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MicroRNA-17-92 Regulates Beta-Cell Restoration After Streptozotocin Treatment

Objective: To clarify the role and mechanism of miR-17-92 cluster in islet beta-cell repair after streptozotocin intervention. Methods: Genetically engineered mice (miR-17-92βKO) and control RIP-Cre mice were intraperitoneally injected with multiple low dose streptozotocin. Body weight, random blood...

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Autores principales: Wan, Shan, Zhang, Jie, Chen, Xiang, Lang, Jiangli, Li, Li, Chen, Fei, Tian, Li, Meng, Yang, Yu, Xijie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6989481/
https://www.ncbi.nlm.nih.gov/pubmed/32038500
http://dx.doi.org/10.3389/fendo.2020.00009
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author Wan, Shan
Zhang, Jie
Chen, Xiang
Lang, Jiangli
Li, Li
Chen, Fei
Tian, Li
Meng, Yang
Yu, Xijie
author_facet Wan, Shan
Zhang, Jie
Chen, Xiang
Lang, Jiangli
Li, Li
Chen, Fei
Tian, Li
Meng, Yang
Yu, Xijie
author_sort Wan, Shan
collection PubMed
description Objective: To clarify the role and mechanism of miR-17-92 cluster in islet beta-cell repair after streptozotocin intervention. Methods: Genetically engineered mice (miR-17-92βKO) and control RIP-Cre mice were intraperitoneally injected with multiple low dose streptozotocin. Body weight, random blood glucose (RBG), fasting blood glucose, and intraperitoneal glucose tolerance test (IPGTT) were monitored regularly. Mice were sacrificed for histological analysis 8 weeks later. Morphological changes of pancreas islets, quantity, quality, apoptosis, and proliferation of beta-cells were measured. Islets from four groups were isolated. MiRNA and mRNA were extracted and quantified. Results: MiR-17-92βKO mice showed dramatically elevated fasting blood glucose and impaired glucose tolerance after streptozotocin treatment in contrast to control mice, the reason of which is reduced beta-cell number and total mass resulting from reduced proliferation, enhanced apoptosis of beta-cells. Genes related to cell proliferation and insulin transcription repression were significantly elevated in miR-17-92βKO mice treated with streptozotocin. Furthermore, genes involved in DNA biosynthesis and damage repair were dramatically increased in miR-17-92βKO mice with streptozotocin treatment. Conclusion: Collectively, our results demonstrate that homozygous deletion of miR-17-92 cluster in mouse pancreatic beta-cells promotes the development of experimental diabetes, indicating that miR-17-92 cluster may be positively related to beta-cells restoration and adaptation after streptozotocin-induced damage.
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spelling pubmed-69894812020-02-07 MicroRNA-17-92 Regulates Beta-Cell Restoration After Streptozotocin Treatment Wan, Shan Zhang, Jie Chen, Xiang Lang, Jiangli Li, Li Chen, Fei Tian, Li Meng, Yang Yu, Xijie Front Endocrinol (Lausanne) Endocrinology Objective: To clarify the role and mechanism of miR-17-92 cluster in islet beta-cell repair after streptozotocin intervention. Methods: Genetically engineered mice (miR-17-92βKO) and control RIP-Cre mice were intraperitoneally injected with multiple low dose streptozotocin. Body weight, random blood glucose (RBG), fasting blood glucose, and intraperitoneal glucose tolerance test (IPGTT) were monitored regularly. Mice were sacrificed for histological analysis 8 weeks later. Morphological changes of pancreas islets, quantity, quality, apoptosis, and proliferation of beta-cells were measured. Islets from four groups were isolated. MiRNA and mRNA were extracted and quantified. Results: MiR-17-92βKO mice showed dramatically elevated fasting blood glucose and impaired glucose tolerance after streptozotocin treatment in contrast to control mice, the reason of which is reduced beta-cell number and total mass resulting from reduced proliferation, enhanced apoptosis of beta-cells. Genes related to cell proliferation and insulin transcription repression were significantly elevated in miR-17-92βKO mice treated with streptozotocin. Furthermore, genes involved in DNA biosynthesis and damage repair were dramatically increased in miR-17-92βKO mice with streptozotocin treatment. Conclusion: Collectively, our results demonstrate that homozygous deletion of miR-17-92 cluster in mouse pancreatic beta-cells promotes the development of experimental diabetes, indicating that miR-17-92 cluster may be positively related to beta-cells restoration and adaptation after streptozotocin-induced damage. Frontiers Media S.A. 2020-01-23 /pmc/articles/PMC6989481/ /pubmed/32038500 http://dx.doi.org/10.3389/fendo.2020.00009 Text en Copyright © 2020 Wan, Zhang, Chen, Lang, Li, Chen, Tian, Meng and Yu. http://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
Wan, Shan
Zhang, Jie
Chen, Xiang
Lang, Jiangli
Li, Li
Chen, Fei
Tian, Li
Meng, Yang
Yu, Xijie
MicroRNA-17-92 Regulates Beta-Cell Restoration After Streptozotocin Treatment
title MicroRNA-17-92 Regulates Beta-Cell Restoration After Streptozotocin Treatment
title_full MicroRNA-17-92 Regulates Beta-Cell Restoration After Streptozotocin Treatment
title_fullStr MicroRNA-17-92 Regulates Beta-Cell Restoration After Streptozotocin Treatment
title_full_unstemmed MicroRNA-17-92 Regulates Beta-Cell Restoration After Streptozotocin Treatment
title_short MicroRNA-17-92 Regulates Beta-Cell Restoration After Streptozotocin Treatment
title_sort microrna-17-92 regulates beta-cell restoration after streptozotocin treatment
topic Endocrinology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6989481/
https://www.ncbi.nlm.nih.gov/pubmed/32038500
http://dx.doi.org/10.3389/fendo.2020.00009
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