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硝酸益康唑/环糊精包合物的抗真菌活性:pH 值的影响及包合物聚集态的形成。

Antifungal activity of econazole nitrate/cyclodextrin complex: Effect of pH and formation of complex aggregates.

机构信息

Faculty of Pharmaceutical Sciences, Chulalongkorn University, 254 Phyathai Rd., Bangkok 10330, Thailand.

Faculty of Pharmaceutical Sciences, University of Iceland, Hofsvallagata 53, IS-107 Reykjavik, Iceland.

出版信息

Int J Pharm. 2020 Jan 25;574:118896. doi: 10.1016/j.ijpharm.2019.118896. Epub 2019 Nov 22.

Abstract

Econazole nitrate (ECN) is a weakly basic drug with very low aqueous solubility that hampers its permeation through biological membranes and results in low ECN bioavailability. Formation of drug/cyclodextrin (drug/CD) inclusion complexes is a formulation technology that can be applied to enhance drug solubility in aqueous media. The aim of this study was to determine the effect of CD complexation and pH adjustments on the ECN solubility. The ECN pH-solubility and ECN/CD phase-solubility profiles were determined. The solubility of ECN in aqueous acidic solutions containing α-cyclodextrin (αCD) was relatively high and much higher than in aqueous γ-cyclodextrin (γCD) solutions under same conditions. The complexation efficiency of the ECN/CD complex was relatively low for the unionized drug. Formation of ECN/CD inclusion complex was verified by proton nuclear magnetic resonance spectroscopy. Formation of ECN/CD complexes enhanced the drug stability during autoclaving. γCD complexes self-assembled to form nano- and microparticles whereas αCD complexes had negligible tendency to self-assemble. Formation of CD complex nano- and microparticles was investigated by dynamic light scattering and by drug permeation through semipermeable membranes of different molecular weight cut-off. The largest aggregate fraction was observed for the unionized ECN in aqueous pH 7.5 solution containing high CD concentration, that is 10% (w/v) CD. It was shown that in acidic solutions ECN/αCD can enhance the antifungal activity to filamentous fungi. This was associated with the increased ECN solubility and increase of readily available ECN molecules in aqueous αCD solutions.

摘要

硝酸益康唑(ECN)是一种弱碱性药物,水溶性极低,这阻碍了它通过生物膜的渗透,导致 ECN 的生物利用度低。形成药物/环糊精(药物/CD)包合物是一种制剂技术,可用于提高药物在水介质中的溶解度。本研究的目的是确定 CD 络合和 pH 值调整对 ECN 溶解度的影响。测定了 ECN 的 pH-溶解度和 ECN/CD 相溶解度曲线。在相同条件下,含 α-环糊精(αCD)的酸性水溶液中 ECN 的溶解度相对较高,比含 γ-环糊精(γCD)的水溶液高得多。未离解药物的 ECN/CD 络合效率相对较低。质子核磁共振波谱证实了 ECN/CD 包合物的形成。形成 ECN/CD 包合物可增强药物在高压灭菌过程中的稳定性。γCD 包合物自组装形成纳米和微颗粒,而 αCD 包合物几乎没有自组装的趋势。通过动态光散射和药物通过不同分子量截止的半透膜渗透来研究 CD 包合物纳米和微颗粒的形成。在含有高 CD 浓度的 pH 7.5 水性溶液中,未离解的 ECN 观察到最大的聚集分数,即 10%(w/v)CD。结果表明,在酸性溶液中,ECN/αCD 可以增强抗丝状真菌的抗真菌活性。这与 ECN 在水性 αCD 溶液中的溶解度增加以及更多的 ECN 分子易于获得有关。

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