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Exenatide improves hepatocyte insulin resistance induced by different regional adipose tissue

Obesity is resulted from energy surplus and is characterized by abnormal adipose tissue accumulation and/or distribution. Adipokines secreted by different regional adipose tissue can induce changes in key proteins of the insulin signaling pathway in hepatocytes and result in impaired hepatic glucose...

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Autores principales: Bai, Chuanmin, Wang, Yujun, Niu, Zhi, Guan, Yaxin, Huang, Jingshan, Nian, Xin, Zuo, Fan, Zhao, Juan, Kazumi, Tsutomu, Wu, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9558273/
https://www.ncbi.nlm.nih.gov/pubmed/36246878
http://dx.doi.org/10.3389/fendo.2022.1012904
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author Bai, Chuanmin
Wang, Yujun
Niu, Zhi
Guan, Yaxin
Huang, Jingshan
Nian, Xin
Zuo, Fan
Zhao, Juan
Kazumi, Tsutomu
Wu, Bin
author_facet Bai, Chuanmin
Wang, Yujun
Niu, Zhi
Guan, Yaxin
Huang, Jingshan
Nian, Xin
Zuo, Fan
Zhao, Juan
Kazumi, Tsutomu
Wu, Bin
author_sort Bai, Chuanmin
collection PubMed
description Obesity is resulted from energy surplus and is characterized by abnormal adipose tissue accumulation and/or distribution. Adipokines secreted by different regional adipose tissue can induce changes in key proteins of the insulin signaling pathway in hepatocytes and result in impaired hepatic glucose metabolism. This study aimed to investigate whether exenatide affects key proteins of IRS2/PI3K/Akt2 signaling pathway in hepatocytes altered by the different regional fat depots. Six non-obese patients without endocrine diseases were selected as the research subjects. Their subcutaneous adipose tissue (SAT) and visceral adipose tissue (VAT)were co-cultured with HepG2 cells in the transwell chamber. In the presence or absence of exenatide, adipokines content in the supernatant of each experimental group was detected by ELISA. In addition, HepG2 cells in each co-culture group with and without insulin were collected, and the expression of key proteins IRS2, p-IRS2(S731), PI3K-p85, Akt2, and p-Akt2(S473) was detected by western blotting (WB). The results showed that the adipokines IL-8, MCP-1, VEGF, and sTNFR2 in the supernatant of HepG2 cells induced by different regional adipose tissue were significantly higher than those in the HepG2 group, and VAT released more adipokines than SAT. Furthermore, these adipokines were significantly inhibited by exenatide. Importantly, the different regional fat depot affects the IRS2/PI3K/Akt2 insulin signaling pathway of hepatocytes. Exenatide can up-regulate the expression of hepatocyte proteins IRS2, PI3K-p85, p-Akt2(S731) inhibited by adipose tissue, and down-regulate the expression of hepatocyte proteins p-IRS2(S731) promoted by adipose tissue. The effect of VAT on the expression of these key proteins in hepatocytes is more significant than that of SAT. But there was no statistical difference in the expression of Akt2 protein among each experimental group, suggesting that exenatide has no influence on the expression of Akt2 protein in hepatocytes. In conclusion, exenatide may improve hepatic insulin resistance (IR) by inhibiting adipokines and regulating the expression of key proteins in the IRS2/PI3K/Akt2 pathway.
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spelling pubmed-95582732022-10-14 Exenatide improves hepatocyte insulin resistance induced by different regional adipose tissue Bai, Chuanmin Wang, Yujun Niu, Zhi Guan, Yaxin Huang, Jingshan Nian, Xin Zuo, Fan Zhao, Juan Kazumi, Tsutomu Wu, Bin Front Endocrinol (Lausanne) Endocrinology Obesity is resulted from energy surplus and is characterized by abnormal adipose tissue accumulation and/or distribution. Adipokines secreted by different regional adipose tissue can induce changes in key proteins of the insulin signaling pathway in hepatocytes and result in impaired hepatic glucose metabolism. This study aimed to investigate whether exenatide affects key proteins of IRS2/PI3K/Akt2 signaling pathway in hepatocytes altered by the different regional fat depots. Six non-obese patients without endocrine diseases were selected as the research subjects. Their subcutaneous adipose tissue (SAT) and visceral adipose tissue (VAT)were co-cultured with HepG2 cells in the transwell chamber. In the presence or absence of exenatide, adipokines content in the supernatant of each experimental group was detected by ELISA. In addition, HepG2 cells in each co-culture group with and without insulin were collected, and the expression of key proteins IRS2, p-IRS2(S731), PI3K-p85, Akt2, and p-Akt2(S473) was detected by western blotting (WB). The results showed that the adipokines IL-8, MCP-1, VEGF, and sTNFR2 in the supernatant of HepG2 cells induced by different regional adipose tissue were significantly higher than those in the HepG2 group, and VAT released more adipokines than SAT. Furthermore, these adipokines were significantly inhibited by exenatide. Importantly, the different regional fat depot affects the IRS2/PI3K/Akt2 insulin signaling pathway of hepatocytes. Exenatide can up-regulate the expression of hepatocyte proteins IRS2, PI3K-p85, p-Akt2(S731) inhibited by adipose tissue, and down-regulate the expression of hepatocyte proteins p-IRS2(S731) promoted by adipose tissue. The effect of VAT on the expression of these key proteins in hepatocytes is more significant than that of SAT. But there was no statistical difference in the expression of Akt2 protein among each experimental group, suggesting that exenatide has no influence on the expression of Akt2 protein in hepatocytes. In conclusion, exenatide may improve hepatic insulin resistance (IR) by inhibiting adipokines and regulating the expression of key proteins in the IRS2/PI3K/Akt2 pathway. Frontiers Media S.A. 2022-09-29 /pmc/articles/PMC9558273/ /pubmed/36246878 http://dx.doi.org/10.3389/fendo.2022.1012904 Text en Copyright © 2022 Bai, Wang, Niu, Guan, Huang, Nian, Zuo, Zhao, Kazumi and Wu https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Endocrinology
Bai, Chuanmin
Wang, Yujun
Niu, Zhi
Guan, Yaxin
Huang, Jingshan
Nian, Xin
Zuo, Fan
Zhao, Juan
Kazumi, Tsutomu
Wu, Bin
Exenatide improves hepatocyte insulin resistance induced by different regional adipose tissue
title Exenatide improves hepatocyte insulin resistance induced by different regional adipose tissue
title_full Exenatide improves hepatocyte insulin resistance induced by different regional adipose tissue
title_fullStr Exenatide improves hepatocyte insulin resistance induced by different regional adipose tissue
title_full_unstemmed Exenatide improves hepatocyte insulin resistance induced by different regional adipose tissue
title_short Exenatide improves hepatocyte insulin resistance induced by different regional adipose tissue
title_sort exenatide improves hepatocyte insulin resistance induced by different regional adipose tissue
topic Endocrinology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9558273/
https://www.ncbi.nlm.nih.gov/pubmed/36246878
http://dx.doi.org/10.3389/fendo.2022.1012904
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