Kim Sung-Min, Yi Soon-Aei, Choi Seong-Ho, Kim Kwang-Mahn, Lee Yong-Keun
Department and Research Institute of Dental Biomaterials and Bioengineering, Yonsei University College of Dentistry, Seoul 120-752, South Korea.
Nanoscale Res Lett. 2012 Jan 17;7(1):78. doi: 10.1186/1556-276X-7-78.
The multi-sized porous β-tricalcium phosphate scaffolds were fabricated by freeze drying followed by slurry coating using a multi-sized porous sponge as a template. Then, gelatin was dip coated on the multi-sized porous β-tricalcium phosphate scaffolds under vacuum. The mechanical and biological properties of the fabricated scaffolds were evaluated and compared to the uniformly sized porous scaffolds and scaffolds that were not coated by gelatin. The compressive strength was tested by a universal testing machine, and the cell viability and differentiation behavior were measured using a cell counting kit and alkaline phosphatase activity using the MC3T3-E1 cells. In comparison, the gelatin-coated multi-sized porous β-tricalcium phosphate scaffold showed enhanced compressive strength. After 14 days, the multi-sized pores were shown to affect cell differentiation, and gelatin coatings were shown to affect the cell viability and differentiation. The results of this study demonstrated that the multi-sized porous β-tricalcium phosphate scaffold coated by gelatin enhanced the mechanical and biological strengths.
通过冷冻干燥,然后以多尺寸多孔海绵为模板进行浆料涂覆,制备了多尺寸多孔β-磷酸三钙支架。然后,在真空条件下将明胶浸涂在多尺寸多孔β-磷酸三钙支架上。对制备的支架的力学和生物学性能进行了评估,并与尺寸均匀的多孔支架和未涂覆明胶的支架进行了比较。通过万能试验机测试抗压强度,使用细胞计数试剂盒测量细胞活力和分化行为,并使用MC3T3-E1细胞测量碱性磷酸酶活性。相比之下,明胶涂覆的多尺寸多孔β-磷酸三钙支架显示出增强的抗压强度。14天后,多尺寸孔隙显示出影响细胞分化,明胶涂层显示出影响细胞活力和分化。本研究结果表明,明胶涂覆的多尺寸多孔β-磷酸三钙支架增强了力学和生物学强度。