3D Printing of Bone-Mimetic Scaffold Composed of Gelatin/beta-Tri-Calcium Phosphate for Bone Tissue Engineering

  • Jeong, Jae Eun; 
  • Park, Shin Young; 
  • Shin, Ji Youn; 
  • Seok, Ji Min; 
  • Byun, June Ho; 
  • 외 5명
Citations

WEB OF SCIENCE

38
Citations

SCOPUS

41

초록

3D printed scaffolds composed of gelatin and beta-tri-calcium phosphate (beta-TCP) as a biomimetic bone material are fabricated, thereby providing an environment appropriate for bone regeneration. The Ca2+ in beta-TCP and COO- in gelatin form a stable electrostatic interaction, and the composite scaffold shows suitable rheological properties for bioprinting. The gelatin/beta-TCP scaffold is crosslinked with glutaraldehyde vapor and unreacted aldehyde groups which can cause toxicity to cells is removed by a glycine washing. The stable binding of the hydrogel is revealed as a result of FTIR and degradation rate. It is confirmed that the composite scaffold has compressive strength similar to that of cancellous bone and 60 wt% beta-TCP groups containing 40 wt% gelatin have good cellular activity with preosteoblasts. Also, in the animal experiments, the gelatin/beta-TCP scaffold confirms to induce bone formation without any inflammatory responses. This study suggests that these fabricated scaffolds can serve as a potential bone substitute for bone regeneration.

키워드

3D bioprinted; β ‐ tri‐ calcium phosphate; biomimetic; bone regeneration; gelatin; CHITOSAN; DEGRADATION; FABRICATION; SIZE; TCP; DIFFERENTIATION; HYDROXYAPATITE; PROLIFERATION; NANOFIBERS; BEHAVIOR
제목
3D Printing of Bone-Mimetic Scaffold Composed of Gelatin/beta-Tri-Calcium Phosphate for Bone Tissue Engineering
저자
Jeong, Jae Eun; Park, Shin Young; Shin, Ji Youn; Seok, Ji Min; Byun, June Ho; Oh, Se Heang; Kim, Wan Doo; Lee, Jun Hee; Park, Won Ho; Park, Su A.
DOI
10.1002/mabi.202000256
발행일
2020-12
유형
Article
저널명
Macromolecular Bioscience
권
20
호
12