Fabrication and Characterization of 3D Printed PGA Scaffolds Immobilized with BMP-2 for Bone Tissue Engineering

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초록

This study focused on immobilizing bone morphogenetic protein-2 (BMP-2) onto a 3D-printed poly(glycolic acid) (PGA) scaffold to develop a biodegradable scaffold for continuous bone formation stimulation in bone tissue engineering. BMP-2 immobilization was achieved using the UV irradiation method and confirmed through ATR-FTIR and XPS analyses. The scaffold's structure, hydrolytic degradation behavior, and in vitro cell viability were analyzed. Furthermore, the BMP-2 release behavior and calcification performance of the scaffold were evaluated for osteogenic tissue engineering applications. Results from in vivo animal model experiments and histological analyses demonstrated that the BMP-2 immobilized PGA scaffold exhibited superior bone tissue regeneration ability compared to the control group. And, It suggests potential as a scaffold in bone tissue engineering.

키워드

poly(glycolic acid); scaffold; bone morphogenetic protein-2; 3D printing; bone tissue engineering; EPIDERMAL-GROWTH-FACTOR; SURFACE; RHBMP-2; CHEMISTRY; COLLAGEN; DESIGN; DNA
제목
Fabrication and Characterization of 3D Printed PGA Scaffolds Immobilized with BMP-2 for Bone Tissue Engineering
저자
Lee, Jiyoung; Ko, Yunjeh; Chung, Ho Yun; Kwon, Oh Hyeong
DOI
10.7317/pk.2024.48.4.426
발행일
2024-07
유형
Article
저널명
Polymer(Korea)
권
48
호
4
페이지
426 ~ 439