Literature DB >> 2894770

Development of the biphasic response to glucose in fetal and neonatal rat pancreas.

R L Hole1, M C Pian-Smith, G W Sharp.   

Abstract

A study on the development of biphasic insulin release and sensitivity to inhibitors has been performed using perifused rat pancreas at 19.5 days of gestation (3 days before birth) and at 3 days after birth. In the fetal pancreas, 16.7 mM glucose caused a marked stimulation of insulin release that did not, however, manifest a biphasic response and was not inhibited by verapamil, a Ca2+ channel blocker. This suggested that the immature response was due to either a lack of voltage-dependent Ca2+ channels or their failure to open in response to glucose. Depolarizing concentrations of KCl stimulated insulin release, which was inhibited by verapamil, demonstrating that functional Ca2+ channels were present. In the presence of 16.7 mM glucose, quinine, which blocks glucose-sensitive k+ channels, potentiated the response of the fetal pancreas that now became sensitive to verapamil, demonstrating that functional K+ channels were also present in the fetal pancreatic beta-cell. The immaturity of the response is not due specifically to a defect in glucose metabolism; rather the metabolism of nutrient secretagogues fails to couple with the K+ channel in the fetal islet and thus fails to depolarize the beta-cell membrane. Three days after birth the pattern of response to high glucose is biphasic. Insulin release in fetal pancreas was inhibited by epinephrine and somatostatin.

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Year:  1988        PMID: 2894770     DOI: 10.1152/ajpendo.1988.254.2.E167

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  22 in total

1.  Perinatal development of the pancreatic islet microvasculature in rats.

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2.  Induction of pancreatic duct cells of neonatal rats into insulin-producing cells with fetal bovine serum: a natural protocol and its use for patch clamp experiments.

Authors:  San-Hua Leng; Fu-Er Lu
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3.  MafB is required for islet beta cell maturation.

Authors:  Isabella Artner; Bruno Blanchi; Jeffrey C Raum; Min Guo; Tomomi Kaneko; Sabine Cordes; Michael Sieweke; Roland Stein
Journal:  Proc Natl Acad Sci U S A       Date:  2007-02-22       Impact factor: 11.205

Review 4.  Deconstructing pancreas developmental biology.

Authors:  Cecil M Benitez; William R Goodyer; Seung K Kim
Journal:  Cold Spring Harb Perspect Biol       Date:  2012-06-01       Impact factor: 10.005

5.  Large scale isolation, growth, and function of porcine neonatal islet cells.

Authors:  G S Korbutt; J F Elliott; Z Ao; D K Smith; G L Warnock; R V Rajotte
Journal:  J Clin Invest       Date:  1996-05-01       Impact factor: 14.808

6.  Comparative study of K channel behavior in beta cell lines with different secretory responses to glucose.

Authors:  G T Eddlestone; B Ribalet; S Ciani
Journal:  J Membr Biol       Date:  1989-07       Impact factor: 1.843

7.  Failure of glucose to elicit a normal secretory response in fetal pancreatic beta cells results from glucose insensitivity of the ATP-regulated K+ channels.

Authors:  P Rorsman; P Arkhammar; K Bokvist; C Hellerström; T Nilsson; M Welsh; N Welsh; P O Berggren
Journal:  Proc Natl Acad Sci U S A       Date:  1989-06       Impact factor: 11.205

8.  In vivo proliferation of differentiated pancreatic islet beta cells in transgenic mice expressing mutated cyclin-dependent kinase 4.

Authors:  S Hino; T Yamaoka; Y Yamashita; T Yamada; J Hata; M Itakura
Journal:  Diabetologia       Date:  2004-10-06       Impact factor: 10.122

9.  Lack of beta-catenin in early life induces abnormal glucose homeostasis in mice.

Authors:  S Dabernat; P Secrest; E Peuchant; F Moreau-Gaudry; P Dubus; N Sarvetnick
Journal:  Diabetologia       Date:  2009-06-10       Impact factor: 10.122

10.  The role of reduced glucose transporter content and glucose metabolism in the immature secretory responses of fetal rat pancreatic islets.

Authors:  S J Hughes
Journal:  Diabetologia       Date:  1994-02       Impact factor: 10.122

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