lipid species such as phosphatidylcholine, phosphatidylethanolamine, and sphingomyelin were also affected by UV in a microbiome-dependent manner. These results shed light on the dynamics and interactions between the skin metabolome, microbiome, and UV exposure and open new avenues for the development of metabolite- or lipid-based applications to maintain skin health.

摘要

皮肤代谢物(<1500Da)在屏障功能、水合作用、免疫反应、微生物入侵和过敏原渗透中起着关键作用。我们旨在了解皮肤的整体代谢谱变化与微生物组和 UV 暴露的关系,并将无菌(缺乏微生物组)、消毒(部分缺乏皮肤微生物组)和具有完整微生物组的对照小鼠暴露于免疫抑制剂量的 UVB 辐射下。通过高分辨率质谱对皮肤组织进行靶向和非靶向脂质组学和代谢组学分析。与对照小鼠相比,UV 使无菌小鼠中的各种代谢物(如丙氨酸、胆碱、甘氨酸、谷氨酰胺和组氨酸)发生差异调节。膜脂质种类(如磷脂酰胆碱、磷脂酰乙醇胺和神经鞘磷脂)也以微生物组依赖的方式受到 UV 的影响。这些结果揭示了皮肤代谢组、微生物组和 UV 暴露之间的动态和相互作用,并为开发基于代谢物或脂质的应用以维持皮肤健康开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17cb/10156686/439e1cdd9533/41598_2023_34073_Fig1_HTML.jpg

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