Cargando…

Dysregulated insulin secretion is associated with pancreatic β‐cell hyperplasia and direct acinar‐β‐cell trans‐differentiation in partially eNOS‐deficient mice

eNOS‐deficient mice were previously shown to develop hypertension and metabolic alterations associated with insulin resistance either in standard dietary conditions (eNOS−/− homozygotes) or upon high‐fat diet (HFD) (eNOS+/− heterozygotes). In the latter heterozygote model, the present study investig...

Descripción completa

Detalles Bibliográficos
Autores principales: Novelli, Michela, Masini, Matilde, Vecoli, Cecilia, Moscato, Stefania, Funel, Niccola, Pippa, Anna, Mattii, Letizia, Ippolito, Chiara, Campani, Daniela, Neglia, Danilo, Masiello, Pellegrino
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9391603/
https://www.ncbi.nlm.nih.gov/pubmed/35986504
http://dx.doi.org/10.14814/phy2.15425
_version_ 1784770885163417600
author Novelli, Michela
Masini, Matilde
Vecoli, Cecilia
Moscato, Stefania
Funel, Niccola
Pippa, Anna
Mattii, Letizia
Ippolito, Chiara
Campani, Daniela
Neglia, Danilo
Masiello, Pellegrino
author_facet Novelli, Michela
Masini, Matilde
Vecoli, Cecilia
Moscato, Stefania
Funel, Niccola
Pippa, Anna
Mattii, Letizia
Ippolito, Chiara
Campani, Daniela
Neglia, Danilo
Masiello, Pellegrino
author_sort Novelli, Michela
collection PubMed
description eNOS‐deficient mice were previously shown to develop hypertension and metabolic alterations associated with insulin resistance either in standard dietary conditions (eNOS−/− homozygotes) or upon high‐fat diet (HFD) (eNOS+/− heterozygotes). In the latter heterozygote model, the present study investigated the pancreatic morphological changes underlying the abnormal glycometabolic phenotype. C57BL6 wild type (WT) and eNOS+/− mice were fed with either chow or HFD for 16 weeks. After being longitudinally monitored for their metabolic state after 8 and 16 weeks of diet, mice were euthanized and fragments of pancreas were processed for histological, immuno‐histochemical and ultrastructural analyses. HFD‐fed WT and eNOS+/− mice developed progressive glucose intolerance and insulin resistance. Differently from WT animals, eNOS+/− mice showed a blunted insulin response to a glucose load, regardless of the diet regimen. Such dysregulation of insulin secretion was associated with pancreatic β‐cell hyperplasia, as shown by larger islet fractional area and β‐cell mass, and higher number of extra‐islet β‐cell clusters than in chow‐fed WT animals. In addition, only in the pancreas of HFD‐fed eNOS+/− mice, there was ultrastructural evidence of a number of hybrid acinar‐β‐cells, simultaneously containing zymogen and insulin granules, suggesting the occurrence of a direct exocrine‐endocrine transdifferentiation process, plausibly triggered by metabolic stress associated to deficient endothelial NO production. As suggested by confocal immunofluorescence analysis of pancreatic histological sections, inhibition of Notch‐1 signaling, likely due to a reduced NO availability, is proposed as a novel mechanism that could favor both β‐cell hyperplasia and acinar‐β‐cell transdifferentiation in eNOS‐deficient mice with impaired insulin response to a glucose load.
format Online
Article
Text
id pubmed-9391603
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-93916032022-08-22 Dysregulated insulin secretion is associated with pancreatic β‐cell hyperplasia and direct acinar‐β‐cell trans‐differentiation in partially eNOS‐deficient mice Novelli, Michela Masini, Matilde Vecoli, Cecilia Moscato, Stefania Funel, Niccola Pippa, Anna Mattii, Letizia Ippolito, Chiara Campani, Daniela Neglia, Danilo Masiello, Pellegrino Physiol Rep Original Articles eNOS‐deficient mice were previously shown to develop hypertension and metabolic alterations associated with insulin resistance either in standard dietary conditions (eNOS−/− homozygotes) or upon high‐fat diet (HFD) (eNOS+/− heterozygotes). In the latter heterozygote model, the present study investigated the pancreatic morphological changes underlying the abnormal glycometabolic phenotype. C57BL6 wild type (WT) and eNOS+/− mice were fed with either