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Tannic Acid-Mediated Dual Peptide-Functionalized Scaffolds to Direct Stem Cell Behavior and Osteochondral Regeneration

Chemical Engineering Journal. 2020-09; 
Wei Zhang;Chen Ling;Haoyang Liu;Aini Zhang;Lu Mao;Jing Wang;Jie Chao;Ludvig J.Backman;fQingqiang Yao;Jialin Chen
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Gene Synthesis Primer (Genscript, China) sequences used in this study are: GAPDH (forward 5’- GCAAGTTCAACGGCACAG-3’, reverse 5’- CGCCAGTAGACTCCACGAC-3’), col I (forward 5’- TGGATGGCTGCACGAGT-3’, reverse 5’- TTGGGATGGAGGGAGTTTA-3’), col II (forward 5’-ACGGCAACCTGGCTCCCAACAC-3’, reverse 5’- GCGTGAGGTCTTCTGTGATCG-3’). Get A Quote

摘要

The development of cell-instructive scaffolds, which provide biochemical cues to direct endogenous bone marrow-derived mesenchymal stem cells (BMSCs) behavior, has the potential to revolutionize osteochondral tissue engineering. However, scaffold material itself is generally lacking the inductive signals. Here, a novel peptide-functionalized scaffold was prepared by prime-coating Ca-alginate scaffold with tannic acid (TA) followed by conjugation of E7/P15 peptides (CA-TA-E7/P15). The system leveraged TA as a reactive intermediate between Ca-alginate and peptides due to the multiple functional groups of TA. These interactions induced by TA prime-coating contributed to enhanced scaffold stability and mechanical p... More

关键词

Osteochondral tissue engineering;Surface functionalization;Tannic acid;Peptide;BMSCs;Regeneration