Cargando…

Metabolomics Assessment of Volume Overload-Induced Heart Failure and Oxidative Stress in the Kidney

The incidence of heart failure (HF) is increasing and is associated with a poor prognosis. Moreover, HF often coexists with renal dysfunction and is associated with a worsened outcome. In many experimental studies on cardiac dysfunction, the function of other organs was either not addressed or did n...

Descripción completa

Detalles Bibliográficos
Autores principales: Tang, Hsiang-Yu, Huang, Jyh-En, Tsau, Ming-Tong, Chang, Chi-Jen, Tung, Ying-Chang, Lin, Gigin, Cheng, Mei-Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10672757/
https://www.ncbi.nlm.nih.gov/pubmed/37999260
http://dx.doi.org/10.3390/metabo13111165
_version_ 1785149550905786368
author Tang, Hsiang-Yu
Huang, Jyh-En
Tsau, Ming-Tong
Chang, Chi-Jen
Tung, Ying-Chang
Lin, Gigin
Cheng, Mei-Ling
author_facet Tang, Hsiang-Yu
Huang, Jyh-En
Tsau, Ming-Tong
Chang, Chi-Jen
Tung, Ying-Chang
Lin, Gigin
Cheng, Mei-Ling
author_sort Tang, Hsiang-Yu
collection PubMed
description The incidence of heart failure (HF) is increasing and is associated with a poor prognosis. Moreover, HF often coexists with renal dysfunction and is associated with a worsened outcome. In many experimental studies on cardiac dysfunction, the function of other organs was either not addressed or did not show any decline. Until now, the exact mechanisms for initiating and sustaining this interaction are still unknown. The objective of this study is to use volume overload to induce cardiac hypertrophy and HF in aortocaval fistula (ACF) rat models, and to elucidate how volume overload affects metabolic changes in the kidney, even with normal renal function, in HF. The results showed the metabolic changes between control and ACF rats, including taurine metabolism; purine metabolism; glycine, serine, and threonine metabolism; glycerophospholipid metabolism; and histidine metabolism. Increasing the downstream purine metabolism from inosine to uric acid in the kidneys of ACF rats induced oxidative stress through xanthine oxidase. This result was consistent with HK-2 cells treated with xanthine and xanthine oxidase. Under oxidative stress, taurine accumulation was observed in ACF rats, indicating increased activity of the hypotaurine–taurine pathway as a defense mechanism against oxidative stress in the kidney. Another antioxidant, ascorbic acid 2-sulfate, showed lower levels in ACF rats, indicating that the kidneys experience elevated oxidative stress due to volume overload and HF. In summary, metabolic profiles are more sensitive than clinical parameters in reacting to damage to the kidney in HF.
format Online
Article
Text
id pubmed-10672757
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-106727572023-11-20 Metabolomics Assessment of Volume Overload-Induced Heart Failure and Oxidative Stress in the Kidney Tang, Hsiang-Yu Huang, Jyh-En Tsau, Ming-Tong Chang, Chi-Jen Tung, Ying-Chang Lin, Gigin Cheng, Mei-Ling Metabolites Article The incidence of heart failure (HF) is increasing and is associated with a poor prognosis. Moreover, HF often coexists with renal dysfunction and is associated with a worsened outcome. In many experimental studies on cardiac dysfunction, the function of other organs was either not addressed or did not show any decline. Until now, the exact mechanisms for initiating and sustaining this interaction are still unknown. The objective of this study is to use volume overload to induce cardiac hypertrophy and HF in aortocaval fistula (ACF) rat models, and to elucidate how volume overload affects metabolic changes in the kidney, even with normal renal function, in HF. The results showed the metabolic changes between control and ACF rats, including taurine metabolism; purine metabolism; glycine, serine, and threonine metabolism; glycerophospholipid metabolism; and histidine metabolism. Increasing the downstream purine metabolism from inosine to uric acid in the kidneys of ACF rats induced oxidative stress through xanthine oxidase. This result was consistent with HK-2 cells treated with xanthine and xanthine oxidase. Under oxidative stress, taurine accumulation was observed in ACF rats, indicating increased activity of the hypotaurine–taurine pathway as a defense mechanism against oxidative stress in the kidney. Another antioxidant, ascorbic acid 2-sulfate, showed lower levels in ACF rats, indicating that the kidneys experience elevated oxidative stress due to volume overload and HF. In summary, metabolic profiles are more sensitive than clinical parameters in reacting to damage to the kidney in HF. MDPI 2023-11-20 /pmc/articles/PMC10672757/ /pubmed/37999260 http://dx.doi.org/10.3390/metabo13111165 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
Tang, Hsiang-Yu
Huang, Jyh-En
Tsau, Ming-Tong
Chang, Chi-Jen
Tung, Ying-Chang
Lin, Gigin
Cheng, Mei-Ling
Metabolomics Assessment of Volume Overload-Induced Heart Failure and Oxidative Stress in the Kidney
title Metabolomics Assessment of Volume Overload-Induced Heart Failure and Oxidative Stress in the Kidney
title_full Metabolomics Assessment of Volume Overload-Induced Heart Failure and Oxidative Stress in the Kidney
title_fullStr Metabolomics Assessment of Volume Overload-Induced Heart Failure and Oxidative Stress in the Kidney
title_full_unstemmed Metabolomics Assessment of Volume Overload-Induced Heart Failure and Oxidative Stress in the Kidney
title_short Metabolomics Assessment of Volume Overload-Induced Heart Failure and Oxidative Stress in the Kidney
title_sort metabolomics assessment of volume overload-induced heart failure and oxidative stress in the kidney
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10672757/
https://www.ncbi.nlm.nih.gov/pubmed/37999260
http://dx.doi.org/10.3390/metabo13111165
work_keys_str_mv AT tanghsiangyu metabolomicsassessmentofvolumeoverloadinducedheartfailureandoxidativestressinthekidney
AT huangjyhen metabolomicsassessmentofvolumeoverloadinducedheartfailureandoxidativestressinthekidney
AT tsaumingtong metabolomicsassessmentofvolumeoverloadinducedheartfailureandoxidativestressinthekidney
AT changchijen metabolomicsassessmentofvolumeoverloadinducedheartfailureandoxidativestressinthekidney
AT tungyingchang metabolomicsassessmentofvolumeoverloadinducedheartfailureandoxidativestressinthekidney
AT lingigin metabolomicsassessmentofvolumeoverloadinducedheartfailureandoxidativestressinthekidney
AT chengmeiling metabolomicsassessmentofvolumeoverloadinducedheartfailureandoxidativestressinthekidney