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Decrease in Beta -Cell Proliferation Precedes Apoptosis during Diabetes Development in Bio-Breeding/ Worcester Rat: Beneficial Role of Exendin-4

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URI: http://hdl.handle.net/10498/17524

DOI: 10.1210/en.2009-1113

ISSN: 0013-7227

ISSN: ISSN Online 1945-7170

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Author/s
Pérez Arana, Gonzalo MartínAuthority UCA; Segundo Iglesias, María del CarmenAuthority UCA; Aguilar Diosdado, ManuelAuthority UCA; Blandino Rosano, Manuel; Prada Oliveira, José ArturoAuthority UCA
Date
2010-06-01
Department
Anatomía y Embriología Humana
Source
Endocrinology, June 2010, 151(6):2538–2546. doi: 10.1210/en.2009-1113
Abstract
In autoimmune type 1 diabetes mellitus, proinflammatory cytokine-mediated apoptosis of beta-cells has been considered to be the first event directly responsible for beta-cell mass reduction. In the Bio-Breeding (BB) rat, an in vivo model used in the study of autoimmune diabetes, beta-cell apoptosis is observed from 9 wk of age and takes place after an insulitis period that begins at an earlier age. Previous studies by our group have shown an antiproliferative effect of proinflammatory cytokines on cultured beta-cells in Wistar rats, an effect that was partially reversed by Exendin-4, an analogue of glucagon-like peptide-1. In the current study, the changes in beta-cell apoptosis and proliferation during insulitis stage were also determined in pancreatic tissue sections in normal and thymectomized BB rats, as well as in Wistar rats of 5, 7, 9, and 11 wk of age. Although stable beta-cell proliferation in Wistar and thymectomized BB rats was observed along the course of the study, a decrease in beta-cell proliferation and beta-cell mass from the age of 5 wk, and prior to the commencement of apoptosis, was noted in BB rats. Exendin-4, in combination with anti-interferon-gamma antibody, induced a near-total recovery of beta-cell proliferation during the initial stages of insulitis. This highlights the importance of early intervention and, as well, the possibilities of new therapeutic approaches in preventing autoimmune diabetes by acting, initially, in the insulitis stage and, subsequently, on beta-cell regeneration and on beta-cell apoptosis.
Subjects
Pancreas; Beta-cell mas; Exendin-4; Diabetes
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Attribution-NonCommercial-NoDerivatives 4.0 Internacional
This work is under a Creative Commons License Attribution-NonCommercial-NoDerivatives 4.0 Internacional

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