Cargando…

Anti-Hyperuricemic Effect of Anserine Based on the Gut–Kidney Axis: Integrated Analysis of Metagenomics and Metabolomics

Nowadays, developing effective intervention substances for hyperuricemia has become a public health issue. Herein, the therapeutic ability of anserine, a bioactive peptide, was validated through a comprehensive multiomics analysis of a rat model of hyperuricemia. Anserine was observed to improve liv...

Descripción completa

Detalles Bibliográficos
Autores principales: Halimulati, Mairepaiti, Wang, Ruoyu, Aihemaitijiang, Sumiya, Huang, Xiaojie, Ye, Chen, Zhang, Zongfeng, Li, Lutong, Zhu, Wenli, Zhang, Zhaofeng, He, Lixia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964072/
https://www.ncbi.nlm.nih.gov/pubmed/36839325
http://dx.doi.org/10.3390/nu15040969
_version_ 1784896412301918208
author Halimulati, Mairepaiti
Wang, Ruoyu
Aihemaitijiang, Sumiya
Huang, Xiaojie
Ye, Chen
Zhang, Zongfeng
Li, Lutong
Zhu, Wenli
Zhang, Zhaofeng
He, Lixia
author_facet Halimulati, Mairepaiti
Wang, Ruoyu
Aihemaitijiang, Sumiya
Huang, Xiaojie
Ye, Chen
Zhang, Zongfeng
Li, Lutong
Zhu, Wenli
Zhang, Zhaofeng
He, Lixia
author_sort Halimulati, Mairepaiti
collection PubMed
description Nowadays, developing effective intervention substances for hyperuricemia has become a public health issue. Herein, the therapeutic ability of anserine, a bioactive peptide, was validated through a comprehensive multiomics analysis of a rat model of hyperuricemia. Anserine was observed to improve liver and kidney function and modulate urate-related transporter expressions in the kidneys. Urine metabolomics showed that 15 and 9 metabolites were significantly increased and decreased, respectively, in hyperuricemic rats after the anserine intervention. Key metabolites such as fructose, xylose, methionine, erythronic acid, glucaric acid, pipecolic acid and trans-ferulic acid were associated with ameliorating kidney injury. Additionally, anserine regularly changed the gut microbiota, thereby ameliorating purine metabolism abnormalities and alleviating inflammatory responses. The integrated multiomics analysis indicated that Saccharomyces, Parasutterella excrementihominis and Emergencia timonensis were strongly associated with key differential metabolites. Therefore, we propose that anserine improved hyperuricemia via the gut–kidney axis, highlighting its potential in preventing and treating hyperuricemia.
format Online
Article
Text
id pubmed-9964072
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99640722023-02-26 Anti-Hyperuricemic Effect of Anserine Based on the Gut–Kidney Axis: Integrated Analysis of Metagenomics and Metabolomics Halimulati, Mairepaiti Wang, Ruoyu Aihemaitijiang, Sumiya Huang, Xiaojie Ye, Chen Zhang, Zongfeng Li, Lutong Zhu, Wenli Zhang, Zhaofeng He, Lixia Nutrients Article Nowadays, developing effective intervention substances for hyperuricemia has become a public health issue. Herein, the therapeutic ability of anserine, a bioactive peptide, was validated through a comprehensive multiomics analysis of a rat model of hyperuricemia. Anserine was observed to improve liver and kidney function and modulate urate-related transporter expressions in the kidneys. Urine metabolomics showed that 15 and 9 metabolites were significantly increased and decreased, respectively, in hyperuricemic rats after the anserine intervention. Key metabolites such as fructose, xylose, methionine, erythronic acid, glucaric acid, pipecolic acid and trans-ferulic acid were associated with ameliorating kidney injury. Additionally, anserine regularly changed the gut microbiota, thereby ameliorating purine metabolism abnormalities and alleviating inflammatory responses. The integrated multiomics analysis indicated that Saccharomyces, Parasutterella excrementihominis and Emergencia timonensis were strongly associated with key differential metabolites. Therefore, we propose that anserine improved hyperuricemia via the gut–kidney axis, highlighting its potential in preventing and treating hyperuricemia. MDPI 2023-02-15 /pmc/articles/PMC9964072/ /pubmed/36839325 http://dx.doi.org/10.3390/nu15040969 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Halimulati, Mairepaiti
Wang, Ruoyu
Aihemaitijiang, Sumiya
Huang, Xiaojie
Ye, Chen
Zhang, Zongfeng
Li, Lutong
Zhu, Wenli
Zhang, Zhaofeng
He, Lixia
Anti-Hyperuricemic Effect of Anserine Based on the Gut–Kidney Axis: Integrated Analysis of Metagenomics and Metabolomics
title Anti-Hyperuricemic Effect of Anserine Based on the Gut–Kidney Axis: Integrated Analysis of Metagenomics and Metabolomics
title_full Anti-Hyperuricemic Effect of Anserine Based on the Gut–Kidney Axis: Integrated Analysis of Metagenomics and Metabolomics
title_fullStr Anti-Hyperuricemic Effect of Anserine Based on the Gut–Kidney Axis: Integrated Analysis of Metagenomics and Metabolomics
title_full_unstemmed Anti-Hyperuricemic Effect of Anserine Based on the Gut–Kidney Axis: Integrated Analysis of Metagenomics and Metabolomics
title_short Anti-Hyperuricemic Effect of Anserine Based on the Gut–Kidney Axis: Integrated Analysis of Metagenomics and Metabolomics
title_sort anti-hyperuricemic effect of anserine based on the gut–kidney axis: integrated analysis of metagenomics and metabolomics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964072/
https://www.ncbi.nlm.nih.gov/pubmed/36839325
http://dx.doi.org/10.3390/nu15040969
work_keys_str_mv AT halimulatimairepaiti antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics
AT wangruoyu antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics
AT aihemaitijiangsumiya antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics
AT huangxiaojie antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics
AT yechen antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics
AT zhangzongfeng antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics
AT lilutong antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics
AT zhuwenli antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics
AT zhangzhaofeng antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics
AT helixia antihyperuricemiceffectofanserinebasedonthegutkidneyaxisintegratedanalysisofmetagenomicsandmetabolomics