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Controlled Release of DEET Loaded on Fibrous Mats from Electrospun PMDA/Cyclodextrin Polymer

机译:从静电纺丝PMDA /环糊精聚合物中控制释放到纤维垫上的DEET

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摘要

Electrospun beta-cyclodextrin (βCD)-based polymers can combine a high surface-to-volume ratio and a high loading/controlled-release-system potential. In this work, pyromellitic dianhydride (PMDA)/βCD-based nanosponge microfibers were used to study the capability to host a common insect repellent (N,N-diethyl-3-toluamide (DEET)) and to monitor its release over time. Fibrous samples characterized by an average fibrous diameter of 2.8 ± 0.8 µm were obtained and subsequently loaded with DEET, starting from a 10 g/L diethyl ether (DEET) solution. The loading capacity of the system was assessed via HPLC/UV–Vis analysis and resulted in 130 mg/g. The releasing behavior was followed by leaving fibrous DEET-loaded nanosponge samples in air at room temperature for a period of between 24 h and 2 weeks. The releasing rate and the amount were calculated by thermogravimetric analysis (TGA), and the release of the repellent was found to last for over 2 weeks. Eventually, both the chemical composition and sample morphology were proven to play a key role for the high sample loading capacity, determining the microfibers’ capability to be applied as an effective controlled-release system.
机译:基于静电纺丝β-环糊精(βCD)的聚合物可以兼具高的表面体积比和高的负载/控释系统潜力。在这项工作中,基于均苯四甲酸二酐(PMDA)/βCD的纳米海绵超细纤维用于研究容纳常见驱虫剂(N,N-diethyl-3-toluamide(DEET))的能力并监测其随时间的释放。获得纤维样品,其特征是平均纤维直径为2.8±0.8 µm,然后从10 g / L的二乙醚(DEET)溶液开始加载DEET。通过HPLC / UV-Vis分析评估了系统的负载能力,结果为130 mg / g。释放行为之后,将纤维状的装有DEET的纳米海绵样品在室温下于空气中放置24小时至2周。通过热重分析(TGA)计算释放速率和释放量,发现驱避剂的释放持续超过2周。最终,事实证明,化学成分和样品形态对高样品装载量都起着关键作用,这决定了微纤维被用作有效控释系统的能力。

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