Literature DB >> 8625795

Lineage-specific morphogenesis in the developing pancreas: role of mesenchymal factors.

G K Gittes1, P E Galante, D Hanahan, W J Rutter, H T Debase.   

Abstract

Pancreatic organogenesis has been a classic example of epitheliomesenchymal interactions. The nature of this interaction, and the way in which endocrine, acinar and ductal cell lineages are generated from the embryonic foregut has not been determined. It has generally been thought that mesenchyme is necessary for all aspects of pancreatic development. In addition islets have been thought to derive, at least in part, from ducts. We microdissected 11-day embryonic mouse pancreas and developed several culture systems for assays of differentiation: (i) on transparent filters; (ii) suspended in a collagen I gel; (iii) suspended in a basement membrane rich gel; (iv) under the renal capsule of an adult mouse. Epithelia were grown either with or without mesenchyme, and then assayed histologically and immunohistochemically. Epithelium with its mesenchyme (growth systems i-iv) always grew into fully differentiated pancreas (acinar, endocrine, adn ductal elements). In the basement membrane-rich gel, epithelium without mesenchyme formed ductal structures. Under the renal capsule of the adult mouse the epithelium without mesenchyme exclusively formed clusters of mature islets. These latter results represent the first demonstration of pure islets grown from early pancreatic precursor cells. In addition, these islets seemed not to have originated from ducts. We propose that the default path for growth of embryonic pancreatic epithelium is to form islets. In the presence of basement membrane constituents, however, the pancreatic analage epithelium appears to be programmed to form ducts. Mesenchyme seems not to be required for all aspects of pancreatic development, but rather only for the formation of acinar structures. In addition, the islets seem to form from early embryonic epithelium (which only express non-acinar genes). This formation occurs without any specific embryonic signals, and without any clear duct or acinus formation.

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Year:  1996        PMID: 8625795     DOI: 10.1242/dev.122.2.439

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  82 in total

1.  COUP-TF upregulates NGFI-A gene expression through an Sp1 binding site.

Authors:  C Pipaón; S Y Tsai; M J Tsai
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Review 2.  Developmental aspects of the endocrine pancreas.

Authors:  Daniel M Kemp; Melissa K Thomas; Joel F Habener
Journal:  Rev Endocr Metab Disord       Date:  2003-03       Impact factor: 6.514

Review 3.  Modeling tissue-specific signaling and organ function in three dimensions.

Authors:  Karen L Schmeichel; Mina J Bissell
Journal:  J Cell Sci       Date:  2003-06-15       Impact factor: 5.285

Review 4.  Understanding pancreas development for β-cell repair and replacement therapies.

Authors:  Aurelia Raducanu; Heiko Lickert
Journal:  Curr Diab Rep       Date:  2012-10       Impact factor: 4.810

5.  Generation of pancreatic insulin-producing cells from embryonic stem cells - 'proof of principle', but questions still unanswered.

Authors:  A Rolletschek; G Kania; A M Wobus
Journal:  Diabetologia       Date:  2006-09-20       Impact factor: 10.122

6.  Regulation of pancreatic endocrine cell differentiation by sulphated proteoglycans.

Authors:  S Zertal-Zidani; A Bounacer; R Scharfmann
Journal:  Diabetologia       Date:  2007-01-13       Impact factor: 10.122

7.  Foregut mesenchyme contributes cells to pancreatic acini during embryonic development in a chick-quail chimera model.

Authors:  Warwick J Teague; Naga V G Jayanthi; Pamela V Lear; Paul R V Johnson
Journal:  Pediatr Surg Int       Date:  2004-12-02       Impact factor: 1.827

8.  Induction of mouse pancreatic ductal differentiation, an in vitro assay.

Authors:  Julie A Rhodes; Angela Criscimanna; Farzad Esni
Journal:  In Vitro Cell Dev Biol Anim       Date:  2012-10-24       Impact factor: 2.416

9.  Efficient restricted gene expression in beta cells by lentivirus-mediated gene transfer into pancreatic stem/progenitor cells.

Authors:  M Castaing; A Guerci; J Mallet; P Czernichow; P Ravassard; R Scharfmann
Journal:  Diabetologia       Date:  2005-03-10       Impact factor: 10.122

10.  Generation of embryonic stem cells from mouse insulin I promoter-green fluorescent protein transgenic mice and characterization in a teratoma model.

Authors:  Wieslawa M Milewski; Karla A Temple; Robin L Wesselschmidt; Manami Hara
Journal:  In Vitro Cell Dev Biol Anim       Date:  2008-10-15       Impact factor: 2.416

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