Literature DB >> 24503054

Thyroid hormones promote endocrine differentiation at expenses of exocrine tissue.

Virginie Aïello1, Alba Moreno-Asso2, Joan-Marc Servitja2, Mercè Martín3.   

Abstract

Diabetes is caused by loss or dysfunction of pancreatic beta cells. Generation of beta cells in vitro is a promising strategy to develop a full-scale cell therapy against diabetes, and the development of methods without gene transfer may provide safer protocols for human therapy. Here we show that thyroid hormone receptors are expressed in embryonic murine pancreas. Addition of the thyroid hormone T3 in an ex vivo culture model of embryonic (E12.5) dorsal pancreas, mimicking embryonic pancreatic development, promoted an increase of ductal cell number at expenses of the acinar compartment. Double labeled cells expressing specific markers for ductal and acinar cells were observed, suggesting cell reprogramming. Increased mRNA levels of the pro-endocrine gene Ngn3 and an increased number of beta cells were detected in cultures treated previously with T3 suggesting that ductal cells promoted by T3 can subsequently differentiate into endocrine cells. So, indirectly, T3 induced endocrine differentiation. Moreover, T3 induced the expression of the pro-endocrine gene Ngn3 in the acinar 266-6 cell line. The pro-endocrine effect of T3 in the pancreatic explants and in the acinar cell line, was abrogated by the Akt inhibitor Ly294002 indicating the involvement of Akt signaling in this process. Altogether we show numerous evidences that define T3 as a promising candidate to generate endocrine cells from exocrine tissue, using ectopically gene expression free protocols, for cell therapy against diabetes.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Akt signaling pathway; Beta cell; Cell differentiation; Cell reprogramming; Diabetes; Pancreas; Thyroid hormone

Mesh:

Substances:

Year:  2014        PMID: 24503054     DOI: 10.1016/j.yexcr.2014.01.030

Source DB:  PubMed          Journal:  Exp Cell Res        ISSN: 0014-4827            Impact factor:   3.905


  12 in total

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2.  Differential Gene Dosage Effects of Diabetes-Associated Gene GLIS3 in Pancreatic β Cell Differentiation and Function.

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3.  Pancreatic and Islet Development and Function: The Role of Thyroid Hormone.

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Review 4.  Optimizing Generation of Stem Cell-Derived Islet Cells.

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5.  The Langerhans islet cells of female rabbits are differentially affected by hypothyroidism depending on the islet size.

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7.  Maternal hypothyroidism in mice influences glucose metabolism in adult offspring.

Authors:  Yasmine Kemkem; Daniela Nasteska; Anne de Bray; Paula Bargi-Souza; Rodrigo A Peliciari-Garcia; Anne Guillou; Patrice Mollard; David J Hodson; Marie Schaeffer
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Review 8.  Knowledge Gaps in Rodent Pancreas Biology: Taking Human Pluripotent Stem Cell-Derived Pancreatic Beta Cells into Our Own Hands.

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9.  Hypothyroidism in utero stimulates pancreatic beta cell proliferation and hyperinsulinaemia in the ovine fetus during late gestation.

Authors:  Shelley E Harris; Miles J De Blasio; Melissa A Davis; Amy C Kelly; Hailey M Davenport; F B Peter Wooding; Dominique Blache; David Meredith; Miranda Anderson; Abigail L Fowden; Sean W Limesand; Alison J Forhead
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Review 10.  The Roles of Thyroid and Thyroid Hormone in Pancreas: Physiology and Pathology.

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