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生物衍生骨-WO-1药物缓释系统结构特征和体外药物释放的研究
引用本文:任永信,杨志明,解慧琪,秦廷武,李秀群.生物衍生骨-WO-1药物缓释系统结构特征和体外药物释放的研究[J].中国修复重建外科杂志,2006,20(10):1044-1046.
作者姓名:任永信  杨志明  解慧琪  秦廷武  李秀群
作者单位:1. 南京医科大学第一附属医院骨科
2. 四川大学华西医院,生物治疗国家重点实验室·干细胞与组织工程研究室,成都,610041
基金项目:国家高技术研究发展计划(863计划)
摘    要:目的制备生物衍生骨-WO-1药物缓释系统,对其理化性质和WO-1的体外释放情况进行评价。方法采用PluronicF-127负载WO-1制作生物衍生骨-WO-1药物缓释系统。扫描电镜观察生物衍生骨及生物衍生骨-WO-1药物缓释系统形貌特征,测量其孔径和孔隙率;应用X线衍射分析仪和X线能量散射分析仪对其成分进行分析;应用高效液相色谱分析仪评价WO-1在双蒸水中1~7d的药物释放情况。结果生物衍生骨具有天然的网状孔隙结构,孔隙间互相连通;生物衍生骨-WO-1药物缓释系统也具有互相连通的网状孔隙结构,孔径和孔隙率分别为522.43±16.75μm和55%,低于生物衍生骨的孔径623.67±12.31μm和孔隙率75%。生物衍生骨-WO-1药物缓释系统主要成分为羟基磷灰石,钙/磷比为1.54;生物衍生骨钙/磷比为1.77。药物释放实验生物衍生骨-WO-1药物缓释系统1d表现为爆发释放,溶液浓度为4.6μg/ml,此后可连续释放6d,浓度维持在0.2~0.8μg/ml。结论生物衍生骨-WO-1药物缓释系统可望成为一种更佳的骨组织工程支架材料,有待于进一步进行体内研究。

关 键 词:组织工程骨  生物衍生骨  药物缓释
修稿时间:2006年1月20日

STUDIES OF PREPARATION, MORPHOLOGY AND IN VITRO RELEASE ON BIO-DERIVED MATERIAL-WO-1 DELIVERY SYSTEM
REN Yongxin,YANG Zhiming,XIE Huiqi,et al..STUDIES OF PREPARATION, MORPHOLOGY AND IN VITRO RELEASE ON BIO-DERIVED MATERIAL-WO-1 DELIVERY SYSTEM[J].Chinese Journal of Reparative and Reconstructive Surgery,2006,20(10):1044-1046.
Authors:REN Yongxin  YANG Zhiming  XIE Huiqi  
Institution:Division of Stem Cell and Tissue Engineering, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu Sichuan, 610041, PR China.
Abstract:OBJECTIVE: To study the potential of a bio-derived material combined with Pluronic F-127 in vitro as a delivery vehicle for WO-1 in the bone repair therapy. METHODS: Bio-derived materials were fabricated and loaded with WO-1 by Pluronic F-127. Micromorphology and porosity were detected by the scanning electron microscope and the digital image analysis system respectively. The WO-1 release from the system in vitro was studied by the high performance liquid chromatography. RESULTS: Bio-derived material-WO-1 drug delivery systems were created with the interconnected pore network. The porosity and pore size of the system were 55% and 522.43 +/- 16.75 microm respectively, compared with those of bio-derived materials, which were 75% and 623. 67 +/- 12.31 microm respectively. And the main composition of the system was HA. The in vitro release kinetics of WO-1 revealed that an effective therapeutic concentration (0.2-0.8 microg/ml) of WO-1 was maintained for 6 days after a high initial burst release. Conclusion The bio-derived material-WO-1 drug delivery system can be used in the bone repair therapy. However, the in vivo study on it is still needed.
Keywords:WO-1
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