Adenoviruses expressing PDX-1, BETA2/neurod and mafa induces the transdifferentiation of porcine neonatal pancreas cell clusters and adult pig pancreatic cells into beta-cells

Young Hye You, Dong Sik Ham, Heon Seok Park, Marie Rhee, Ji Won Kim, Kun Ho Yoon

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

Background: A limitation in the number of insulin-producing pancreatic beta-cells is a special feature of diabetes. The identification of alternative sources for the induction of insulin-producing surrogate beta-cells is a matter of profound importance. PDX-1/VP16, BETA2/NeuroD, and MafA overexpression have been shown to influence the differentiation and proliferation of pancreatic stem cells. However, few studies have been conducted using adult animal pancreatic stem cells. Methods: Adult pig pancreatic cells were prepared from the non-endocrine fraction of adult pig pancreata. Porcine neonatal pancreas cell clusters (NPCCs) were prepared from neonatal pigs aged 1-2 days. The dispersed pancreatic cells were infected with PDX-1/VP16, BETA2/NeuroD, and MafA adenoviruses. After infection, these cells were transplanted under the kidney capsules of normoglycemic nude mice. Results: The adenovirus-mediated overexpression of PDX-1, BETA2/NeuroD and MafA induced insulin gene expression in NPCCs, but not in adult pig pancreatic cells. Immunocytochemistry revealed that the number of insulin-positive cells in NPCCs and adult pig pancreatic cells was approximately 2.6- and 1.1-fold greater than those in the green fluorescent protein control group, respectively. At four weeks after transplantation, the relative volume of insulin-positive cells in the grafts increased in the NPCCs, but not in the adult porcine pancreatic cells. Conclusion: These data indicate that PDX-1, BETA2/NeuroD, and MafA facilitate the beta-cell differentiation of NPCCs, but not adult pig pancreatic cells. Therefore PDX-1, BETA2/NeuroD, and MafA-induced NPCCs can be considered good sources for the induction of pancreatic beta-cells, and may also have some utility in the treatment of diabetes.

Original languageEnglish
Pages (from-to)119-129
Number of pages11
JournalDiabetes and Metabolism Journal
Volume35
Issue number2
DOIs
StatePublished - Apr 2011

Keywords

  • Ad-BETA2/neurod
  • Ad-mafa
  • Ad-PDX-1/VP16
  • Beta-cell
  • Neonatal pig cell clusters
  • Pancreatic exocrine cell
  • Transdifferentiation
  • Transplantation

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