Ultraviolet Irradiation of Skin Alters the Faecal Microbiome Independently of Vitamin D in Mice
Reduced sunlight exposure has been associated with an increased incidence of Crohn’s disease and ulcerative colitis. The effect of ultraviolet radiation (UVR) on the faecal microbiome and susceptibility to colitis has not been explored. C57Bl/6 female mice were fed three different vitamin...
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doaj-d9a2eb30e5854687811bf7dde85063e02020-11-25T00:15:18ZengMDPI AGNutrients2072-66432018-08-01108106910.3390/nu10081069nu10081069Ultraviolet Irradiation of Skin Alters the Faecal Microbiome Independently of Vitamin D in MiceSimon Ghaly0Nadeem O. Kaakoush1Frances Lloyd2Lavinia Gordon3Cynthia Forest4Ian C. Lawrance5Prue H. Hart6Telethon Kids Institute, The University of Western Australia, Perth, WA 6008, AustraliaSchool of Medical Sciences, UNSW Sydney, Kensington, NSW 2033, AustraliaSchool of Medicine and Pharmacology, The University of Western Australia, Perth, WA 6009, AustraliaAustralian Genome Research Facility, The Walter and Eliza Hall Institute, Parkville, VIC 3052, AustraliaDepartment of Anatomical Pathology, PathWest, Fiona Stanley Hospital, Murdoch, WA 6150, AustraliaSchool of Medicine and Pharmacology, The University of Western Australia, Perth, WA 6009, AustraliaTelethon Kids Institute, The University of Western Australia, Perth, WA 6008, AustraliaReduced sunlight exposure has been associated with an increased incidence of Crohn’s disease and ulcerative colitis. The effect of ultraviolet radiation (UVR) on the faecal microbiome and susceptibility to colitis has not been explored. C57Bl/6 female mice were fed three different vitamin D-containing diets for 24 days before half of the mice in each group were UV-irradiated (1 kJ/m2) for each of four days, followed by twice-weekly irradiation of shaved dorsal skin for 35 days. Faecal DNA was extracted and high-throughput sequencing of the 16S RNA gene performed. UV irradiation of skin was associated with a significant change in the beta-diversity of faeces compared to nonirradiated mice, independently of vitamin D. Specifically, members of phylum Firmicutes, including Coprococcus, were enriched, whereas members of phylum Bacteroidetes, such as Bacteroidales, were depleted. Expression of colonic CYP27B1 increased by four-fold and IL1β decreased by five-fold, suggesting a UVR-induced anti-inflammatory effect. UV-irradiated mice, however, were not protected against colitis induced by dextran sodium sulfate (DSS), although distinct faecal microbiome differences were documented post-DSS between UV-irradiated and nonirradiated mice. Thus, skin exposure to UVR alters the faecal microbiome, and further investigations to explore the implications of this in health and disease are warranted.http://www.mdpi.com/2072-6643/10/8/1069ultraviolet radiationmicrobiomevitamin Dinflammatory bowel disease |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Simon Ghaly Nadeem O. Kaakoush Frances Lloyd Lavinia Gordon Cynthia Forest Ian C. Lawrance Prue H. Hart |
spellingShingle |
Simon Ghaly Nadeem O. Kaakoush Frances Lloyd Lavinia Gordon Cynthia Forest Ian C. Lawrance Prue H. Hart Ultraviolet Irradiation of Skin Alters the Faecal Microbiome Independently of Vitamin D in Mice Nutrients ultraviolet radiation microbiome vitamin D inflammatory bowel disease |
author_facet |
Simon Ghaly Nadeem O. Kaakoush Frances Lloyd Lavinia Gordon Cynthia Forest Ian C. Lawrance Prue H. Hart |
author_sort |
Simon Ghaly |
title |
Ultraviolet Irradiation of Skin Alters the Faecal Microbiome Independently of Vitamin D in Mice |
title_short |
Ultraviolet Irradiation of Skin Alters the Faecal Microbiome Independently of Vitamin D in Mice |
title_full |
Ultraviolet Irradiation of Skin Alters the Faecal Microbiome Independently of Vitamin D in Mice |
title_fullStr |
Ultraviolet Irradiation of Skin Alters the Faecal Microbiome Independently of Vitamin D in Mice |
title_full_unstemmed |
Ultraviolet Irradiation of Skin Alters the Faecal Microbiome Independently of Vitamin D in Mice |
title_sort |
ultraviolet irradiation of skin alters the faecal microbiome independently of vitamin d in mice |
publisher |
MDPI AG |
series |
Nutrients |
issn |
2072-6643 |
publishDate |
2018-08-01 |
description |
Reduced sunlight exposure has been associated with an increased incidence of Crohn’s disease and ulcerative colitis. The effect of ultraviolet radiation (UVR) on the faecal microbiome and susceptibility to colitis has not been explored. C57Bl/6 female mice were fed three different vitamin D-containing diets for 24 days before half of the mice in each group were UV-irradiated (1 kJ/m2) for each of four days, followed by twice-weekly irradiation of shaved dorsal skin for 35 days. Faecal DNA was extracted and high-throughput sequencing of the 16S RNA gene performed. UV irradiation of skin was associated with a significant change in the beta-diversity of faeces compared to nonirradiated mice, independently of vitamin D. Specifically, members of phylum Firmicutes, including Coprococcus, were enriched, whereas members of phylum Bacteroidetes, such as Bacteroidales, were depleted. Expression of colonic CYP27B1 increased by four-fold and IL1β decreased by five-fold, suggesting a UVR-induced anti-inflammatory effect. UV-irradiated mice, however, were not protected against colitis induced by dextran sodium sulfate (DSS), although distinct faecal microbiome differences were documented post-DSS between UV-irradiated and nonirradiated mice. Thus, skin exposure to UVR alters the faecal microbiome, and further investigations to explore the implications of this in health and disease are warranted. |
topic |
ultraviolet radiation microbiome vitamin D inflammatory bowel disease |
url |
http://www.mdpi.com/2072-6643/10/8/1069 |
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