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论文摘要

下颌骨髁突仿生复合支架的制备与表征

Synthesis and characteristics of integrated bionic mandibular condylar scaffold

作者:习伟宏 王真 朱洪水 李晓峰 熊远飞

Author:Xi Weihong, Wang Zhen, Zhu Hongshui, Li Xiaofeng, Xiong Yuanfei

收稿日期:          年卷(期)页码:2016,34(1):68-68-72

期刊名称:华西口腔医学杂志

Journal Name:West China Journal of Stomatology

关键字:下颌骨髁突, 骨组织工程, 仿生支架, 壳聚糖, 聚己酸内酯, 羟磷灰石,

Key words:mandibular condyle, bone tissue engineering, biomimetic scaffolds, chitosan,polycaprolactone, hy-droxyapatite,

基金项目:

江西省科技支撑计划项目(20132BBG70095)

中文摘要

目的 构建下颌骨髁突一体化壳聚糖(CS)-聚己酸内酯(PCL)-羟磷灰石(HA)(HA/PCL-CS)仿生复合支架,并探讨其在髁突组织工程中应用的可行性。方法 应用快速成形技术形成下颌骨髁突模具,利用溶液浇铸-冰沥方法制备下颌骨髁突一体化仿生复合支架模型,PCL︰CS按4︰1的比例混合,分别加入质量比为40%、50%、 60%、70%的HA,分为 a、b、c、d组,观察支架的微观形貌、孔隙率、红外光谱、 X线衍射、力学性能等特性。结果 支架与下颌骨髁突形状相吻合,外观黄白色,坚硬,分上层及下层两部分。扫描电子显微镜显示该复合支架具有三维网络空间结构,孔隙率70%~85%,孔径大小10~200 μm。红外光谱显示随着HA的含量减少,其波峰强度降低。X线衍射结果显示随着HA含量的增加,其衍射峰强度相对降低。HA含量为50%时支架具有适宜的抗拉伸强度及抗压、抗弯强度。结论 溶液浇铸-冰沥方法制得的支架具有良好的综合材料性能,有望成为一种髁突自体组织工程用支架材料。

英文摘要

Objective This study aims to construct a chitosan (CS)–polycaprolactone (PCL)–hydroxyapatite (HA) composite biomimetic scaffold to replace condyle and to explore the tissue engineering applications of condylar.Methods A resin mold of the mandibular condyle was prepared by using rapid prototyping techniques. A mandibular condylar integrated biomimetic scaffold model was prepared by solution casting-ice Lek. PCL and CS were mixed at a ratio of 4︰1. HA at quality ratios of 40%, 50%, 60%, and 70% was added to groups a, b, c, and d, respectively. The microscopic morphology, porosity, infrared spectra, X-ray diffraction pattern, and mechanical properties of the scaffold were observed.ResultsThe scaffold that includes both upper and lower parts displayed the same features (i.e., shape, yellow-white appearance, and hard texture) as the mandibular condyle. Scanning electron microscopy showed that the composite scaffold had a 3D network spatial structure, 70%–85% porosity, and 10–200 μm pore size. Infrared spectra showed that the peak intensity reduced with decreasing HA content. X-ray diffraction showed that the diffraction peak decreased with increasing HA content. Suitable tensile and compressive and flexural strength were discovered in the presence of 50% HA.Conclusion The scaffold prepared by solution casting-ice Lek shows favorable comprehensive features and is expected to replace human condylar.

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