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Osteogenic differentiation of human mesenchymal stem cells through alginate-graft-poly(ethylene glycol) microsphere-mediated intracellular growth factor delivery.

J Control Release.. 2014-10; 
T Miao, KS Rao, JL Spees, RA Oldinski. Bioengineering Program, College of Engineering and Mathematical Sciences, College of Medicine, University of Vermont, Burlington VT 05405, USA.
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Peptide Synthesis ...2. Materials and methods. 2.1. Materials. Sodium alginate (M W = 65-75 kg/mol, 60-70% guluronic acid residues) was generously donated by FMC BioPolymer. Cysteine-L-arginyl- glycyl-L-aspartic acid (CRGD) was purchased from <b>GenScript</b>... Get A Quote

摘要

The intracellular delivery of growth factors increases opportunities for controlling cell behavior and maintaining tissue homeostasis. Recently, VEGFA was reported to enhance osteogenic differentiation of mesenchymal stem cells (MSCs) through an intracrine mechanism, suggesting a new strategy to promote bone tissue formation in osteoporotic patients. The goal of this study was to design and fabricate ligand-conjugated alginate-graft-poly(ethylene glycol) microspheres for intracellular delivery and release of VEGFA in primary human MSCs to enhance osteogenic differentiation as a potential therapeutic. Three types of microspheres were synthesized and characterized by scanning electron microscopy, in vitro drug re... More

关键词

Alginate; Poly(ethylene glycol); Microspheres; RGD; Mesenchymal stem cells; Growth factor delivery