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A combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism

Consumption of either monosodium glutamate (MSG) or high-fat and high-fructose (HFF) diets changes the gut microbiome and hence contributes to development of several diseases. In this study, with an emphasis on kidney injury, hamsters were divided into 4 groups as follows: (1) hamsters fed with stan...

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Autores principales: Pongking, Thatsanapong, Haonon, Ornuma, Dangtakot, Rungtiwa, Onsurathum, Sudarat, Jusakul, Apinya, Intuyod, Kitti, Sangka, Arunnee, Anutrakulchai, Sirirat, Cha’on, Ubon, Pinlaor, Somchai, Pinlaor, Porntip
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7141667/
https://www.ncbi.nlm.nih.gov/pubmed/32267892
http://dx.doi.org/10.1371/journal.pone.0231237
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author Pongking, Thatsanapong
Haonon, Ornuma
Dangtakot, Rungtiwa
Onsurathum, Sudarat
Jusakul, Apinya
Intuyod, Kitti
Sangka, Arunnee
Anutrakulchai, Sirirat
Cha’on, Ubon
Pinlaor, Somchai
Pinlaor, Porntip
author_facet Pongking, Thatsanapong
Haonon, Ornuma
Dangtakot, Rungtiwa
Onsurathum, Sudarat
Jusakul, Apinya
Intuyod, Kitti
Sangka, Arunnee
Anutrakulchai, Sirirat
Cha’on, Ubon
Pinlaor, Somchai
Pinlaor, Porntip
author_sort Pongking, Thatsanapong
collection PubMed
description Consumption of either monosodium glutamate (MSG) or high-fat and high-fructose (HFF) diets changes the gut microbiome and hence contributes to development of several diseases. In this study, with an emphasis on kidney injury, hamsters were divided into 4 groups as follows: (1) hamsters fed with standard diet (control); (2) hamsters fed with standard diet and MSG in drinking water (MSG); (3) hamsters fed with high-fat and high-fructose diets (HFF), and (4) animals fed MSG+HFF. After 8 months, the animals were used for the study. Despite showing normal kidney function, hamsters fed with MSG+HFF exhibited signs of kidney damage as demonstrated by the highest expression levels of high-mobility group box-1 and kidney injury molecule-1 in kidney tissues, while slight changes of histopathological features in H&E-stained sections and normal levels of creatinine were observed, indicating possible early stages of kidney injury. Sequencing of the microbial 16S rRNA gene revealed that animals fed with the MSG+HFF diet had a higher ratio of gut Firmicutes/Bacteroidetes along with marked changes in abundance and diversity of gut microbiome compared to hamsters fed with MSG or HFF alone. In addition, (1)H Nuclear magnetic resonance spectroscopy showed an elevation of urine p-cresol sulfate levels in the MSG+HFF group. These results indicate that consumption of both MSG and HFF increases the risk of kidney injury, induces gut dysbiosis and an increase in the amount of p-cresol sulfate in hamsters.
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spelling pubmed-71416672020-04-10 A combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism Pongking, Thatsanapong Haonon, Ornuma Dangtakot, Rungtiwa Onsurathum, Sudarat Jusakul, Apinya Intuyod, Kitti Sangka, Arunnee Anutrakulchai, Sirirat Cha’on, Ubon Pinlaor, Somchai Pinlaor, Porntip PLoS One Research Article Consumption of either monosodium glutamate (MSG) or high-fat and high-fructose (HFF) diets changes the gut microbiome and hence contributes to development of several diseases. In this study, with an emphasis on kidney injury, hamsters were divided into 4 groups as follows: (1) hamsters fed with standard diet (control); (2) hamsters fed with standard diet and MSG in drinking water (MSG); (3) hamsters fed with high-fat and high-fructose diets (HFF), and (4) animals fed MSG+HFF. After 8 months, the animals were used for the study. Despite showing normal kidney function, hamsters fed with MSG+HFF exhibited signs of kidney damage as demonstrated by the highest expression levels of high-mobility group box-1 and kidney injury molecule-1 in kidney tissues, while slight changes of histopathological features in H&E-stained sections and normal levels of creatinine were observed, indicating possible early stages of kidney injury. Sequencing of the microbial 16S rRNA gene revealed that animals fed with the MSG+HFF diet had a higher ratio of gut Firmicutes/Bacteroidetes along with marked changes in abundance and diversity of gut microbiome compared to hamsters fed with MSG or HFF alone. In addition, (1)H Nuclear magnetic resonance spectroscopy showed an elevation of urine p-cresol sulfate levels in the MSG+HFF group. These results indicate that consumption of both MSG and HFF increases the risk of kidney injury, induces gut dysbiosis and an increase in the amount of p-cresol sulfate in hamsters. Public Library of Science 2020-04-08 /pmc/articles/PMC7141667/ /pubmed/32267892 http://dx.doi.org/10.1371/journal.pone.0231237 Text en © 2020 Pongking et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Pongking, Thatsanapong
Haonon, Ornuma
Dangtakot, Rungtiwa
Onsurathum, Sudarat
Jusakul, Apinya
Intuyod, Kitti
Sangka, Arunnee
Anutrakulchai, Sirirat
Cha’on, Ubon
Pinlaor, Somchai
Pinlaor, Porntip
A combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism
title A combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism
title_full A combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism
title_fullStr A combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism
title_full_unstemmed A combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism
title_short A combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism
title_sort combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7141667/
https://www.ncbi.nlm.nih.gov/pubmed/32267892
http://dx.doi.org/10.1371/journal.pone.0231237
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