Halloysite nanotubes loaded with nano silver for the sustained-release of antibacterial polymer nanocomposite scaffolds
来源期刊:JOURNAL OF MATERIALS SCIENCE TECHNOLOG2020年第11期
论文作者:Wang Guo Wei Liu Li Xu Pei Feng Yanru Zhang Wenjing Yang Cijun Shuai
文章页码:237 - 247
摘 要:It is challenging for antibacterial polymer scaffolds to achieve the drug sustained-release through directly coating or blending. In this work, halloysite nanotubes(HNTs), a natural aluminosilicate nanotube,were utilized as a nano container to load nano silver(Ag) into the lumen through vacuum negativepressure suction & injection and thermal decomposition of silver acetate. Then, the nano Ag loaded HNTs(HNTs@Ag) were introduced to poly-l-lactic acidide)(PLLA) scaffolds prepared by additive manufacturing for the sustained-release of Ag+. Acting like a ’shield’, the tube walls of HNTs not only retarded the erosion of external aqueous solution on internal nano Ag to generate Ag+ but also postponed the generated Ag+ to diffuse outward. The results indicated the PLLA-HNTs@Ag nanocomposite scaffolds achieved a sustained-release of Ag+ over 28 days without obvious initial burst release. Moreover, the scaffolds exhibited a long-lasting antibacterial property without compromising the cytocompatibility. Besides,the degradation properties, biomineralization ability and mechanical properties of the scaffolds were increased. This study suggests the potential application of inorganic nanotubes as drug carrier for the sustained-release of functional polymer nanocomposite scaffolds.
Wang Guo1,Wei Liu2,Li Xu3,Pei Feng1,Yanru Zhang3,Wenjing Yang1,Cijun Shuai1,4,5
1. State Key Laboratory of High Performance Complex Manufacturing, College of Mechanical and Electrical Engineering, Central South University2. Department of Metabolism and Endocrinology, The Second Xiangya Hospital, Central South University3. School of Basic Medical Science, Central South University4. Institute of Bioadditive Manufacturing, Jiangxi University of Science and Technology5. Shenzhen Institute of Information Technology
摘 要:It is challenging for antibacterial polymer scaffolds to achieve the drug sustained-release through directly coating or blending. In this work, halloysite nanotubes(HNTs), a natural aluminosilicate nanotube,were utilized as a nano container to load nano silver(Ag) into the lumen through vacuum negativepressure suction & injection and thermal decomposition of silver acetate. Then, the nano Ag loaded HNTs(HNTs@Ag) were introduced to poly-l-lactic acidide)(PLLA) scaffolds prepared by additive manufacturing for the sustained-release of Ag+. Acting like a ’shield’, the tube walls of HNTs not only retarded the erosion of external aqueous solution on internal nano Ag to generate Ag+ but also postponed the generated Ag+ to diffuse outward. The results indicated the PLLA-HNTs@Ag nanocomposite scaffolds achieved a sustained-release of Ag+ over 28 days without obvious initial burst release. Moreover, the scaffolds exhibited a long-lasting antibacterial property without compromising the cytocompatibility. Besides,the degradation properties, biomineralization ability and mechanical properties of the scaffolds were increased. This study suggests the potential application of inorganic nanotubes as drug carrier for the sustained-release of functional polymer nanocomposite scaffolds.
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