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Destruction of Tissue, Cells and Organelles in Type 1 Diabetic Rats Presented at Macromolecular Resolution

Finding alternatives for insulin therapy and making advances in etiology of type 1 diabetes benefits from a full structural and functional insight into Islets of Langerhans. Electron microscopy (EM) can visualize Islet morphology at the highest possible resolution, however, conventional EM only prov...

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Autores principales: Ravelli, Raimond B. G., Kalicharan, Ruby D., Avramut, M. Cristina, Sjollema, Klaas A., Pronk, Joachim W., Dijk, Freark, Koster, Abraham J., Visser, Jeroen T. J., Faas, Frank G. A., Giepmans, Ben N. G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3647201/
https://www.ncbi.nlm.nih.gov/pubmed/23652855
http://dx.doi.org/10.1038/srep01804
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author Ravelli, Raimond B. G.
Kalicharan, Ruby D.
Avramut, M. Cristina
Sjollema, Klaas A.
Pronk, Joachim W.
Dijk, Freark
Koster, Abraham J.
Visser, Jeroen T. J.
Faas, Frank G. A.
Giepmans, Ben N. G.
author_facet Ravelli, Raimond B. G.
Kalicharan, Ruby D.
Avramut, M. Cristina
Sjollema, Klaas A.
Pronk, Joachim W.
Dijk, Freark
Koster, Abraham J.
Visser, Jeroen T. J.
Faas, Frank G. A.
Giepmans, Ben N. G.
author_sort Ravelli, Raimond B. G.
collection PubMed
description Finding alternatives for insulin therapy and making advances in etiology of type 1 diabetes benefits from a full structural and functional insight into Islets of Langerhans. Electron microscopy (EM) can visualize Islet morphology at the highest possible resolution, however, conventional EM only provides biased snapshots and lacks context. We developed and employed large scale EM and compiled a resource of complete cross sections of rat Islets during immuno-destruction to provide unbiased structural insight of thousands of cells at macromolecular resolution. The resource includes six datasets, totalling 25.000 micrographs, annotated for cellular and ultrastructural changes during autoimmune diabetes. Granulocytes are attracted to the endocrine tissue, followed by extravasation of a pleiotrophy of leukocytes. Subcellullar changes in beta cells include endoplasmic reticulum stress, insulin degranulation and glycogen accumulation. Rare findings include erythrocyte extravasation and nuclear actin-like fibers. While we focus on a rat model of autoimmune diabetes, our approach is general applicable.
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spelling pubmed-36472012013-05-13 Destruction of Tissue, Cells and Organelles in Type 1 Diabetic Rats Presented at Macromolecular Resolution Ravelli, Raimond B. G. Kalicharan, Ruby D. Avramut, M. Cristina Sjollema, Klaas A. Pronk, Joachim W. Dijk, Freark Koster, Abraham J. Visser, Jeroen T. J. Faas, Frank G. A. Giepmans, Ben N. G. Sci Rep Article Finding alternatives for insulin therapy and making advances in etiology of type 1 diabetes benefits from a full structural and functional insight into Islets of Langerhans. Electron microscopy (EM) can visualize Islet morphology at the highest possible resolution, however, conventional EM only provides biased snapshots and lacks context. We developed and employed large scale EM and compiled a resource of complete cross sections of rat Islets during immuno-destruction to provide unbiased structural insight of thousands of cells at macromolecular resolution. The resource includes six datasets, totalling 25.000 micrographs, annotated for cellular and ultrastructural changes during autoimmune diabetes. Granulocytes are attracted to the endocrine tissue, followed by extravasation of a pleiotrophy of leukocytes. Subcellullar changes in beta cells include endoplasmic reticulum stress, insulin degranulation and glycogen accumulation. Rare findings include erythrocyte extravasation and nuclear actin-like fibers. While we focus on a rat model of autoimmune diabetes, our approach is general applicable. Nature Publishing Group 2013-05-08 /pmc/articles/PMC3647201/ /pubmed/23652855 http://dx.doi.org/10.1038/srep01804 Text en Copyright © 2013, Macmillan Publishers Limited. All rights reserved http://creativecommons.org/licenses/by-nc-sa/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-ShareALike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Article
Ravelli, Raimond B. G.
Kalicharan, Ruby D.
Avramut, M. Cristina
Sjollema, Klaas A.
Pronk, Joachim W.
Dijk, Freark
Koster, Abraham J.
Visser, Jeroen T. J.
Faas, Frank G. A.
Giepmans, Ben N. G.
Destruction of Tissue, Cells and Organelles in Type 1 Diabetic Rats Presented at Macromolecular Resolution
title Destruction of Tissue, Cells and Organelles in Type 1 Diabetic Rats Presented at Macromolecular Resolution
title_full Destruction of Tissue, Cells and Organelles in Type 1 Diabetic Rats Presented at Macromolecular Resolution
title_fullStr Destruction of Tissue, Cells and Organelles in Type 1 Diabetic Rats Presented at Macromolecular Resolution
title_full_unstemmed Destruction of Tissue, Cells and Organelles in Type 1 Diabetic Rats Presented at Macromolecular Resolution
title_short Destruction of Tissue, Cells and Organelles in Type 1 Diabetic Rats Presented at Macromolecular Resolution
title_sort destruction of tissue, cells and organelles in type 1 diabetic rats presented at macromolecular resolution
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3647201/
https://www.ncbi.nlm.nih.gov/pubmed/23652855
http://dx.doi.org/10.1038/srep01804
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