Home chemical and microbial transitions across urbanization
Laura-Isobel McCall,Chris Callewaert,Chris Callewaert,Qiyun Zhu,Se Jin Song,Amina Bouslimani,Amina Bouslimani,Jeremiah J. Minich,Madeleine Ernst,Madeleine Ernst,Jean F. Ruiz-Calderon,Humberto Cavallin,Henrique dos Santos Pereira,Atila Novoselac,Jean N. Hernandez,Rafael Rios,Ora Lee H. Branch,Ora Lee H. Branch,Martin J. Blaser,Luciana C. Paulino,Pieter C. Dorrestein,Rob Knight,Maria Gloria Dominguez-Bello +22 more
TL;DR: The authors use metabolomics and sequencing to assess changes in chemicals and microbial communities, including fungi and microeukaryotes, across an urbanization gradient in South America, and indicate that urbanization has large-scale effects on chemical and microbial exposures and on the human microbiota.
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Abstract: Urbanization represents a profound shift in human behaviour, and has considerable cultural and health-associated consequences1,2. Here, we investigate chemical and microbial characteristics of houses and their human occupants across an urbanization gradient in the Amazon rainforest, from a remote Peruvian Amerindian village to the Brazilian city of Manaus. Urbanization was found to be associated with reduced microbial outdoor exposure, increased contact with housing materials, antimicrobials and cleaning products, and increased exposure to chemical diversity. The degree of urbanization correlated with changes in the composition of house bacterial and microeukaryotic communities, increased house and skin fungal diversity, and an increase in the relative abundance of human skin-associated fungi and bacteria in houses. Overall, our results indicate that urbanization has large-scale effects on chemical and microbial exposures and on the human microbiota.
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Citations
Gut-Skin Axis: Current Knowledge of the Interrelationship between Microbial Dysbiosis and Skin Conditions.
Britta De Pessemier,Lynda Grine,Melanie Debaere,Aglaya Maes,Bernhard Paetzold,Chris Callewaert +5 more
- 11 Feb 2021
TL;DR: In this paper, an exhaustive list of common skin conditions with associated dysbiosis in the skin microbiome as well as the current body of evidence on gut microbiome dysbiotic, dietary links, and their interplay with skin conditions is described.
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Human Skin Microbiome: Impact of Intrinsic and Extrinsic Factors on Skin Microbiota.
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- 05 Mar 2021
TL;DR: The relationship between a properly functioning microbiome and the body's immune system, as well as the impact of internal and external factors on the human skin microbiome has been discussed in this paper.
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Xuanji Li,Jakob Stokholm,Asker Daniel Brejnrod,Gisle Vestergaard,Jakob Russel,Urvish Trivedi,Jonathan Thorsen,Shashank Gupta,Mathis Hjort Hjelmsø,Shiraz A. Shah,Morten Arendt Rasmussen,Hans Bisgaard,Søren J. Sørensen +12 more
TL;DR: In this paper, the authors characterized the antibiotic resistance genes acquired during the first year of life and assessed the impacts of diverse environmental exposures on ARG load, revealing a clear bimodal distribution of ARG richness that is driven by the composition of the gut microbiome, especially E.coli.
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TL;DR: The Human Microbiome Project Consortium reported the first results of their analysis of microbial communities from distinct, clinically relevant body habitats in a human cohort; the insights into the microbial communities of a healthy population lay foundations for future exploration of the epidemiology, ecology and translational applications of the human microbiome as discussed by the authors.
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