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将载有阿莫西林的有机蒙脱石掺入聚(酯 - 脲)脲纳米纤维中作为功能性组织工程支架。

Incorporation of amoxicillin-loaded organic montmorillonite into poly(ester-urethane) urea nanofibers as a functional tissue engineering scaffold.

作者信息

Yu Kui, Zhu Tonghe, Wu Yu, Zhou Xiangxiang, Yang Xingxing, Wang Juan, Fang Jun, El-Hamshary Hany, Al-Deyab Salem S, Mo Xiumei

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, People's Republic of China.

College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, People's Republic of China.

出版信息

Colloids Surf B Biointerfaces. 2017 Mar 1;151:314-323. doi: 10.1016/j.colsurfb.2016.12.034. Epub 2016 Dec 23.

Abstract

A dual drug-loaded system is a promising alternative for the sustained drug release system and skin tissue engineering. In this study, a natural sodium montmorillonite (Na-MMT) modified by cetyl trimethyl ammonium bromide (CTAB) was prepared as a carrier to load a model drug - amoxicillin (AMX), the modified organic montmorillonite (CTAB-OMMT) loaded with AMX was marked as AMX@CTAB-OMMT and was subsequently incorporated into poly(ester-urethane) urea (PEUU) and gelatin hybrid nanofibers via electrospinning, resulting in a new drug-loaded nanofibrous scaffold (AMX@CTAB-OMMT-PU75). The scanning electron microscopy (SEM) result showed that the fiber morphology did not change after the embedding of AMX@CTAB-OMMT. Meanwhile, there was a significant increase of mechanical properties for PEUU/Gelatin hybrid nanofibers (PU75) after the incorporation of AMX@CTAB-OMMT and CTAB-OMMT. Importantly, AMX@CTAB-OMMT-PU75 nanofibers showed a kind of sustained drug release property which could be justified reasonably for the controlled release of AMX depending on the various application. The sustained release property could be identified roughly by the result of antibacterial test. The anaphylactic reaction test proved that there was no any anaphylactic reaction or inflammation on the back of rat for AMX@CTAB-OMMT-PU75 nanofibers. Consequently, the prepared drug-loaded AMX@CTAB-OMMT-PU75 nanofibrous scaffold is a promising candidate for application in the skin tissue engineering field and controlled drug release system.

摘要

双载药系统是持续释药系统和皮肤组织工程领域一种很有前景的替代方案。在本研究中,制备了一种由十六烷基三甲基溴化铵(CTAB)改性的天然钠基蒙脱石(Na-MMT)作为载体来负载模型药物阿莫西林(AMX),负载有AMX的改性有机蒙脱石(CTAB-OMMT)标记为AMX@CTAB-OMMT,随后通过静电纺丝将其掺入聚(酯-脲)脲(PEUU)和明胶混合纳米纤维中,得到一种新型的载药纳米纤维支架(AMX@CTAB-OMMT-PU75)。扫描电子显微镜(SEM)结果表明,嵌入AMX@CTAB-OMMT后纤维形态未发生变化。同时,掺入AMX@CTAB-OMMT和CTAB-OMMT后,PEUU/明胶混合纳米纤维(PU75)的力学性能显著提高。重要的是,AMX@CTAB-OMMT-PU75纳米纤维表现出一种持续释药特性,这可以根据不同应用合理地用于AMX的控释。通过抗菌试验结果可以大致确定其持续释放特性。过敏反应试验证明,AMX@CTAB-OMMT-PU75纳米纤维对大鼠背部没有任何过敏反应或炎症。因此,制备的载药AMX@CTAB-OMMT-PU75纳米纤维支架是皮肤组织工程领域和控释药物系统应用中有前景的候选材料。

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