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同轴骨组织工程支架降解特性研究
引用本文:张钟毓,许燕,张旭婧,海几哲. 同轴骨组织工程支架降解特性研究[J]. 机械设计与制造, 2021, 0(2): 5-9. DOI: 10.3969/j.issn.1001-3997.2021.02.002
作者姓名:张钟毓  许燕  张旭婧  海几哲
作者单位:新疆大学机械工程学院,新疆 乌鲁木齐 830046;新疆大学机械工程学院,新疆 乌鲁木齐 830046;西安交通大学机械工程学院,陕西 西安 710049
基金项目:新疆维吾尔自治区科学基金—氧化石墨烯/羟基磷灰石载药抗骨结核组织工程梯度材料制备及性能研究
摘    要:为使抗骨结核药物在病灶区长期维持一定浓度,并促进术后缺损处的骨修复,应用羟基磷灰石、聚乙烯醇、丝素蛋白作为药物载体材料,结合自制机械式挤出装置制备同轴梯度骨组织工程支架.为使骨组织工程支架顺利植入体内,且保证支架负载的药物持续缓慢地释放,现对药物载体材料骨组织工程支架降解性能进行测试.研究发现降解10周后,无丝素蛋白的...

关 键 词:骨组织工程支架  同轴  丝素蛋白  降解速率  孔隙率

Degradation Characteristics of Coaxial Bone Tissue Engineering Scaffold
ZHANG Zhong-yu,XU Yan,ZHANG Xu-jing,HAI Ji-zhe. Degradation Characteristics of Coaxial Bone Tissue Engineering Scaffold[J]. Machinery Design & Manufacture, 2021, 0(2): 5-9. DOI: 10.3969/j.issn.1001-3997.2021.02.002
Authors:ZHANG Zhong-yu  XU Yan  ZHANG Xu-jing  HAI Ji-zhe
Affiliation:(Mechanical Engineering Department,Xinjiang University,Xinjiang Urumqi 830046,China;Mechanical Engineering Department,Xi’an Jiaotong University,Shaanxi Xi’an 710049,China)
Abstract:In order to maintain a certain concentration of anti-tuberculosis drugs in the lesion area for long time and promote bone repair in the defect site,hydroxyapatite,polyvinyl alcohol and silk fibroin are used as drug carrier materials.A coaxial gradient bone tissue engineering scaffold was prepared through self-made mechanical extrusion device.In order to allow the bone tissue engineering scaffold implant into the body smoothly and to ensure the sustained release of the drug loaded by the scaffold,the degradation performance of the drug carrier material bone tissue engineering scaffold shoulated.It was found that after 10 weeks of degradation,the degradation rate of the silk fibroin-free uniaxial scaffold was 40.14%,and the degradation rate of the coaxial bone tissue engineering scaffold was 28.15%,The degradation rate was obviously slowed,which provided the possibility of long-term drug release.After 10 weeks of degradation,the pH of the degradation solution was 6.8.The solution was weakly acidic.The high-power scanning electron micrograph shows that the micropore structure of the coaxial bone tissue engineering scaffold is evenly distributed.With the prolongation of the degradation time the pore size increases,which can provide space for new bone growth.The mechanical test results show that the compressive strength of the coaxial bone tissue engineering scaffold is 12.61MPa after 10 weeks of degradation,which basically meets the requirements of human cancellous bone bearing.
Keywords:Bone tissue Engineering Scaffold  Coaxial  Silk Fibroin  Degradation Rate  Porosity
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