Bio-inspired oligovitronectin-grafted surface for enhanced self-renewal and long-term maintenance of human pluripotent stem cells under feeder-free conditions

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Current protocols for human pluripotent stem cell (hPSC) expansion require feeder cells or matrices from animal sources that have been the major obstacle to obtain clinical grade hPSCs due to safety issues, difficulty in quality control, and high expense. Thus, feeder-free, chemically defined synthetic platforms have been developed, but are mostly confined to typical polystyrene culture plates. Here, we report a chemically defined, material-independent, bio-inspired surface coating allowing for feeder-free expansion and maintenance of self-renewal and pluripotency of hPSCs on various polymer substrates and devices. Polydopamine (pDA)-mediated immobilization of vitronectin (VN) peptides results in surface functionalization of VN-dimer/pDA conjugates. The engineered surfaces facilitate adhesion, proliferation, and colony formation of hPSCs via enhanced focal adhesion, cell cell interaction, and biophysical signals, providing a chemically defined, xeno-free culture system for clonal expansion and long-term maintenance of hPSCs. This surface engineering enables the application of clinically-relevant hPSCs to a variety of biomedical systems such as tissue-engineering scaffolds and medical devices.
Publisher
ELSEVIER SCI LTD
Issue Date
2015-05
Language
English
Article Type
Article
Keywords

HUMAN BLASTOCYSTS; IN-VITRO; DIFFERENTIATION; COATINGS; GROWTH; SURVIVAL; ADHESION; THERAPY; PROMISE; LINES

Citation

BIOMATERIALS, v.50, pp.127 - 139

ISSN
0142-9612
DOI
10.1016/j.biomaterials.2015.01.015
URI
http://hdl.handle.net/10203/198211
Appears in Collection
CH-Journal Papers(저널논문)
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