热敏壳聚糖/波洛沙姆原位凝胶眼给药环丙沙星的设计

J. Varshosaz, M. Tabbakhian, Z. Salmani
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引用次数: 127

摘要

为了提高环丙沙星滴眼液的低生物利用度和短眼停留时间,制备了壳聚糖/ Pluronic (poloxomer)药物溶液,从凝胶形成特性和药物释放行为方面确定了合适的组合物。制备了Pluronic (10-25% w/w)溶液与壳聚糖(0.1-0.3% w/w)不同分子量(Mw)的混合物。采用无膜溶出模型测定环丙沙星在人工撕裂液中8 h的释放度,并在272.4nm分光光度下对样品进行分析。用Cup & Bob粘度计测定了溶液在稀释或温度变化时的流变行为以及相变温度(PCT)。采用杯盘法琼脂扩散试验,对比市场上销售的环丙沙星含金黄色假单胞菌和金黄色葡萄球菌溶液,研究了各溶液在营养琼脂中的抑菌效果。该制剂由15% Pluronic和0.1%低分子量壳聚糖组成,具有最高的释药效率(46.61±0.41%)和可接受的平均释药时间(1.94±0.27 hr),是环丙沙星的理想眼用缓释制剂。这种原位凝胶通过Higuchi模型和Fickian机制释放药物。在非生理条件下(pH 4和25oC)为液体,在生理条件下(pH 7.4和37oC)转化为凝胶形式。该原位凝胶的PCT在稀释后没有变化,其对两种细菌生长的抑制范围明显大于市售的环丙沙星滴眼液。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing of a Thermosensitive Chitosan/Poloxamer In Situ Gel for OcularDelivery of Ciprofloxacin
To increase the low bioavailability and short ocular residence time of ciprofloxacin eye drops, aqueous solu- tions of drug in chitosan/ Pluronic (poloxamer) were prepared to identify suitable compositions with regard to gel forming properties and drug release behavior. Mixtures of solutions of Pluronic (10-25% w/w) with chitosan (0.1-0.3% w/w) of different molecular weights (Mw) were prepared. Ciprofloxacin release was determined using a membraneless dissolution model in artificial tear solution up to 8 hours and the samples were analyzed spectrophotometrically at 272.4nm. The rheological behavior of solutions in response to dilution or temperature changes and also the phase change temperature (PCT) were determined using a Cup & Bob viscometer. Antimicrobial effect of the solutions was studied in nutrient agar in comparison to marketed solutions of ciprofloxacin using Pseudomonas aueroginosa and Staphylococcus aureus by the agar diffusion test using the cup-plate technique. The formulation consisted of 15% Pluronic and 0.1% low Mw chitosan, with the highest release efficiency (46.61 ± 0.41%) and an acceptable mean release time (1.94 ± 0.27 hr), is suggested as a suitable ophthalmic preparation for sustained release of ciprofloxacin. This in situ gel released the drug by a Higuchi model and Fickian mechanism. It was liquid in non-physiologic conditions (pH 4 and 25oC) and transferred to the gel form upon physiologic conditions (pH 7.4 and 37oC). The PCT of this in situ gel did not change upon dilution and the zone of inhibition of the growth of both studied bacteria was significantly greater for it than the marketed eye drop of ciprofloxacin.
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