Cargando…

A Small Amount of Dietary Carbohydrate Can Promote the HFD-Induced Insulin Resistance to a Maximal Level

Both dietary fat and carbohydrates (Carbs) may play important roles in the development of insulin resistance. The main goal of this study was to further define the roles for fat and dietary carbs in insulin resistance. C57BL/6 mice were fed normal chow diet (CD) or HFD containing 0.1–25.5% carbs for...

Descripción completa

Detalles Bibliográficos
Autores principales: Mei, Shuang, Yang, Xuefeng, Guo, Huailan, Gu, Haihua, Zha, Longying, Cai, Junwei, Li, Xuefeng, Liu, Zhenqi, Bennett, Brian J., He, Ling, Cao, Wenhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4108306/
https://www.ncbi.nlm.nih.gov/pubmed/25055153
http://dx.doi.org/10.1371/journal.pone.0100875
_version_ 1782327733569716224
author Mei, Shuang
Yang, Xuefeng
Guo, Huailan
Gu, Haihua
Zha, Longying
Cai, Junwei
Li, Xuefeng
Liu, Zhenqi
Bennett, Brian J.
He, Ling
Cao, Wenhong
author_facet Mei, Shuang
Yang, Xuefeng
Guo, Huailan
Gu, Haihua
Zha, Longying
Cai, Junwei
Li, Xuefeng
Liu, Zhenqi
Bennett, Brian J.
He, Ling
Cao, Wenhong
author_sort Mei, Shuang
collection PubMed
description Both dietary fat and carbohydrates (Carbs) may play important roles in the development of insulin resistance. The main goal of this study was to further define the roles for fat and dietary carbs in insulin resistance. C57BL/6 mice were fed normal chow diet (CD) or HFD containing 0.1–25.5% carbs for 5 weeks, followed by evaluations of calorie consumption, body weight and fat gains, insulin sensitivity, intratissue insulin signaling, ectopic fat, and oxidative stress in liver and skeletal muscle. The role of hepatic gluconeogenesis in the HFD-induced insulin resistance was determined in mice. The role of fat in insulin resistance was also examined in cultured cells. HFD with little carbs (0.1%) induced severe insulin resistance. Addition of 5% carbs to HFD dramatically elevated insulin resistance and 10% carbs in HFD was sufficient to induce a maximal level of insulin resistance. HFD with little carbs induced ectopic fat accumulation and oxidative stress in liver and skeletal muscle and addition of carbs to HFD dramatically enhanced ectopic fat and oxidative stress. HFD increased hepatic expression of key gluconeogenic genes and the increase was most dramatic by HFD with little carbs, and inhibition of hepatic gluconeogenesis prevented the HFD-induced insulin resistance. In cultured cells, development of insulin resistance induced by a pathological level of insulin was prevented in the absence of fat. Together, fat is essential for development of insulin resistance and dietary carb is not necessary for HFD-induced insulin resistance due to the presence of hepatic gluconeogenesis but a very small amount of it can promote HFD-induced insulin resistance to a maximal level.
format Online
Article
Text
id pubmed-4108306
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-41083062014-07-24 A Small Amount of Dietary Carbohydrate Can Promote the HFD-Induced Insulin Resistance to a Maximal Level Mei, Shuang Yang, Xuefeng Guo, Huailan Gu, Haihua Zha, Longying Cai, Junwei Li, Xuefeng Liu, Zhenqi Bennett, Brian J. He, Ling Cao, Wenhong PLoS One Research Article Both dietary fat and carbohydrates (Carbs) may play important roles in the development of insulin resistance. The main goal of this study was to further define the roles for fat and dietary carbs in insulin resistance. C57BL/6 mice were fed normal chow diet (CD) or HFD containing 0.1–25.5% carbs for 5 weeks, followed by evaluations of calorie consumption, body weight and fat gains, insulin sensitivity, intratissue insulin signaling, ectopic fat, and oxidative stress in liver and skeletal muscle. The role of hepatic gluconeogenesis in the HFD-induced insulin resistance was determined in mice. The role of fat in insulin resistance was also examined in cultured cells. HFD with little carbs (0.1%) induced severe insulin resistance. Addition of 5% carbs to HFD dramatically elevated insulin resistance and 10% carbs in HFD was sufficient to induce a maximal level of insulin resistance. HFD with little carbs induced ectopic fat accumulation and oxidative stress in liver and skeletal muscle and addition of carbs to HFD dramatically enhanced ectopic fat and oxidative stress. HFD increased hepatic expression of key gluconeogenic genes and the increase was most dramatic by HFD with little carbs, and inhibition of hepatic gluconeogenesis prevented the HFD-induced insulin resistance. In cultured cells, development of insulin resistance induced by a pathological level of insulin was prevented in the absence of fat. Together, fat is essential for development of insulin resistance and dietary carb is not necessary for HFD-induced insulin resistance due to the presence of hepatic gluconeogenesis but a very small amount of it can promote HFD-induced insulin resistance to a maximal level. Public Library of Science 2014-07-23 /pmc/articles/PMC4108306/ /pubmed/25055153 http://dx.doi.org/10.1371/journal.pone.0100875 Text en © 2014 Mei et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Mei, Shuang
Yang, Xuefeng
Guo, Huailan
Gu, Haihua
Zha, Longying
Cai, Junwei
Li, Xuefeng
Liu, Zhenqi
Bennett, Brian J.
He, Ling
Cao, Wenhong
A Small Amount of Dietary Carbohydrate Can Promote the HFD-Induced Insulin Resistance to a Maximal Level
title A Small Amount of Dietary Carbohydrate Can Promote the HFD-Induced Insulin Resistance to a Maximal Level
title_full A Small Amount of Dietary Carbohydrate Can Promote the HFD-Induced Insulin Resistance to a Maximal Level
title_fullStr A Small Amount of Dietary Carbohydrate Can Promote the HFD-Induced Insulin Resistance to a Maximal Level
title_full_unstemmed A Small Amount of Dietary Carbohydrate Can Promote the HFD-Induced Insulin Resistance to a Maximal Level
title_short A Small Amount of Dietary Carbohydrate Can Promote the HFD-Induced Insulin Resistance to a Maximal Level
title_sort small amount of dietary carbohydrate can promote the hfd-induced insulin resistance to a maximal level
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4108306/
https://www.ncbi.nlm.nih.gov/pubmed/25055153
http://dx.doi.org/10.1371/journal.pone.0100875
work_keys_str_mv AT meishuang asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT yangxuefeng asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT guohuailan asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT guhaihua asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT zhalongying asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT caijunwei asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT lixuefeng asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT liuzhenqi asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT bennettbrianj asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT heling asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT caowenhong asmallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT meishuang smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT yangxuefeng smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT guohuailan smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT guhaihua smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT zhalongying smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT caijunwei smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT lixuefeng smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT liuzhenqi smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT bennettbrianj smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT heling smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel
AT caowenhong smallamountofdietarycarbohydratecanpromotethehfdinducedinsulinresistancetoamaximallevel