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Sulforaphane-driven reprogramming of gut microbiome and metabolome ameliorates the progression of hyperuricemia

INTRODUCTION: Currently, revealing how to prevent and control hyperuricemia has become an essential public health issue. Sulforaphane has a wide range of applications in the management of hyperuricemia. OBJECTIVE: The study objective was to verify the uric acid-lowering effects and the regulation of...

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Autores principales: Wang, Ruoyu, Halimulati, Mairepaiti, Huang, Xiaojie, Ma, Yuxin, Li, Lutong, Zhang, Zhaofeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10555773/
https://www.ncbi.nlm.nih.gov/pubmed/36371056
http://dx.doi.org/10.1016/j.jare.2022.11.003
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author Wang, Ruoyu
Halimulati, Mairepaiti
Huang, Xiaojie
Ma, Yuxin
Li, Lutong
Zhang, Zhaofeng
author_facet Wang, Ruoyu
Halimulati, Mairepaiti
Huang, Xiaojie
Ma, Yuxin
Li, Lutong
Zhang, Zhaofeng
author_sort Wang, Ruoyu
collection PubMed
description INTRODUCTION: Currently, revealing how to prevent and control hyperuricemia has become an essential public health issue. Sulforaphane has a wide range of applications in the management of hyperuricemia. OBJECTIVE: The study objective was to verify the uric acid-lowering effects and the regulation of the gut-kidney axis mediated by sulforaphane and identify host-microbial co-metabolites in hyperuricemia. METHODS: A hyperuricemia model was established by administering feedstuffs with 4% potassium oxonate and 20% yeast. Forty male Sprague–Dawley rats were randomly divided into the normal control, hyperuricemia, allopurinol, and sulforaphane groups. Animals were treated by oral gavage for six consecutive weeks, and then phenotypic parameters, metabolomic profiling, and metagenomic sequencing were performed. RESULTS: Sulforaphane could lower uric acid by decreasing urate synthesis and increasing renal urate excretion in hyperuricemic rats (P<0.05). We identified succinic acid and oxoglutaric acid as critical host-gut microbiome co-metabolites. Moreover, sulforaphane improved the diversity of microbial ecosystems and functions, as well as metabolic control of the kidney. Notably, sulforaphane exerted its renoprotective effect through epigenetic modification of Nrf2 and interaction between gut microbiota and epigenetic modification in hyperuricemic rats. CONCLUSION: We revealed that sulforaphane could ameliorate the progression of hyperuricemia by reprogramming the gut microbiome and metabolome. Our findings may provide a good means for efficiently preventing and treating hyperuricemia.
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spelling pubmed-105557732023-10-07 Sulforaphane-driven reprogramming of gut microbiome and metabolome ameliorates the progression of hyperuricemia Wang, Ruoyu Halimulati, Mairepaiti Huang, Xiaojie Ma, Yuxin Li, Lutong Zhang, Zhaofeng J Adv Res Original Article INTRODUCTION: Currently, revealing how to prevent and control hyperuricemia has become an essential public health issue. Sulforaphane has a wide range of applications in the management of hyperuricemia. OBJECTIVE: The study objective was to verify the uric acid-lowering effects and the regulation of the gut-kidney axis mediated by sulforaphane and identify host-microbial co-metabolites in hyperuricemia. METHODS: A hyperuricemia model was established by administering feedstuffs with 4% potassium oxonate and 20% yeast. Forty male Sprague–Dawley rats were randomly divided into the normal control, hyperuricemia, allopurinol, and sulforaphane groups. Animals were treated by oral gavage for six consecutive weeks, and then phenotypic parameters, metabolomic profiling, and metagenomic sequencing were performed. RESULTS: Sulforaphane could lower uric acid by decreasing urate synthesis and increasing renal urate excretion in hyperuricemic rats (P<0.05). We identified succinic acid and oxoglutaric acid as critical host-gut microbiome co-metabolites. Moreover, sulforaphane improved the diversity of microbial ecosystems and functions, as well as metabolic control of the kidney. Notably, sulforaphane exerted its renoprotective effect through epigenetic modification of Nrf2 and interaction between gut microbiota and epigenetic modification in hyperuricemic rats. CONCLUSION: We revealed that sulforaphane could ameliorate the progression of hyperuricemia by reprogramming the gut microbiome and metabolome. Our findings may provide a good means for efficiently preventing and treating hyperuricemia. Elsevier 2022-11-10 /pmc/articles/PMC10555773/ /pubmed/36371056 http://dx.doi.org/10.1016/j.jare.2022.11.003 Text en © 2023 The Authors. Published by Elsevier B.V. on behalf of Cairo University. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Wang, Ruoyu
Halimulati, Mairepaiti
Huang, Xiaojie
Ma, Yuxin
Li, Lutong
Zhang, Zhaofeng
Sulforaphane-driven reprogramming of gut microbiome and metabolome ameliorates the progression of hyperuricemia
title Sulforaphane-driven reprogramming of gut microbiome and metabolome ameliorates the progression of hyperuricemia
title_full Sulforaphane-driven reprogramming of gut microbiome and metabolome ameliorates the progression of hyperuricemia
title_fullStr Sulforaphane-driven reprogramming of gut microbiome and metabolome ameliorates the progression of hyperuricemia
title_full_unstemmed Sulforaphane-driven reprogramming of gut microbiome and metabolome ameliorates the progression of hyperuricemia
title_short Sulforaphane-driven reprogramming of gut microbiome and metabolome ameliorates the progression of hyperuricemia
title_sort sulforaphane-driven reprogramming of gut microbiome and metabolome ameliorates the progression of hyperuricemia
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10555773/
https://www.ncbi.nlm.nih.gov/pubmed/36371056
http://dx.doi.org/10.1016/j.jare.2022.11.003
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