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β-cell insulin receptor deficiency during in utero development induces an islet compensatory overgrowth response

The presence of insulin receptor (IR) on β-cells suggests that insulin has an autocrine/paracrine role in the regulation of β-cell function. It has previously been reported that the β-cell specific loss of IR (βIRKO) leads to the development of impaired glycemic regulation and β-cell death in mice....

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Autores principales: Trinder, Mark, Zhou, Liangyi, Oakie, Amanda, Riopel, Matthew, Wang, Rennian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216695/
https://www.ncbi.nlm.nih.gov/pubmed/27384998
http://dx.doi.org/10.18632/oncotarget.10342
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author Trinder, Mark
Zhou, Liangyi
Oakie, Amanda
Riopel, Matthew
Wang, Rennian
author_facet Trinder, Mark
Zhou, Liangyi
Oakie, Amanda
Riopel, Matthew
Wang, Rennian
author_sort Trinder, Mark
collection PubMed
description The presence of insulin receptor (IR) on β-cells suggests that insulin has an autocrine/paracrine role in the regulation of β-cell function. It has previously been reported that the β-cell specific loss of IR (βIRKO) leads to the development of impaired glycemic regulation and β-cell death in mice. However, temporally controlled βIRKO induced during the distinct transitions of fetal pancreas development has yet to be investigated. We hypothesized that the presence of IR on β-cells during the 2(nd) transition phase of the fetal murine pancreas is required for maintaining normal islet development. We utilized a mouse insulin 1 promoter driven tamoxifen-inducible Cre-recombinase IR knockout (MIP-βIRKO) mouse model to investigate the loss of β-cell IR during pancreatic development at embryonic day (e) 13, a phase of endocrine proliferation and β-cell fate determination. Fetal pancreata examined at e19-20 showed significantly reduced IR levels in the β-cells of MIP-βIRKO mice. Morphologically, MIP-βIRKO pancreata exhibited significantly enlarged islet size with increased β-cell area and proliferation. MIP-βIRKO pancreata also displayed significantly increased Igf-2 protein level and Akt activity with a reduction in phospho-p53 when compared to control littermates. Islet vascular formation and Vegf-a protein level was significantly increased in MIP-βIRKO pancreata. Our results demonstrate a developmental role for the β-cell IR, whereby its loss leads to an islet compensatory overgrowth, and contributes further information towards elucidating the temporally sensitive signaling during β-cell commitment.
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spelling pubmed-52166952017-01-15 β-cell insulin receptor deficiency during in utero development induces an islet compensatory overgrowth response Trinder, Mark Zhou, Liangyi Oakie, Amanda Riopel, Matthew Wang, Rennian Oncotarget Research Paper: Pathology The presence of insulin receptor (IR) on β-cells suggests that insulin has an autocrine/paracrine role in the regulation of β-cell function. It has previously been reported that the β-cell specific loss of IR (βIRKO) leads to the development of impaired glycemic regulation and β-cell death in mice. However, temporally controlled βIRKO induced during the distinct transitions of fetal pancreas development has yet to be investigated. We hypothesized that the presence of IR on β-cells during the 2(nd) transition phase of the fetal murine pancreas is required for maintaining normal islet development. We utilized a mouse insulin 1 promoter driven tamoxifen-inducible Cre-recombinase IR knockout (MIP-βIRKO) mouse model to investigate the loss of β-cell IR during pancreatic development at embryonic day (e) 13, a phase of endocrine proliferation and β-cell fate determination. Fetal pancreata examined at e19-20 showed significantly reduced IR levels in the β-cells of MIP-βIRKO mice. Morphologically, MIP-βIRKO pancreata exhibited significantly enlarged islet size with increased β-cell area and proliferation. MIP-βIRKO pancreata also displayed significantly increased Igf-2 protein level and Akt activity with a reduction in phospho-p53 when compared to control littermates. Islet vascular formation and Vegf-a protein level was significantly increased in MIP-βIRKO pancreata. Our results demonstrate a developmental role for the β-cell IR, whereby its loss leads to an islet compensatory overgrowth, and contributes further information towards elucidating the temporally sensitive signaling during β-cell commitment. Impact Journals LLC 2016-06-30 /pmc/articles/PMC5216695/ /pubmed/27384998 http://dx.doi.org/10.18632/oncotarget.10342 Text en Copyright: © 2016 Trinder et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper: Pathology
Trinder, Mark
Zhou, Liangyi
Oakie, Amanda
Riopel, Matthew
Wang, Rennian
β-cell insulin receptor deficiency during in utero development induces an islet compensatory overgrowth response
title β-cell insulin receptor deficiency during in utero development induces an islet compensatory overgrowth response
title_full β-cell insulin receptor deficiency during in utero development induces an islet compensatory overgrowth response
title_fullStr β-cell insulin receptor deficiency during in utero development induces an islet compensatory overgrowth response
title_full_unstemmed β-cell insulin receptor deficiency during in utero development induces an islet compensatory overgrowth response
title_short β-cell insulin receptor deficiency during in utero development induces an islet compensatory overgrowth response
title_sort β-cell insulin receptor deficiency during in utero development induces an islet compensatory overgrowth response
topic Research Paper: Pathology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216695/
https://www.ncbi.nlm.nih.gov/pubmed/27384998
http://dx.doi.org/10.18632/oncotarget.10342
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