chow or HFD for 16 weeks. After being longitudinally monitored for their metabolic state after 8 and 16 weeks of diet, mice were euthanized and fragments of pancreas were processed for histological, immuno‐histochemical and ultrastructural analyses. HFD‐fed WT and eNOS+/− mice developed progressive glucose intolerance and insulin resistance. Differently from WT animals, eNOS+/− mice showed a blunted insulin response to a glucose load, regardless of the diet regimen. Such dysregulation of insulin secretion was associated with pancreatic β‐cell hyperplasia, as shown by larger islet fractional area and β‐cell mass, and higher number of extra‐islet β‐cell clusters than in chow‐fed WT animals. In addition, only in the pancreas of HFD‐fed eNOS+/− mice, there was ultrastructural evidence of a number of hybrid acinar‐β‐cells, simultaneously containing zymogen and insulin granules, suggesting the occurrence of a direct exocrine‐endocrine transdifferentiation process, plausibly triggered by metabolic stress associated to deficient endothelial NO production. As suggested by confocal immunofluorescence analysis of pancreatic histological sections, inhibition of Notch‐1 signaling, likely due to a reduced NO availability, is proposed as a novel mechanism that could favor both β‐cell hyperplasia and acinar‐β‐cell transdifferentiation in eNOS‐deficient mice with impaired insulin response to a glucose load. John Wiley and Sons Inc. 2022-08-19 /pmc/articles/PMC9391603/ /pubmed/35986504 http://dx.doi.org/10.14814/phy2.15425 Text en © 2022 The Authors. Physiological Reports published by Wiley Periodicals LLC on behalf of The Physiological Society and the American Physiological Society. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Novelli, Michela
Masini, Matilde
Vecoli, Cecilia
Moscato, Stefania
Funel, Niccola
Pippa, Anna
Mattii, Letizia
Ippolito, Chiara
Campani, Daniela
Neglia, Danilo
Masiello, Pellegrino
Dysregulated insulin secretion is associated with pancreatic β‐cell hyperplasia and direct acinar‐β‐cell trans‐differentiation in partially eNOS‐deficient mice
title Dysregulated insulin secretion is associated with pancreatic β‐cell hyperplasia and direct acinar‐β‐cell trans‐differentiation in partially eNOS‐deficient mice
title_full Dysregulated insulin secretion is associated with pancreatic β‐cell hyperplasia and direct acinar‐β‐cell trans‐differentiation in partially eNOS‐deficient mice
title_fullStr Dysregulated insulin secretion is associated with pancreatic β‐cell hyperplasia and direct acinar‐β‐cell trans‐differentiation in partially eNOS‐deficient mice
title_full_unstemmed Dysregulated insulin secretion is associated with pancreatic β‐cell hyperplasia and direct acinar‐β‐cell trans‐differentiation in partially eNOS‐deficient mice
title_short Dysregulated insulin secretion is associated with pancreatic β‐cell hyperplasia and direct acinar‐β‐cell trans‐differentiation in partially eNOS‐deficient mice
title_sort dysregulated insulin secretion is associated with pancreatic β‐cell hyperplasia and direct acinar‐β‐cell trans‐differentiation in partially enos‐deficient mice
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9391603/
https://www.ncbi.nlm.nih.gov/pubmed/35986504
http://dx.doi.org/10.14814/phy2.15425
work_keys_str_mv AT novellimichela dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT masinimatilde dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT vecolicecilia dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT moscatostefania dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT funelniccola dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT pippaanna dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT mattiiletizia dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT ippolitochiara dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT campanidaniela dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT negliadanilo dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice
AT masiellopellegrino dysregulatedinsulinsecretionisassociatedwithpancreaticbcellhyperplasiaanddirectacinarbcelltransdifferentiationinpartiallyenosdeficientmice