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Preparation and biological activity of chitosan fibers reinforced PLLA/HA-CaSiO3composites

机译:壳聚糖纤维增强PLLA / HA-CaSiO3复合材料的制备及生物活性

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Chitosan fibers(CSf) andCaSiO3 were incorporated into a poly (L-lactic acid)/hydroxyapatite (PLLA/HA) matrix as reinforcements to prepare scaffold composites with adequate strength and high porosity for bone tissue engineering combined with emulsion freeze drying technique. The structural morphology of the composites was observed by scanning electron microscope (SEM). The porosity was tested by liquid substitute method. The mechanical property was measured. The effects of addition of CSf and CaSiO3 on composites were also discussed. Simulated body fluid (SBF) experiments were conducted to assess the bioactivity of the composites. The chemical components of resultants on surfaces after the immersion in SBF were analyzed by fourier transform infrared spectroscopy (FTIR). The results show that the composites with high connectivity have pore sizes of 100~250μm, a porosity of 60%~80%, compressive strength of 3.5~8.0MPa. In the SBF tests, Chitosan fiber reinforced PLLA/HA-CaSiO3 composite degraded stably, meanwhile, the formation of a layer of bone-like apatite on the surfaces of the samples indicated a good bioactivity. Studies suggest the feasibility of using CSf reinforced PLLA /HA-CaSiO3 composite for bone tissue engineering.
机译:将壳聚糖纤维(CSf)和CaSiO3掺入聚(L-乳酸)/羟基磷灰石(PLLA / HA)基体中作为增强剂,制备出具有足够强度和高孔隙率的骨架复合材料,用于骨组织工程结合乳液冷冻干燥技术。通过扫描电子显微镜(SEM)观察复合材料的结构形态。用液体替代方法测试孔隙率。测量机械性能。还讨论了添加CSf和CaSiO3对复合材料的影响。进行了模拟体液(SBF)实验以评估复合材料的生物活性。通过傅立叶变换红外光谱(FTIR)分析了SBF浸入后表面上产物的化学成分。结果表明,具有高连通性的复合材料的孔径为100〜250μm,孔隙率为60%〜80%,抗压强度为3.5〜8.0MPa。在SBF试验中,壳聚糖纤维增强的PLLA / HA-CaSiO3复合材料稳定降解,同时,在样品表面形成一层骨状磷灰石表明其具有良好的生物活性。研究表明,将CSf增强PLLA / HA-CaSiO3复合材料用于骨组织工程的可行性。

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