Spherulitic morphology of pure poly lactic acid (PLLA) PLLA have investigated after thermal annealing. The morphology of spherulite of pure poly lactic acid (PLLA) PLLA have investigated after thermal annealing. The e...Spherulitic morphology of pure poly lactic acid (PLLA) PLLA have investigated after thermal annealing. The morphology of spherulite of pure poly lactic acid (PLLA) PLLA have investigated after thermal annealing. The effect of both annealing temperature and crystallization temperature on the formation of cracks was described by polarized optical microscope (POM). Non banded spherulite (fibrils) with cracks was detected in PLLA film after annealing at 160°C (180 min.) and isothermal crystallization temperatures at 140°C and 150°C. With increasing temperature after annealing treatment the size of spherulite is increased and more cracks are formed. The maximum growth rate of spherulites was found at 130°C. The physical ageing was carried out by annealing the PLLA sample at room temperature for several annealing time (ta) from 0 h to 720 h. The enthalpy relaxation has been studied by differential scanning calorimetry (DSC) through analysis of the endothermic peak of glass transition temperature, which increased and shifted towards higher temperature as the annealing time increased.展开更多
种子细胞、支架材料及二者的相互作用是骨组织工程需要解决的三大问题。骨髓间充质干细胞(Mesenchym al stem cells,MSCs)是一种很有潜力的种子细胞,但挑选什么样的MSCs作为种子细胞目前研究尚少;而材料方面,研制力学性能和生物相容性...种子细胞、支架材料及二者的相互作用是骨组织工程需要解决的三大问题。骨髓间充质干细胞(Mesenchym al stem cells,MSCs)是一种很有潜力的种子细胞,但挑选什么样的MSCs作为种子细胞目前研究尚少;而材料方面,研制力学性能和生物相容性均好的可降解多孔支架材料一直是研究者努力的方向。为了挑选处于最佳时期的种子细胞以及最适比例的β- TCP/PL L A多孔支架材料,我们观察并检测了大鼠MSCs(r MSCs)成骨诱导后不同时期细胞的形态及功能,发现r MSCs成骨诱导后10 d左右开始进入增殖期,14 d左右进入基质合成期,2 0 d左右进入矿化结节期(但三者不是截然分开的) ,从而根据实验目的挑选出能作为骨组织工程用的最佳细胞。将该时期的种子细胞与不同比例的β- TCP/PL L A多孔支架材料复合后,通过荧光显微镜、扫描电镜以及MTT等方法初步比较了不同比例的材料对细胞生长状况的影响,结果显示不同比例的材料均具有一定的生物相容性,细胞生长良好。但以β- TCP/PL L A=2∶1的材料最好,对细胞的生长影响最小。展开更多
To develop a novel degradable poly (L-lactic acid)/β-tricalcium phosphate (PLLA/β-TCP) bioactive materials for bone tissueengineering, β-TCP powder was produced by a new wet process. Porous scaffolds were prepared ...To develop a novel degradable poly (L-lactic acid)/β-tricalcium phosphate (PLLA/β-TCP) bioactive materials for bone tissueengineering, β-TCP powder was produced by a new wet process. Porous scaffolds were prepared by three steps, i.e. solventcasting, compression molding and leaching stage. Factors influencing the compressive strength and the degradation behaviorof the porous scaffold, e.g. weight fraction of pore forming agent-sodium chloride (NaCl), weight ratio of PLLA: β-TCP,the particle size of β-TCP and the porosity, were discussed in details. Rat marrow stromal cells (RMSC) were incorporatedinto the composite by tissue engineering approach. Biological and osteogenesis potential of the composite scaffold weredetermined with MTT assay, alkaline phosphatase (ALP) activity and bone osteocalcin (OCN) content evaluation. Resultsshow that PLLA/β-TCP bioactive porous scaffold has good mechanical and pore structure with adjustable compressive strengthneeded for surgery. RMSCs seeding on porous PLLA/β-TCP composite behaves good seeding efficacy, biocompatibility andosteoinductive potential. Osteoprogenitor cells could well penetrate into the material matrix and begin cell proliferation andosteogenic differentiation. Osseous matrix could be formed on the surface of the composite after culturing in vitro. It isexpected that the PLLA/β-TCP porous composites are promising scaffolds for bone tissue engineering in prosthesis surgery.展开更多
