4.7 Article

Deciphering the Role of Skin Surface Microbiome in Skin Health: An Integrative Multiomics Approach Reveals Three Distinct Metabolite-Microbe Clusters

Journal

JOURNAL OF INVESTIGATIVE DERMATOLOGY
Volume 142, Issue 2, Pages 469-+

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jid.2021.07.159

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The advent of 16S RNA profiling and shotgun metagenomics has allowed for a comprehensive study of the skin microbiome composition. Analysis of skin surface samples from healthy infants revealed the coexistence of different microbiome and metabolome clusters, highlighting the diverse roles of various microorganisms and metabolites in skin physiology.
The advent of 16S RNA profiling and shotgun metagenomics has enabled a holistic approach to the study of the skin microbiome composition. Despite the interesting findings in this rapidly developing scientific area, the big question remains: What role does the microbiome play in skin physiology? To begin answering this question, we employed an integrative methodology for microbiome and metabolome analysis of skin surface samples collected from the volar forearm of healthy infants aged 3-6-months. Whereas the infant skin metabolome was dominated by amino acids, lipids, and xenobiotics, the primary phyla of the microbiome were Firmicutes, Actinobacteria, and Proteobacteria. Zooming in on the species level revealed a large contribution of commensals belonging to the Cutibacterium and Staphylococcus genera, including Cutibacterium acnes, Staphylococcus epidermidis, and S. aureus. This heterogeneity was further highlighted when combining the microbiome with metabolome data. Integrative analyses delineated the coexistence of three distinct metabolite.microbe clusters: one dominated by Cutibacterium linked to hydrophobic elements of the skin barrier, one associating Staphylococcus genus with amino acids relevant to the water holding capacity and pH regulation of the skin surface, and one characterized by Streptococcus and independent of any particular metabolomic profile.

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