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One-pot synthesis of elastin-like polypeptide hydrogels with grafted VEGF-mimetic peptides.

Biomater Sci.. 2014-02; 
L Cai, CB Dinh, SC Heilshorn. Department of Bioengineering, Stanford University, Stanford, USA.
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摘要

Immobilization of growth factors to polymeric matrices has been a common strategy in the design of tissue engineering scaffolds to promote tissue regeneration, which requires complex cell signaling events with the surrounding matrix. However, the use of large protein growth factors in polymeric scaffolds is often plagued by immunogenicity, short in vivo half-lives, and reduced bioactivity. To address these concerns, we developed a single-step, cell-compatible strategy to tether small, growth-factor-mimetic peptides into a protein-engineered hydrogel with tunable biomaterial properties. Specifically, we covalently immobilized the QK peptide, an angiogenic peptide mimicking the receptor-binding region of vascular... More

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