Molecular recognition of flunarizine dihydrochloride and β-cyclodextrin inclusion complex by NMR and computational approaches.

Q1 Chemistry
Santosh Kumar Upadhyay, Syed Mashhood Ali
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引用次数: 0

Abstract

Background: Flunarizine dihydrochloride (FLN) is used in the prophylactic treatment of migraine, vertigo, occlusive peripheral vascular disease and epilepsy. Cyclodextrins (CDs) are chiral, truncated cone shaped macrocycles known for their inner hydrophobic and outer hydrophilic site. They form complexes with hydrophobic drug molecules and enhance the solubility and bioavailability of such compounds by enhancing drug permeability through mucosal tissues. NMR spectroscopy and computational docking have been recognized as an important tool for the interaction study of CDs-drug inclusion complexes in solution state.

Results: The structural assignments of FLN and β-CD protons were determined by 1H NMR and 2D 1H-1H COSY NMR spectroscopy. 1H NMR spectroscopic studies of FLN, β-CD and their mixtures confirmed the formation of β-CD-FLN inclusion complex in solution. 1H NMR titration data for β-CD-FLN inclusion complex showed 1:1 stoichiometry, an association constant of K a  = 157 M-1 and change in Gibbs free energy of ∆G = - 12.65 kJ mol-1. The binding constant of the β-CD inclusion complex with two nearly similar structures, FLN and cetirizine dihydrochloride, were compared. Two-dimensional 1H-1H ROESY spectral data and molecular docking studies showed the modes of penetration of the aromatic rings from the wider rim side into the β-CD cavity. The possible geometrical structures of the β-CD-FLN inclusion complex have been proposed in which aromatic rings protrude close to the narrower rim of the β-CD truncated cone.

Conclusion: NMR spectroscopic studies of FLN, β-CD and FLN:β-CD mixtures confirmed the formation of 1:1 inclusion complex in solution at room temperature. Two-dimensional 1H-1H ROESY together with molecular docking study confirmed that the F-substituted aromatic ring of FLN penetrates into β-CD truncated cone and the tail of aromatic rings were proximal to narrower rim of β-CD. The splitting of aromatic signals of FLN in the presence of β-CD suggests chiral differentiation of the guest FLN by β-CD.

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通过核磁共振和计算方法识别盐酸氟桂利嗪和β-环糊精包合物的分子。
背景:盐酸氟桂利嗪(FLN盐酸氟桂利嗪(FLN)用于预防性治疗偏头痛、眩晕、闭塞性外周血管疾病和癫痫。环糊精(CD)是一种手性截顶锥形大环,因其内部疏水和外部亲水而闻名。它们与疏水性药物分子形成复合物,并通过提高药物在粘膜组织中的渗透性来提高此类化合物的溶解度和生物利用度。核磁共振光谱和计算对接被认为是研究 CDs-药物包合物在溶液状态下相互作用的重要工具:结果:通过 1H NMR 和 2D 1H-1H COSY NMR 光谱确定了 FLN 和 β-CD 质子的结构分配。对 FLN、β-CD 及其混合物的 1H NMR 光谱研究证实,在溶液中形成了 β-CD-FLN 包合物复合物。β-CD-FLN 包合物的 1H NMR 滴定数据显示其化学计量为 1:1,结合常数为 K a = 157 M-1,吉布斯自由能变化为 ∆G = - 12.65 kJ mol-1。比较了β-CD包合物与两种几乎相似结构的FLN和盐酸西替利嗪的结合常数。二维 1H-1H ROESY 光谱数据和分子对接研究显示了芳香环从较宽的边缘侧穿入 β-CD 空腔的模式。我们提出了 β-CD-FLN 包合物的可能几何结构,其中芳香环靠近 β-CD 截顶锥的较窄边缘:结论:FLN、β-CD 和 FLN:β-CD 混合物的核磁共振光谱研究证实,在室温下,溶液中形成了 1:1 的包合复合物。二维 1H-1H ROESY 和分子对接研究证实,FLN 的 F 取代芳香环穿透了 β-CD 截顶锥,芳香环的尾部靠近 β-CD 较窄的边缘。在 β-CD 的存在下,FLN 的芳香信号发生分裂,这表明β-CD 对客体 FLN 进行了手性分化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemistry Central Journal
Chemistry Central Journal 化学-化学综合
CiteScore
4.40
自引率
0.00%
发文量
0
审稿时长
3.5 months
期刊介绍: BMC Chemistry is an open access, peer reviewed journal that considers all articles in the broad field of chemistry, including research on fundamental concepts, new developments and the application of chemical sciences to broad range of research fields, industry, and other disciplines. It provides an inclusive platform for the dissemination and discussion of chemistry to aid the advancement of all areas of research. Sections: -Analytical Chemistry -Organic Chemistry -Environmental and Energy Chemistry -Agricultural and Food Chemistry -Inorganic Chemistry -Medicinal Chemistry -Physical Chemistry -Materials and Macromolecular Chemistry -Green and Sustainable Chemistry
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