Literature DB >> 23746045

High-fat diet induces dynamic metabolic alterations in multiple biological matrices of rats.

Yanpeng An1, Wenxin Xu, Huihui Li, Hehua Lei, Limin Zhang, Fuhua Hao, Yixuan Duan, Xing Yan, Ying Zhao, Junfang Wu, Yulan Wang, Huiru Tang.   

Abstract

Obesity is a condition resulting from the interactions of individual biology and environmental factors causing multiple complications. To understand the system's metabolic changes associated with the obesity development and progression, we systematically analyzed the dynamic metabonomic changes induced by a high-fat diet (HFD) in multiple biological matrices of rats using NMR and GC-FID/MS techniques. Clinical chemistry and histopathological data were obtained as complementary information. We found that HFD intakes caused systematic metabolic changes in blood plasma, liver, and urine samples involving multiple metabolic pathways including glycolysis, TCA cycle, and gut microbiota functions together with the metabolisms of fatty acids, amino acids, choline, B-vitamins, purines, and pyrimidines. The HFD-induced metabolic variations were detectable in rat urine a week after HFD intake and showed clear dependence on the intake duration. B-vitamins and gut microbiota played important roles in the obesity development and progression together with changes in TCA cycle intermediates (citrate, α-ketoglutarate, succinate, and fumarate). 83-day HFD intakes caused significant metabolic alterations in rat liver highlighted with the enhancements in lipogenesis, lipid accumulation and lipid oxidation, suppression of glycolysis, up-regulation of gluconeogenesis and glycogenesis together with altered metabolisms of choline, amino acids and nucleotides. HFD intakes reduced the PUFA-to-MUFA ratio in both plasma and liver, indicating the HFD-induced oxidative stress. These findings provided essential biochemistry information about the dynamic metabolic responses to the development and progression of HFD-induced obesity. This study also demonstrated the combined metabonomic analysis of multiple biological matrices as a powerful approach for understanding the molecular basis of pathogenesis and disease progression.

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Year:  2013        PMID: 23746045     DOI: 10.1021/pr400398b

Source DB:  PubMed          Journal:  J Proteome Res        ISSN: 1535-3893            Impact factor:   4.466


  45 in total

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Journal:  Metabolomics       Date:  2019-02-04       Impact factor: 4.290

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5.  Vitamin A deficiency in mice alters host and gut microbial metabolism leading to altered energy homeostasis.

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7.  Young transgenic hMTH1 mice are protected against dietary fat-induced metabolic stress-implications for enhanced longevity.

Authors:  Francesca Marcon; Roberta Meschini; Egidio Iorio; Simonetta Palleschi; Gabriele De Luca; Ester Siniscalchi; Luigi Conti; Mattea Chirico; Maria Elena Pisanu; Francesca De Battistis; Barbara Rossi; Anna Minoprio; Alessandro Giuliani; Peter Karran; Margherita Bignami
Journal:  Aging Cell       Date:  2022-06-06       Impact factor: 11.005

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Journal:  J Zhejiang Univ Sci B       Date:  2015-06       Impact factor: 3.066

9.  Metastatic Melanoma Induced Metabolic Changes in C57BL/6J Mouse Stomach Measured by 1H NMR Spectroscopy.

Authors:  X Wang; M Hu; M Liu; J Z Hu
Journal:  Metabolomics (Los Angel)       Date:  2014

10.  Maternal exercise modifies body composition and energy substrates handling in male offspring fed a high-fat/high-sucrose diet.

Authors:  Charline Quiclet; Hervé Dubouchaud; Phanélie Berthon; Hervé Sanchez; Guillaume Vial; Farida Siti; Eric Fontaine; Cécile Batandier; Karine Couturier
Journal:  J Physiol       Date:  2017-10-25       Impact factor: 5.182

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