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A Systems Approach Dissociates Fructose-Induced Liver Triglyceride from Hypertriglyceridemia and Hyperinsulinemia in Male Mice.

Publication ,  Journal Article
Doridot, L; Hannou, SA; Krawczyk, SA; Tong, W; Kim, M-S; McElroy, GS; Fowler, AJ; Astapova, II; Herman, MA
Published in: Nutrients
October 18, 2021

The metabolic syndrome (MetS), defined as the co-occurrence of disorders including obesity, dyslipidemia, insulin resistance, and hepatic steatosis, has become increasingly prevalent in the world over recent decades. Dietary and other environmental factors interacting with genetic predisposition are likely contributors to this epidemic. Among the involved dietary factors, excessive fructose consumption may be a key contributor. When fructose is consumed in large amounts, it can quickly produce many of the features of MetS both in humans and mice. The mechanisms by which fructose contributes to metabolic disease and its potential interactions with genetic factors in these processes remain uncertain. Here, we generated a small F2 genetic cohort of male mice derived from crossing fructose-sensitive and -resistant mouse strains to investigate the interrelationships between fructose-induced metabolic phenotypes and to identify hepatic transcriptional pathways that associate with these phenotypes. Our analysis indicates that the hepatic transcriptional pathways associated with fructose-induced hypertriglyceridemia and hyperinsulinemia are distinct from those that associate with fructose-mediated changes in body weight and liver triglyceride. These results suggest that multiple independent mechanisms and pathways may contribute to different aspects of fructose-induced metabolic disease.

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Published In

Nutrients

DOI

EISSN

2072-6643

Publication Date

October 18, 2021

Volume

13

Issue

10

Location

Switzerland

Related Subject Headings

  • Triglycerides
  • Systems Analysis
  • RNA, Messenger
  • Phenotype
  • Mutation, Missense
  • Mice, Inbred C57BL
  • Mice, Inbred C3H
  • Mice
  • Male
  • Liver
 

Citation

APA
Chicago
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MLA
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Doridot, L., Hannou, S. A., Krawczyk, S. A., Tong, W., Kim, M.-S., McElroy, G. S., … Herman, M. A. (2021). A Systems Approach Dissociates Fructose-Induced Liver Triglyceride from Hypertriglyceridemia and Hyperinsulinemia in Male Mice. Nutrients, 13(10). https://doi.org/10.3390/nu13103642
Doridot, Ludivine, Sarah A. Hannou, Sarah A. Krawczyk, Wenxin Tong, Mi-Sung Kim, Gregory S. McElroy, Alan J. Fowler, Inna I. Astapova, and Mark A. Herman. “A Systems Approach Dissociates Fructose-Induced Liver Triglyceride from Hypertriglyceridemia and Hyperinsulinemia in Male Mice.Nutrients 13, no. 10 (October 18, 2021). https://doi.org/10.3390/nu13103642.
Doridot L, Hannou SA, Krawczyk SA, Tong W, Kim M-S, McElroy GS, et al. A Systems Approach Dissociates Fructose-Induced Liver Triglyceride from Hypertriglyceridemia and Hyperinsulinemia in Male Mice. Nutrients. 2021 Oct 18;13(10).
Doridot, Ludivine, et al. “A Systems Approach Dissociates Fructose-Induced Liver Triglyceride from Hypertriglyceridemia and Hyperinsulinemia in Male Mice.Nutrients, vol. 13, no. 10, Oct. 2021. Pubmed, doi:10.3390/nu13103642.
Doridot L, Hannou SA, Krawczyk SA, Tong W, Kim M-S, McElroy GS, Fowler AJ, Astapova II, Herman MA. A Systems Approach Dissociates Fructose-Induced Liver Triglyceride from Hypertriglyceridemia and Hyperinsulinemia in Male Mice. Nutrients. 2021 Oct 18;13(10).

Published In

Nutrients

DOI

EISSN

2072-6643

Publication Date

October 18, 2021

Volume

13

Issue

10

Location

Switzerland

Related Subject Headings

  • Triglycerides
  • Systems Analysis
  • RNA, Messenger
  • Phenotype
  • Mutation, Missense
  • Mice, Inbred C57BL
  • Mice, Inbred C3H
  • Mice
  • Male
  • Liver