| Literature DB >> 20353585 |
Bruno Lefebvre1, Brigitte Vandewalle, Justine Longue, Ericka Moerman, Bruno Lukowiak, Valery Gmyr, Kathrin Maedler, Julie Kerr-conte, François Pattou.
Abstract
BACKGROUND: In view of the importance of beta cells in glucose homeostasis and the profound repercussions of beta cell pathology on human health, the acquisition of tools to study pancreatic islet function is essential for the design of alternative novel therapies for diabetes. One promising approach toward this goal involves the modification of gene expression profile of beta cells.Entities:
Mesh:
Substances:
Year: 2010 PMID: 20353585 PMCID: PMC2853492 DOI: 10.1186/1472-6750-10-28
Source DB: PubMed Journal: BMC Biotechnol ISSN: 1472-6750 Impact factor: 2.563
Figure 1eGFP expression in human and mouse islets following adenoviral and microporation transfection delivery. (A) GFP expression of human islets infected with Ad-GFP. (B) GFP expression of human islets microporated with an eGFP plasmid. (C) GFP expression of human islets pretreated with accutase and microporated with an eGFP plasmid. (D) GFP expression of mouse islets microporated with an eGFP plasmid by fluorescent microscopy 12 or 24 h after microporation.
Figure 2Human islet metabolic parameters were not modified upon accutase pretreatment and microporation. (A) apoptotic index, (B) insulin content and (C) stimulation index were measured in control human islets or overexpressing GFP-human islets after 48 h culture. Values are means +/- SEM of islets from n = 3 pancreases.
Figure 3Real time PCR analysis of ZnT8 expression in (A) control islets or overexpressing ZnT8 islets and (B) control islets or microporated with 5 pM or 10 pM of siZNt8. Basal ZnT8 expression was arbitrarily set to 1. Values are means +/- SEM of islets from n = 3 pancreases.