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β-环糊精和γ-环糊精与辛可宁之间2:1分子识别和包合行为的证据。

Evidence for the 2:1 molecular recognition and inclusion behaviour between beta- and gamma-cyclodextrins and cinchonine.

作者信息

Wen Xianhong, Liu Ziyang, Zhu Tianqiang, Zhu Miaoqin, Jiang Kezhi, Huang Qiaoqiao

机构信息

Department of Chemistry, Zhejiang University, Hangzhou 310027, PR China.

出版信息

Bioorg Chem. 2004 Aug;32(4):223-33. doi: 10.1016/j.bioorg.2004.04.004.

Abstract

Cinchonine (Cin) is the primary drug of choice in the treatment of malaria, but its poor solubility has restricted its use via the oral route. Cyclodextrins (CDs) form inclusion complexes with cinchonine to form soluble complexes. This interaction was investigated by solubility studies, electrospray ionization mass spectrometry (ESI-MS), and molecular modeling. ESI-MS evaluated successfully the nature of the solution-phase inclusion complexes. The experimental results showed that not only 1:1, but also stable 2:1 inclusion complexes can be formed between CDs and Cin. Multi-component complexes of beta-CD-Cin-beta-CD (1:1:1), gamma-CD-Cin-gamma-CD (1:1:1), and beta-CD-Cin-gamma-CD (1:1:1) were found in equimolar beta- and gamma-CD mixtures with Cin. The formation of 2:1 and multi-component 1:1:1 non-covalent CD-Cin complexes indicates that beta- and gamma-CD are able to form sandwich-type inclusion complexes with Cin in high concentrations. The phase-solubility diagram showed non-linear type A(p) profile, indicating that more than one cyclodextrin molecule is involved in the complexation of one guest molecule. Molecular modeling calculations have been carried out to rationalize the experimental findings and predict the lowest energy molecular structure of inclusion complex.

摘要

辛可宁(Cin)是治疗疟疾的首选药物,但其溶解度低限制了其口服应用。环糊精(CDs)与辛可宁形成包合物以形成可溶性复合物。通过溶解度研究、电喷雾电离质谱(ESI-MS)和分子模拟对这种相互作用进行了研究。ESI-MS成功评估了溶液相包合物的性质。实验结果表明,CDs与Cin之间不仅能形成1:1的包合物,还能形成稳定的2:1包合物。在与Cin等摩尔的β-环糊精和γ-环糊精混合物中发现了β-CD-Cin-β-CD(1:1:1)、γ-CD-Cin-γ-CD(1:1:1)和β-CD-Cin-γ-CD(1:1:1)的多组分复合物。2:1和多组分1:1:1非共价CD-Cin复合物的形成表明,β-环糊精和γ-环糊精能够在高浓度下与Cin形成夹心型包合物。相溶解度图显示为非线性A(p)型,表明一个客体分子的络合涉及不止一个环糊精分子。已进行分子模拟计算以合理解释实验结果并预测包合物的最低能量分子结构。

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