文摘Spherulitic morphology of pure poly lactic acid (PLLA) PLLA have investigated after thermal annealing. The morphology of spherulite of pure poly lactic acid (PLLA) PLLA have investigated after thermal annealing. The effect of both annealing temperature and crystallization temperature on the formation of cracks was described by polarized optical microscope (POM). Non banded spherulite (fibrils) with cracks was detected in PLLA film after annealing at 160°C (180 min.) and isothermal crystallization temperatures at 140°C and 150°C. With increasing temperature after annealing treatment the size of spherulite is increased and more cracks are formed. The maximum growth rate of spherulites was found at 130°C. The physical ageing was carried out by annealing the PLLA sample at room temperature for several annealing time (ta) from 0 h to 720 h. The enthalpy relaxation has been studied by differential scanning calorimetry (DSC) through analysis of the endothermic peak of glass transition temperature, which increased and shifted towards higher temperature as the annealing time increased.
文摘种子细胞、支架材料及二者的相互作用是骨组织工程需要解决的三大问题。骨髓间充质干细胞(Mesenchym al stem cells,MSCs)是一种很有潜力的种子细胞,但挑选什么样的MSCs作为种子细胞目前研究尚少;而材料方面,研制力学性能和生物相容性均好的可降解多孔支架材料一直是研究者努力的方向。为了挑选处于最佳时期的种子细胞以及最适比例的β- TCP/PL L A多孔支架材料,我们观察并检测了大鼠MSCs(r MSCs)成骨诱导后不同时期细胞的形态及功能,发现r MSCs成骨诱导后10 d左右开始进入增殖期,14 d左右进入基质合成期,2 0 d左右进入矿化结节期(但三者不是截然分开的) ,从而根据实验目的挑选出能作为骨组织工程用的最佳细胞。将该时期的种子细胞与不同比例的β- TCP/PL L A多孔支架材料复合后,通过荧光显微镜、扫描电镜以及MTT等方法初步比较了不同比例的材料对细胞生长状况的影响,结果显示不同比例的材料均具有一定的生物相容性,细胞生长良好。但以β- TCP/PL L A=2∶1的材料最好,对细胞的生长影响最小。
基金This study was financially supported by 863 Hj-Tech ResearchDevelopment Program of China(2002AA326080)The Fund for Youth Teacher of Education Mlinistry of China(2002123).
文摘To develop a novel degradable poly (L-lactic acid)/β-tricalcium phosphate (PLLA/β-TCP) bioactive materials for bone tissueengineering, β-TCP powder was produced by a new wet process. Porous scaffolds were prepared by three steps, i.e. solventcasting, compression molding and leaching stage. Factors influencing the compressive strength and the degradation behaviorof the porous scaffold, e.g. weight fraction of pore forming agent-sodium chloride (NaCl), weight ratio of PLLA: β-TCP,the particle size of β-TCP and the porosity, were discussed in details. Rat marrow stromal cells (RMSC) were incorporatedinto the composite by tissue engineering approach. Biological and osteogenesis potential of the composite scaffold weredetermined with MTT assay, alkaline phosphatase (ALP) activity and bone osteocalcin (OCN) content evaluation. Resultsshow that PLLA/β-TCP bioactive porous scaffold has good mechanical and pore structure with adjustable compressive strengthneeded for surgery. RMSCs seeding on porous PLLA/β-TCP composite behaves good seeding efficacy, biocompatibility andosteoinductive potential. Osteoprogenitor cells could well penetrate into the material matrix and begin cell proliferation andosteogenic differentiation. Osseous matrix could be formed on the surface of the composite after culturing in vitro. It isexpected that the PLLA/β-TCP porous composites are promising scaffolds for bone tissue engineering in prosthesis surgery.