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研究西替利嗪与α-、β-和γ-环糊精形成的包合物及其掩味性能评价。

Study of the inclusion complexes formed between cetirizine and α-, β-, and γ-cyclodextrin and evaluation on their taste-masking properties.

机构信息

Department of Biotechnology, Chemistry and Environmental Engineering, Aalborg University, Aalborg 9000, Denmark.

Department of Biotechnology, Chemistry and Environmental Engineering, Aalborg University, Aalborg 9000, Denmark.

出版信息

J Pharm Sci. 2011 Aug;100(8):3177-3185. doi: 10.1002/jps.22539. Epub 2011 Mar 9.

Abstract

Complexation properties of cetirizine dihydrochloride (cetirizine) with α-, β-, and γ-cyclodextrin (CD) were investigated by ultra violet (UV) and nuclear magnetic resonance (NMR) spectroscopies and isothermal titration calorimetry (ITC). The use of the continuous variation method, applied on UV and NMR data, demonstrated 1:1 complex stoichiometry for cetirizine-α-CD, cetirizine-β-CD, and cetirizine-γ-CD, respectively. NMR two-dimensional Rotational nuclear Overhauser Effect SpectroscopY experiments revealed that for α- and β-CD, the complexation takes place by including either the phenyl or chlorophenyl ring of the cetirizine into the CD cavity, whereas in the case of γ-CD, both rings can be included simultaneously. Association constants (K(a)) determined by UV spectroscopy demonstrated that cetirizine forms more stable complex with β-CD (K(a) = 5641 ± 358 M(-1)) than α-CD (K(a) = 1434 ± 60 M(-1)). No information could be extracted from the UV spectroscopic analysis of cetirizine-γ-CD solutions. ITC results for association constant determination were in compliance with UV results and confirmed that the highest association constant was found for the cetirizine-β-CD complex (2540 ± 122 M(-1)). The association constants from ITC measurements for cetirizine-γ-CD and cetirizine-α-CD complexes were found to be 1200 ± 50 and 800 ± 22 M(-1) , respectively. Taste-masking studies revealed that β-CD is the only native CD recommendable for oral pharmaceutical formulations.

摘要

盐酸西替利嗪(西替利嗪)与α-、β-和γ-环糊精(CD)的络合性质通过紫外(UV)和核磁共振(NMR)光谱以及等温热力学滴定(ITC)进行了研究。连续变化法应用于 UV 和 NMR 数据,分别证明了西替利嗪-α-CD、西替利嗪-β-CD 和西替利嗪-γ-CD 的 1:1 配合物化学计量比。NMR 二维旋转核 Overhauser 效应光谱实验表明,对于α-和β-CD,络合作用是通过将西替利嗪的苯环或氯苯基环包含在 CD 腔中发生的,而在γ-CD 的情况下,两个环可以同时被包含。通过紫外光谱法确定的结合常数(K(a))表明,西替利嗪与β-CD(K(a) = 5641 ± 358 M(-1))形成更稳定的配合物,而与α-CD(K(a) = 1434 ± 60 M(-1))形成的配合物不太稳定。从西替利嗪-γ-CD 溶液的紫外光谱分析中无法提取信息。用于确定结合常数的 ITC 结果与 UV 结果一致,并证实西替利嗪-β-CD 配合物具有最高的结合常数(2540 ± 122 M(-1))。ITC 测量得出的西替利嗪-γ-CD 和西替利嗪-α-CD 配合物的结合常数分别为 1200 ± 50 和 800 ± 22 M(-1)。掩味研究表明,β-CD 是唯一适合口服药物制剂的天然 CD。

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