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二元和三元环糊精与硝酸益康唑在溶液和固态中的比较分析。

Comparative analysis of binary and ternary cyclodextrin complexes with econazole nitrate in solution and in solid state.

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmacy and Biochemistry, University of Zagreb, A. Kovačića 1, Zagreb 10000 HR, Croatia.

Department of Pharmaceutical Sciences, Faculty of Pharmacy, University of Florence, via Schiff 6, Sesto Fiorentino 50019, Florence, Italy.

出版信息

J Pharm Biomed Anal. 2014 Mar;91:81-91. doi: 10.1016/j.jpba.2013.12.029. Epub 2014 Jan 2.

Abstract

The aim of this work was to investigate in-depth interactions of econazole nitrate (ECN), a very poorly water-soluble antifungal agent, with different β-cyclodextrin (βCD) derivatives, and to evaluate the potential synergistic effect of suitable third compounds (l-amino acids, citric acid, hydrophilic polymers). Phase-solubility studies showed the formation of equimolar complexes with all tested CDs, and indicated sulfobutyl-βCD (SBEβCD) as the best complexing and solubilizing agent for ECN, followed by hydroxypropyl-βCD (HPβCD). 1D and 2D (1)H NMR studies demonstrated the actual formation of inclusion complexes of 1:1mol:mol stoichiometry, and gave insight about different inclusion modes of ECN molecule into the CD cavity, simultaneously existing in solution. Among the different tested ternary systems, only those with citric acid (CA) enabled a significant increase in complexing and solubilizing ability towards the drug with respect to the binary ones, indicating a synergistic effect between SBEβCD and CA and the formation of highly soluble ternary complexes, which was further supported by NMR studies. Solid equimolar binary and ternary systems of ECN, CDs and CA were prepared by co-grinding in high energy vibrational micro-mills and characterized by differential scanning calorimetry, X-ray powder diffractometry and in vitro dissolution studies. In the case of binary systems, total sample amorphization, indicative of strong solid state interactions and possible inclusion complex formation, was obtained only for co-ground products with HPβCD and SBEβCD, but they both presented a dissolution profile typical of a supersaturated system, with a limited improvement of drug dissolution efficiency (8.3 and 22.13 times, respectively). On the contrary, the ternary ECN/SBEβCD/CA co-ground product presented superior dissolution properties, increasing the ECN dissolution efficiency of 66.62 times, clearly having the best potential for further development of a novel ECN delivery system for efficient delivery of the drug to the oral cavity, thus improving the therapy of oral candidosis.

摘要

本工作旨在深入研究硝酸益康唑(ECN),一种水溶性很差的抗真菌药物,与不同β-环糊精(βCD)衍生物的相互作用,并评估合适的第三化合物(L-氨基酸、柠檬酸、亲水性聚合物)的潜在协同效应。相溶解度研究表明,与所有测试的 CD 均形成等摩尔配合物,并表明磺丁基-β-环糊精(SBEβCD)是 ECN 最佳的包合和增溶试剂,其次是羟丙基-β-环糊精(HPβCD)。1D 和 2D(1)H NMR 研究表明,实际形成了 1:1mol:mol 化学计量比的包合配合物,并深入了解了 ECN 分子进入 CD 腔的不同包合模式,同时存在于溶液中。在所测试的不同三元体系中,只有含有柠檬酸(CA)的体系才能显著提高药物的包合和增溶能力,相对于二元体系而言,这表明 SBEβCD 和 CA 之间存在协同作用,形成了高溶解度的三元配合物,这进一步得到了 NMR 研究的支持。通过共研磨高能振动微磨机制备了 ECN、CD 和 CA 的等摩尔二元和三元体系,并通过差示扫描量热法、X 射线粉末衍射法和体外溶解研究对其进行了表征。在二元体系的情况下,仅对与 HPβCD 和 SBEβCD 共研磨的产物获得了总样品非晶化,这表明存在强的固态相互作用和可能的包合配合物形成,但它们都呈现出过饱和系统的溶解曲线,药物溶解效率的提高有限(分别为 8.3 和 22.13 倍)。相反,三元 ECN/SBEβCD/CA 共研磨产物表现出优异的溶解性能,使 ECN 的溶解效率提高了 66.62 倍,显然具有进一步开发新型 ECN 传递系统的最佳潜力,可将药物高效递送至口腔,从而改善口腔念珠菌病的治疗效果。

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