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Effects of three-dimensionally printed polycaprolactone/β-tricalcium phosphate scaffold on osteogenic differentiation of adipose tissue- and bone marrow-derived stem cellsopen access

Authors
Park, HannaraKim, Jin SooOh, Eun JungKim, Tae JungKim, Hyun MiShim, Jin HyungYoon, Won SooHuh, Jung BoMoon, Sung HwanKang, Seong SooChung, Ho Yun
Issue Date
Sep-2018
Publisher
대한두개안면성형외과학회
Keywords
Polycaprolactone; Tricalcium phosphate; Adipose tissue; Bone marrow; Stem cells; Cell differentiation; Mesenchymal stromal cells; Tissue engineering
Citation
Archives of Craniofacial Surgery, v.19, no.3, pp 181 - 189
Pages
9
Journal Title
Archives of Craniofacial Surgery
Volume
19
Number
3
Start Page
181
End Page
189
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/69863
DOI
10.7181/acfs.2018.01879
ISSN
2287-1152
2287-5603
Abstract
Background: Autogenous bone grafts have several limitations including donor-site problems and insufficient bone volume. To address these limitations, research on bone regeneration is being conducted actively. In this study, we investigate the effects of a three-dimensionally (3D) printed polycaprolactone (PCL)/tricalcium phosphate (TCP) scaffold on the osteogenic differentiation potential of adipose tissue-derived stem cells (ADSCs) and bone marrow-derived stem cells (BMSCs). Methods: We investigated the extent of osteogenic differentiation on the first and tenth day and fourth week after cell culture. Cytotoxicity of the 3D printed PCL/β-TCP scaffold was evaluated by 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium assay, prior to osteogenic differentiation analysis. ADSCs and BMSCs were divided into three groups: C, only cultured cells; M, cells cultured in the 3D printed PCL/β-TCP scaffold; D, cells cultured in the 3D printed PCL/β-TCP scaffold with a bone differentiation medium. Alkaline phosphatase (ALP) activity assay, von Kossa staining, reverse transcription-polymerase chain reaction (RT-PCR), and Western blotting were performed for comparative analysis. Results: ALP assay and von Kossa staining revealed that group M had higher levels of osteogenic differentiation compared to group C. RT-PCR showed that gene expression was higher in group M than in group C, indicating that, compared to group C, osteogenic differentiation was more extensive in group M. Expression levels of proteins involved in ossification were higher in group M, as per the Western blotting results. Conclusion: Osteogenic differentiation was increased in mesenchymal stromal cells (MSCs) cultured in the 3D printed PCL/TCP scaffold compared to the control group. Osteogenic differentiation activity of MSCs cultured in the 3D printed PCL/TCP scaffold was lower than that of cells cultured on the scaffold in bone differentiation medium. Collectively, these results indicate that the 3D printed PCL/TCP scaffold promoted osteogenic differentiation of MSCs and may be widely used for bone tissue engineering.
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Moon, Sung-Hwan
대학원 (동물생명공학과.)
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