Polydopamine-mediated surface modification of scaffold materials for human neural stem cell engineering

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326
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334

초록

Surface modification of tissue engineering scaffolds and substrates is required for improving the efficacy of stem cell therapy by generating physicochemical stimulation promoting proliferation and differentiation of stem cells. However, typical surface modification methods including chemical conjugation or physical absorption have several limitations such as multistep, complicated procedures, surface denaturation, batch-to-batch inconsistencies, and low surface conjugation efficiency. In this study, we report a mussel-inspired, biomimetic approach to surface modification for efficient and reliable manipulation of human neural stem cell (NSC) differentiation and proliferation. Our study demonstrates that polydopamine coating facilitates highly efficient, simple immobilization of neurotrophic growth factors and adhesion peptides onto polymer substrates. The growth factor or peptide-immobilized substrates greatly enhance differentiation and proliferation of human NSCs (human fetal brain-derived NSCs and human induced pluripotent stem cell-derived NSCs) at a level comparable or greater than currently available animal-derived coating materials (Matrigel) with safety issues. Therefore, polydopamine-mediated surface modification can provide a versatile platform technology for developing chemically defined, safe, functional substrates and scaffolds for therapeutic applications of human NSCs.

키워드

PolydopamineSurface immobilizationNeural stem cellNeurotrophic growth factorAdhesion peptideNEURONAL DIFFERENTIATIONIN-VITROENDOTHELIAL-CELLSPRECURSOR CELLSGROWTH-FACTORTRANSPLANTATIONSURVIVALSTROKEPROLIFERATIONVIABILITY
제목
Polydopamine-mediated surface modification of scaffold materials for human neural stem cell engineering
저자
Yang, KisukLee, Jung SeungKim, JinLee, Yu BinShin, HeungsooUm, Soong HoKim, Jeong BeomPark, Kook InLee, HaeshinCho, Seung-Woo
DOI
10.1016/j.biomaterials.2012.06.067
발행일
2012-10
유형
Article
저널명
Biomaterials
33
29
페이지
6952 ~ 6964