Bibliographic Details
| Title: |
Glucose transporter-2 (GLUT2) promoter mediated transgenic insulin production reduces hyperglycemia in diabetic mice |
| Authors: |
Burkhardt, Brant R.1 burkhardtb@email.chop.edu, Parker, Mathew J.1, Zhang, Y. Clare1, Song, Sihong2, Wasserfall, Clive H.1,3, Atkinson, Mark A.1,3 |
| Source: |
FEBS Letters. Oct2005, Vol. 579 Issue 25, p5759-5764. 6p. |
| Subjects: |
Hypoglycemic agents, Pancreatic secretions, Blood plasma, Hormones |
| Abstract: |
Abstract: Insulin production afforded by hepatic gene therapy (HGT) retains promise as a potential treatment for type 1 diabetes, but successful approaches have been limited. We employed a novel and previously untested promoter for this purpose, glucose transporter-2 (GLUT2) to drive insulin production via delivery by recombinant adeno-associated virus (rAAV). In vitro, the GLUT2 promoter was capable of robust glucose-responsive expression in transduced HepG2 human hepatoma cells. Therefore, rAAV constructs were designed to express the furin-cleavable human preproinsulin B10 gene, under the control of the murine GLUT2 promoter and packaged for delivery with rAAV expressing the type 5 capsid. Streptozotocin-induced diabetic mice were subjected to hepatic portal vein injection immediately followed by implantation of a sustained-release insulin pellet to allow time for transgenic expression. All mice injected with the rAAV5-GLUT2-fHPIB10 virus remained euglycemic for up to 35 days post-injection, with 50% euglycemic after 77 days post-injection. In contrast, mock-injected mice became hyperglycemic within 15 days post-injection following dissolution of the insulin pellet. Serum levels of both human insulin and C-peptide further confirmed successful transgenic delivery by the rAAV5-GLUT2-fHPIB10 virus. These findings indicate that the GLUT2 promoter may be a potential candidate for regulating transgenic insulin production for hepatic insulin gene therapy in the treatment of type I diabetes. [Copyright &y& Elsevier] |
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| Database: |
Engineering Source |