화학공학소재연구정보센터
Macromolecular Research, Vol.24, No.4, 305-308, April, 2016
A novel mussel-inspired 3D printed-scaffolds immobilized with bone forming peptide-1 for bone tissue engineering applications: Preparation, characterization and evaluation of its properties
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To date, the 3D printing of porous biodegraydable scaffolds has received considerable attention throughout the biomedical field for its suitability to tissue engineering. IIowever, effective surface modification of scaffolds is a current challenge in 3D bio-printing field. In this study, thus we report the 3D printing of a PCL scaffold ciated with DOPA BFPI was then immobilized on the coated scafflolds. As a result, the DPA was well coated and the BFP1 showed higher degrees of cell proferation than uncoated scaffolds. In conclusion, the developed scaffolds may be suitable as bone tissue engineering substrates for use in bone regeneration field.
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