| Literature DB >> 25787738 |
Edward A Phelps1, Kellie L Templeman, Peter M Thulé, Andrés J García.
Abstract
Biofunctionalized polyethylene glycol maleimide (PEG-MAL) hydrogels were engineered as a platform to deliver pancreatic islets to the small bowel mesentery and promote graft vascularization. VEGF, a potent stimulator of angiogenesis, was incorporated into the hydrogel to be released in an on-demand manner through enzymatic degradation. PEG-MAL hydrogel enabled extended in vivo release of VEGF. Isolated rat islets encapsulated in PEG-MAL hydrogels remained viable in culture and secreted insulin. Islets encapsulated in PEG-MAL matrix and transplanted to the small bowel mesentery of healthy rats grafted to the host tissue and revascularized by 4 weeks. Addition of VEGF release to the PEG-MAL matrix greatly augmented the vascularization response. These results establish PEG-MAL engineered matrices as a vascular-inductive cell delivery vehicle and warrant their further investigation as islet transplantation vehicles in diabetic animal models.Entities:
Mesh:
Substances:
Year: 2015 PMID: 25787738 PMCID: PMC4366610 DOI: 10.1007/s13346-013-0142-2
Source DB: PubMed Journal: Drug Deliv Transl Res ISSN: 2190-393X Impact factor: 4.617