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A metabolomics approach to investigate the proceedings of mitochondrial dysfunction in rats from prediabetes to diabetes

Diabetes mellitus (DM) is a leading cause of preventable cardiovascular disease, but the metabolic changes from prediabetes to diabetes have not been fully clarified. This study implemented a metabolomics profiling platform to investigate the variations of metabolites and to elucidate their global p...

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Autores principales: Huang, Chun-Feng, Chen, Ann, Lin, Siao-Yun, Cheng, Mei-Ling, Shiao, Ming-Shi, Mao, Tso-Yen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8324946/
https://www.ncbi.nlm.nih.gov/pubmed/34354464
http://dx.doi.org/10.1016/j.sjbs.2021.04.091
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author Huang, Chun-Feng
Chen, Ann
Lin, Siao-Yun
Cheng, Mei-Ling
Shiao, Ming-Shi
Mao, Tso-Yen
author_facet Huang, Chun-Feng
Chen, Ann
Lin, Siao-Yun
Cheng, Mei-Ling
Shiao, Ming-Shi
Mao, Tso-Yen
author_sort Huang, Chun-Feng
collection PubMed
description Diabetes mellitus (DM) is a leading cause of preventable cardiovascular disease, but the metabolic changes from prediabetes to diabetes have not been fully clarified. This study implemented a metabolomics profiling platform to investigate the variations of metabolites and to elucidate their global profiling from metabolic syndrome to DM. Methods: Male Sprague-Dawley rats (n = 44) were divided into four groups. Three groups were separately fed with a normal diet, a high-fructose diet (HF), or a high-fat (HL) diet while one group was treated with streptozotocin. The HF and HL diet were meant to induce insulin resistance, obesity, and dyslipidemia, which known to induce DM. Results: The most significant metabolic variations in the DM group’s urine samples were the reduced release of citric acid cycle intermediates, the increase in acylcarnitines, and the decrease in urea excretion, all of which indicated energy metabolism abnormalities and mitochondrial dysfunction. Overall, the metabolic analysis revealed tryptophan metabolic pathway variations in the prediabetic phase, even though the mitochondrial function remains unaffected. Conclusion: This study show that widespread methylations and impaired tryptophan metabolism occur in metabolic syndrome and are then followed by a decline in citric acid cycle intermediates, indicating mitochondrial dysfunction in diabetes.
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spelling pubmed-83249462021-08-04 A metabolomics approach to investigate the proceedings of mitochondrial dysfunction in rats from prediabetes to diabetes Huang, Chun-Feng Chen, Ann Lin, Siao-Yun Cheng, Mei-Ling Shiao, Ming-Shi Mao, Tso-Yen Saudi J Biol Sci Original Article Diabetes mellitus (DM) is a leading cause of preventable cardiovascular disease, but the metabolic changes from prediabetes to diabetes have not been fully clarified. This study implemented a metabolomics profiling platform to investigate the variations of metabolites and to elucidate their global profiling from metabolic syndrome to DM. Methods: Male Sprague-Dawley rats (n = 44) were divided into four groups. Three groups were separately fed with a normal diet, a high-fructose diet (HF), or a high-fat (HL) diet while one group was treated with streptozotocin. The HF and HL diet were meant to induce insulin resistance, obesity, and dyslipidemia, which known to induce DM. Results: The most significant metabolic variations in the DM group’s urine samples were the reduced release of citric acid cycle intermediates, the increase in acylcarnitines, and the decrease in urea excretion, all of which indicated energy metabolism abnormalities and mitochondrial dysfunction. Overall, the metabolic analysis revealed tryptophan metabolic pathway variations in the prediabetic phase, even though the mitochondrial function remains unaffected. Conclusion: This study show that widespread methylations and impaired tryptophan metabolism occur in metabolic syndrome and are then followed by a decline in citric acid cycle intermediates, indicating mitochondrial dysfunction in diabetes. Elsevier 2021-08 2021-05-06 /pmc/articles/PMC8324946/ /pubmed/34354464 http://dx.doi.org/10.1016/j.sjbs.2021.04.091 Text en © 2021 The Authors. Published by Elsevier B.V. on behalf of King Saud 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
Huang, Chun-Feng
Chen, Ann
Lin, Siao-Yun
Cheng, Mei-Ling
Shiao, Ming-Shi
Mao, Tso-Yen
A metabolomics approach to investigate the proceedings of mitochondrial dysfunction in rats from prediabetes to diabetes
title A metabolomics approach to investigate the proceedings of mitochondrial dysfunction in rats from prediabetes to diabetes
title_full A metabolomics approach to investigate the proceedings of mitochondrial dysfunction in rats from prediabetes to diabetes
title_fullStr A metabolomics approach to investigate the proceedings of mitochondrial dysfunction in rats from prediabetes to diabetes
title_full_unstemmed A metabolomics approach to investigate the proceedings of mitochondrial dysfunction in rats from prediabetes to diabetes
title_short A metabolomics approach to investigate the proceedings of mitochondrial dysfunction in rats from prediabetes to diabetes
title_sort metabolomics approach to investigate the proceedings of mitochondrial dysfunction in rats from prediabetes to diabetes
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8324946/
https://www.ncbi.nlm.nih.gov/pubmed/34354464
http://dx.doi.org/10.1016/j.sjbs.2021.04.091
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