Literature DB >> 12428741

Gene transfection and expression of transforming growth factor-beta1 in nonobese diabetic mouse islets protects beta-cells in syngeneic islet grafts from autoimmune destruction.

Wilma L Suarez-Pinzon1, Yvonne Marcoux, Aziz Ghahary, Alex Rabinovitch.   

Abstract

Nonobese diabetic (NOD) mice develop diabetes and destroy syngeneic islet grafts through an autoimmune response. Because transforming growth factor (TGF)-beta1 downregulates immune responses, we tested whether overexpression of TGF-beta1 by gene transfection of NOD mouse islets could protect beta-cells in islet grafts from autoimmune destruction. NOD mouse islet cells were transfected with an adenoviral DNA expression vector encoding porcine latent TGF-beta1 (Ad TGF-beta1) or the adenoviral vector alone (control Ad vector). The frequency of total islet cells expressing TGF-beta1 protein was increased from 12 +/- 1% in control Ad vector-transfected cells to 89 +/- 4% in Ad TGF-beta1-transfected islet cells, and the frequency of beta-cells that expressed TGF-beta1 was increased from 12 +/- 1% to 60 +/- 7%. Also, secretion of TGF-beta1 was significantly increased in islets that overexpressed TGF-beta1. Ad TGF-beta1-transfected NOD mouse islets that overexpressed TGF-beta1 prevented diabetes recurrence after transplantation into diabetic NOD mice for a median of 22 days compared with only 7 days for control Ad vector-transfected islets (p = 0.001). Immunohistochemical examination of the islet grafts revealed significantly more TGF-beta1+ cells and insulin+ cells and significantly fewer CD45+ leukocytes in Ad TGF-beta1-transfected islet grafts. Also, islet beta-cell apoptosis was significantly decreased whereas apoptosis of graft-infiltrating leukocytes was significantly increased in Ad TGF-beta1-transfected islet grafts. These observations demonstrate that overexpression of TGF-beta1, by gene transfection of NOD mouse islets, protects islet beta-cells from apoptosis and autoimmune destruction and delays diabetes recurrence after islet transplantation.

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Year:  2002        PMID: 12428741

Source DB:  PubMed          Journal:  Cell Transplant        ISSN: 0963-6897            Impact factor:   4.064


  10 in total

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Review 2.  Role of cytokines in the pathogenesis of autoimmune diabetes mellitus.

Authors:  Alex Rabinovitch; Wilma L Suarez-Pinzon
Journal:  Rev Endocr Metab Disord       Date:  2003-09       Impact factor: 6.514

Review 3.  Toward beta cell replacement for diabetes.

Authors:  Bjarki Johannesson; Lina Sui; Donald O Freytes; Remi J Creusot; Dieter Egli
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4.  Genetically engineered islets and alternative sources of insulin-producing cells for treating autoimmune diabetes: quo vadis?

Authors:  Feng-Cheng Chou; Shing-Hwa Huang; Huey-Kang Sytwu
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6.  Overexpression of thioredoxin in islets transduced by a lentiviral vector prolongs graft survival in autoimmune diabetic NOD mice.

Authors:  Feng-Cheng Chou; Huey-Kang Sytwu
Journal:  J Biomed Sci       Date:  2009-08-12       Impact factor: 8.410

7.  Transduction of rat pancreatic islets with pseudotyped adeno-associated virus vectors.

Authors:  Anthony T Craig; Oksana Gavrilova; Nancy K Dwyer; William Jou; Stephanie Pack; Eric Liu; Klaus Pechhold; Michael Schmidt; Victor J McAlister; John A Chiorini; E Joan Blanchette-Mackie; David M Harlan; Roland A Owens
Journal:  Virol J       Date:  2009-05-18       Impact factor: 4.099

8.  Protection of islet grafts through transforming growth factor-β-induced tolerogenic dendritic cells.

Authors:  David C Thomas; F Susan Wong; Paola Zaccone; E Allison Green; Maja Wållberg
Journal:  Diabetes       Date:  2013-05-28       Impact factor: 9.461

9.  Microenvironmental stimuli for proliferation of functional islet β-cells.

Authors:  Hanan Alismail; Sha Jin
Journal:  Cell Biosci       Date:  2014-03-04       Impact factor: 7.133

10.  Ex vivo gene transfer of viral interleukin-10 to BB rat islets: no protection after transplantation to diabetic BB rats.

Authors:  Beate Kuttler; Heike Wanka; Nora Klöting; Bernhard Gerstmayer; Hans-Dieter Volk; Birgit Sawitzki; Thomas Ritter
Journal:  J Cell Mol Med       Date:  2007 Jul-Aug       Impact factor: 5.310

  10 in total

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