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Islet amyloid deposits preferentially in the highly functional and most blood-perfused islets

Islet amyloid and beta cell death in type 2 diabetes are heterogeneous events, where some islets are affected early in the disease process, whereas others remain visibly unaffected. This study investigated the possibility that inter-islet functional and vascular differences may explain the propensit...

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Autores principales: Ullsten, Sara, Bohman, Sara, Oskarsson, Marie E, Nilsson, K Peter R, Westermark, Gunilla T, Carlsson, Per-Ola
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5574281/
https://www.ncbi.nlm.nih.gov/pubmed/28790139
http://dx.doi.org/10.1530/EC-17-0148
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author Ullsten, Sara
Bohman, Sara
Oskarsson, Marie E
Nilsson, K Peter R
Westermark, Gunilla T
Carlsson, Per-Ola
author_facet Ullsten, Sara
Bohman, Sara
Oskarsson, Marie E
Nilsson, K Peter R
Westermark, Gunilla T
Carlsson, Per-Ola
author_sort Ullsten, Sara
collection PubMed
description Islet amyloid and beta cell death in type 2 diabetes are heterogeneous events, where some islets are affected early in the disease process, whereas others remain visibly unaffected. This study investigated the possibility that inter-islet functional and vascular differences may explain the propensity for amyloid accumulation in certain islets. Highly blood-perfused islets were identified by microspheres in human islet amyloid polypeptide expressing mice fed a high-fat diet for three or 10 months. These highly blood-perfused islets had better glucose-stimulated insulin secretion capacity than other islets and developed more amyloid deposits after 10 months of high-fat diet. Similarly, human islets with a superior release capacity formed more amyloid in high glucose culture than islets with a lower release capacity. The amyloid formation in mouse islets was associated with a higher amount of prohormone convertase 1/3 and with a decreased expression of its inhibitor proSAAS when compared to islets with less amyloid. In contrast, levels of prohormone convertase 2 and expression of its inhibitor neuroendocrine protein 7B2 were unaltered. A misbalance in prohormone convertase levels may interrupt the normal processing of islet amyloid polypeptide and induce amyloid formation. Preferential amyloid load in the most blood-perfused and functional islets may accelerate the progression of type 2 diabetes.
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spelling pubmed-55742812017-09-01 Islet amyloid deposits preferentially in the highly functional and most blood-perfused islets Ullsten, Sara Bohman, Sara Oskarsson, Marie E Nilsson, K Peter R Westermark, Gunilla T Carlsson, Per-Ola Endocr Connect Research Islet amyloid and beta cell death in type 2 diabetes are heterogeneous events, where some islets are affected early in the disease process, whereas others remain visibly unaffected. This study investigated the possibility that inter-islet functional and vascular differences may explain the propensity for amyloid accumulation in certain islets. Highly blood-perfused islets were identified by microspheres in human islet amyloid polypeptide expressing mice fed a high-fat diet for three or 10 months. These highly blood-perfused islets had better glucose-stimulated insulin secretion capacity than other islets and developed more amyloid deposits after 10 months of high-fat diet. Similarly, human islets with a superior release capacity formed more amyloid in high glucose culture than islets with a lower release capacity. The amyloid formation in mouse islets was associated with a higher amount of prohormone convertase 1/3 and with a decreased expression of its inhibitor proSAAS when compared to islets with less amyloid. In contrast, levels of prohormone convertase 2 and expression of its inhibitor neuroendocrine protein 7B2 were unaltered. A misbalance in prohormone convertase levels may interrupt the normal processing of islet amyloid polypeptide and induce amyloid formation. Preferential amyloid load in the most blood-perfused and functional islets may accelerate the progression of type 2 diabetes. Bioscientifica Ltd 2017-08-08 /pmc/articles/PMC5574281/ /pubmed/28790139 http://dx.doi.org/10.1530/EC-17-0148 Text en © 2017 The authors http://creativecommons.org/licenses/by-nc/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. (http://creativecommons.org/licenses/by-nc/4.0/) .
spellingShingle Research
Ullsten, Sara
Bohman, Sara
Oskarsson, Marie E
Nilsson, K Peter R
Westermark, Gunilla T
Carlsson, Per-Ola
Islet amyloid deposits preferentially in the highly functional and most blood-perfused islets
title Islet amyloid deposits preferentially in the highly functional and most blood-perfused islets
title_full Islet amyloid deposits preferentially in the highly functional and most blood-perfused islets
title_fullStr Islet amyloid deposits preferentially in the highly functional and most blood-perfused islets
title_full_unstemmed Islet amyloid deposits preferentially in the highly functional and most blood-perfused islets
title_short Islet amyloid deposits preferentially in the highly functional and most blood-perfused islets
title_sort islet amyloid deposits preferentially in the highly functional and most blood-perfused islets
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5574281/
https://www.ncbi.nlm.nih.gov/pubmed/28790139
http://dx.doi.org/10.1530/EC-17-0148
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