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Islet Stellate Cells Regulate Insulin Secretion via Wnt5a in Min6 Cells

BACKGROUND: Type 2 diabetes mellitus is a serious public health problem worldwide. Accumulating evidence has shown that β-cell dysfunction is an important mechanism underlying diabetes mellitus. The changes in the physiological state of islet stellate cells (ISCs) and the effects of these cells on β...

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Autores principales: Xu, Wei, Jones, Peter M., Geng, Houfa, Li, Rui, Liu, Xuekui, Li, Yinxia, Lv, Qian, Liu, Ying, Wang, Jie, Wang, Xiuli, Sun, Zilin, Liang, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7060442/
https://www.ncbi.nlm.nih.gov/pubmed/32184820
http://dx.doi.org/10.1155/2020/4708132
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author Xu, Wei
Jones, Peter M.
Geng, Houfa
Li, Rui
Liu, Xuekui
Li, Yinxia
Lv, Qian
Liu, Ying
Wang, Jie
Wang, Xiuli
Sun, Zilin
Liang, Jun
author_facet Xu, Wei
Jones, Peter M.
Geng, Houfa
Li, Rui
Liu, Xuekui
Li, Yinxia
Lv, Qian
Liu, Ying
Wang, Jie
Wang, Xiuli
Sun, Zilin
Liang, Jun
author_sort Xu, Wei
collection PubMed
description BACKGROUND: Type 2 diabetes mellitus is a serious public health problem worldwide. Accumulating evidence has shown that β-cell dysfunction is an important mechanism underlying diabetes mellitus. The changes in the physiological state of islet stellate cells (ISCs) and the effects of these cells on β-cell dysfunction is an important mechanism underlying diabetes mellitus. The changes in the physiological state of islet stellate cells (ISCs) and the effects of these cells on METHODS: Glucose-stimulated insulin secretion (GSIS) from Min6 cells was examined by estimating the insulin levels in response to high glucose challenge after culture with ISC supernatant or exogenous Wnt5a. Western blotting and quantitative real-time polymerase chain reaction (qRT-PCR) analyses were used to observe changes in the β-cell dysfunction is an important mechanism underlying diabetes mellitus. The changes in the physiological state of islet stellate cells (ISCs) and the effects of these cells on RESULTS: We observed a significant increase in insulin secretion from Min6 cells cocultured in vitro with supernatant from db/m mouse ISCs compared to that from Min6 cells cocultured with supernatant from db/db mouse ISCs; The intracellular Ca(2+) concentration in Min6 cells increased in cultured in vitro with supernatant from db/m mouse ISCs and exogenous Wnt5a compared to that from control Min6 cells. Culture of Min6 cells with exogenous Wnt5a caused a significant increase in pCamKII, pFoxO1, PDX-1, and Glut2 levels compared to those in Min6 cells cultured alone; this treatment further decreased Ror2 and Cask expression but did not affect β-cell dysfunction is an important mechanism underlying diabetes mellitus. The changes in the physiological state of islet stellate cells (ISCs) and the effects of these cells on CONCLUSION: ISCs regulate insulin secretion from Min6 cells through the Wnt5a protein-induced Wnt-calcium and FoxO1-PDX1-GLUT2-insulin signalling cascades.
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spelling pubmed-70604422020-03-17 Islet Stellate Cells Regulate Insulin Secretion via Wnt5a in Min6 Cells Xu, Wei Jones, Peter M. Geng, Houfa Li, Rui Liu, Xuekui Li, Yinxia Lv, Qian Liu, Ying Wang, Jie Wang, Xiuli Sun, Zilin Liang, Jun Int J Endocrinol Research Article BACKGROUND: Type 2 diabetes mellitus is a serious public health problem worldwide. Accumulating evidence has shown that β-cell dysfunction is an important mechanism underlying diabetes mellitus. The changes in the physiological state of islet stellate cells (ISCs) and the effects of these cells on β-cell dysfunction is an important mechanism underlying diabetes mellitus. The changes in the physiological state of islet stellate cells (ISCs) and the effects of these cells on METHODS: Glucose-stimulated insulin secretion (GSIS) from Min6 cells was examined by estimating the insulin levels in response to high glucose challenge after culture with ISC supernatant or exogenous Wnt5a. Western blotting and quantitative real-time polymerase chain reaction (qRT-PCR) analyses were used to observe changes in the β-cell dysfunction is an important mechanism underlying diabetes mellitus. The changes in the physiological state of islet stellate cells (ISCs) and the effects of these cells on RESULTS: We observed a significant increase in insulin secretion from Min6 cells cocultured in vitro with supernatant from db/m mouse ISCs compared to that from Min6 cells cocultured with supernatant from db/db mouse ISCs; The intracellular Ca(2+) concentration in Min6 cells increased in cultured in vitro with supernatant from db/m mouse ISCs and exogenous Wnt5a compared to that from control Min6 cells. Culture of Min6 cells with exogenous Wnt5a caused a significant increase in pCamKII, pFoxO1, PDX-1, and Glut2 levels compared to those in Min6 cells cultured alone; this treatment further decreased Ror2 and Cask expression but did not affect β-cell dysfunction is an important mechanism underlying diabetes mellitus. The changes in the physiological state of islet stellate cells (ISCs) and the effects of these cells on CONCLUSION: ISCs regulate insulin secretion from Min6 cells through the Wnt5a protein-induced Wnt-calcium and FoxO1-PDX1-GLUT2-insulin signalling cascades. Hindawi 2020-02-24 /pmc/articles/PMC7060442/ /pubmed/32184820 http://dx.doi.org/10.1155/2020/4708132 Text en Copyright © 2020 Wei Xu et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Xu, Wei
Jones, Peter M.
Geng, Houfa
Li, Rui
Liu, Xuekui
Li, Yinxia
Lv, Qian
Liu, Ying
Wang, Jie
Wang, Xiuli
Sun, Zilin
Liang, Jun
Islet Stellate Cells Regulate Insulin Secretion via Wnt5a in Min6 Cells
title Islet Stellate Cells Regulate Insulin Secretion via Wnt5a in Min6 Cells
title_full Islet Stellate Cells Regulate Insulin Secretion via Wnt5a in Min6 Cells
title_fullStr Islet Stellate Cells Regulate Insulin Secretion via Wnt5a in Min6 Cells
title_full_unstemmed Islet Stellate Cells Regulate Insulin Secretion via Wnt5a in Min6 Cells
title_short Islet Stellate Cells Regulate Insulin Secretion via Wnt5a in Min6 Cells
title_sort islet stellate cells regulate insulin secretion via wnt5a in min6 cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7060442/
https://www.ncbi.nlm.nih.gov/pubmed/32184820
http://dx.doi.org/10.1155/2020/4708132
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