Microbe-host interplay in atopic dermatitis and psoriasis
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Published:2019-10-16
Issue:1
Volume:10
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Fyhrquist NannaORCID, Muirhead Gareth, Prast-Nielsen StefanieORCID, Jeanmougin Marine, Olah Peter, Skoog TiinaORCID, Jules-Clement Gerome, Feld Micha, Barrientos-Somarribas Mauricio, Sinkko Hanna, van den Bogaard Ellen H., Zeeuwen Patrick L.J.M., Rikken Gijs, Schalkwijk Joost, Niehues HannaORCID, Däubener WalterORCID, Eller Silvia Kathrin, Alexander Helen, Pennino Davide, Suomela Sari, Tessas Ioannis, Lybeck Emilia, Baran Anna M., Darban Hamid, Gangwar Roopesh SinghORCID, Gerstel Ulrich, Jahn Katharina, Karisola Piia, Yan Lee, Hansmann Britta, Katayama Shintaro, Meller Stephan, Bylesjö Max, Hupé PhilippeORCID, Levi-Schaffer Francesca, Greco DarioORCID, Ranki Annamari, Schröder Jens M.ORCID, Barker Jonathan, Kere JuhaORCID, Tsoka Sophia, Lauerma AnttiORCID, Soumelis VassiliORCID, Nestle Frank O., Homey Bernhard, Andersson BjörnORCID, Alenius HarriORCID
Abstract
Abstract
Despite recent advances in understanding microbial diversity in skin homeostasis, the relevance of microbial dysbiosis in inflammatory disease is poorly understood. Here we perform a comparative analysis of skin microbial communities coupled to global patterns of cutaneous gene expression in patients with atopic dermatitis or psoriasis. The skin microbiota is analysed by 16S amplicon or whole genome sequencing and the skin transcriptome by microarrays, followed by integration of the data layers. We find that atopic dermatitis and psoriasis can be classified by distinct microbes, which differ from healthy volunteers microbiome composition. Atopic dermatitis is dominated by a single microbe (Staphylococcus aureus), and associated with a disease relevant host transcriptomic signature enriched for skin barrier function, tryptophan metabolism and immune activation. In contrast, psoriasis is characterized by co-occurring communities of microbes with weak associations with disease related gene expression. Our work provides a basis for biomarker discovery and targeted therapies in skin dysbiosis.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
Reference69 articles.
1. Dethlefsen, L., McFall-Ngai, M. & Relman, D. A. An ecological and evolutionary perspective on human-microbe mutualism and disease. Nature 449, 811–818 (2007). 2. Cho, I. & Blaser, M. J. The human microbiome: at the interface of health and disease. Nat. Rev. Genet. 13, 260–270 (2012). 3. Grice, E. A. & Segre, J. A. The skin microbiome. Nat. Rev. Microbiol. 9, 244–253 (2011). 4. Bieber, T. Atopic dermatitis. N. Engl. J. Med. 358, 1483–1494 (2008). 5. Nestle, F. O., Kaplan, D. H. & Barker, J. Psoriasis. N. Engl. J. Med. 361, 496–509 (2009).
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