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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >An investigation into the role of surfactants in controlling particle size of polymeric nanocapsules containing penicillin-G in double emulsion.
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An investigation into the role of surfactants in controlling particle size of polymeric nanocapsules containing penicillin-G in double emulsion.

机译:研究表面活性剂在控制双乳状液中含青霉素-G的聚合物纳米胶囊的粒径中的作用。

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摘要

Preparation, characterization and drug release behavior of loaded polybutyl adipate (PBA) nanocapsules with penicillin-G are described here. The nanocapsules were produced using a double emulsion solvent evaporation technique, using dichloromethane as an organic solvent and Tween and Span as surfactants. In this process, a mixture of glycerin and water was used instead of the traditional stabilizer system in the preparation of double emulsion. The influence of surfactants on the property of nanocapsules was discussed in detail. The effects of Span and Tween to modify the size of the nanocapsules were different. The mean diameters of penicillin-G loaded nanocapsules ranged from 75 nm to 638 nm and were dependent on the types and content of the surfactants. The encapsulation efficiencies and drug release rates were also affected by the surfactants in the preparation process. It was found that the encapsulation efficiencies of penicillin-G enhanced up to 76.8% with the increase in Span and Tween contents. Increasing Span concentration as an inner surfactant results in the remaining of penicillin-G mostly sealed in the inner aqueous phase and increasing Tween concentration as the outer surfactant enhanced the viscosity of external water phase, which decreased the rate of penicillin-G diffusion from the inner water phase to the outer water phase. Interestingly, the in vitro drug release profiles exhibited a significant burst release, followed by a lag phase of little or no release. Penicillin-G loaded nanocapsules with low concentrations of both surfactants tend to have higher burst release. Under optimum formulation conditions, the encapsulation of penicillin-G can reach up to 60% and the burst release can also fall below 45%. In this case, the fact that the nanocapsules have only 130 nm diameter will be important.
机译:本文描述了带有青霉素-G的聚己二酸丁二酯(PBA)纳米胶囊的制备,表征和药物释放行为。使用双乳液溶剂蒸发技术,使用二氯甲烷作为有机溶剂,使用吐温和司盘作为表面活性剂来生产纳米胶囊。在此过程中,在制备双乳化液时,使用甘油和水的混合物代替了传统的稳定剂系统。详细讨论了表面活性剂对纳米胶囊性能的影响。 Span和Tween改变纳米胶囊大小的效果是不同的。加载青霉素-G的纳米胶囊的平均直径为75nm至638nm,并且取决于表面活性剂的类型和含量。在制备过程中,表面活性剂也影响包封效率和药物释放速率。发现随着跨度和吐温含量的增加,青霉素-G的包封率提高了高达76.8%。增大Span浓度作为内部表面活性剂会导致大部分青霉素-G残留在内部水相中,而吐温浓度则随着外部表面活性剂增强外部水相的粘度而增加,从而降低了Penicillin-G从内部扩散的速率水相到外部水相。有趣的是,体外药物释放曲线显示出明显的爆发释放,随后是很少或没有释放的滞后阶段。具有低浓度的两种表面活性剂的青霉素-G负载的纳米胶囊往往具有较高的爆发释放。在最佳配方条件下,青霉素-G的包封率可达到60%,并且突释也可降至45%以下。在这种情况下,纳米胶囊仅具有130nm直径的事实将是重要的。

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