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通过中子散射光谱和密度泛函理论计算探究复合局部麻醉剂的动力学。

Probing the dynamics of complexed local anesthetics via neutron scattering spectroscopy and DFT calculations.

作者信息

Martins Murillo L, Eckert Juergen, Jacobsen Henrik, Dos Santos Éverton C, Ignazzi Rosanna, de Araujo Daniele Ribeiro, Bellissent-Funel Marie-Claire, Natali Francesca, Koza Michael Marek, Matic Aleksander, de Paula Eneida, Bordallo Heloisa N

机构信息

Niels Bohr Institute, University of Copenhagen, Universitetsparken 5 DK-2100, Copenhagen, Denmark.

Department of Chemistry, University of South Florida, 4202 E. Fowler Ave., Tampa, FL 33620, United States; Theoretical Division, Los Alamos National Laboratory, Los Alamos, NM 87545, United States.

出版信息

Int J Pharm. 2017 May 30;524(1-2):397-406. doi: 10.1016/j.ijpharm.2017.03.051. Epub 2017 Mar 31.

Abstract

Since potential changes in the dynamics and mobility of drugs upon complexation for delivery may affect their ultimate efficacy, we have investigated the dynamics of two local anesthetic molecules, bupivacaine (BVC, CHNO) and ropivacaine (RVC, CHNO), in both their crystalline forms and complexed with water-soluble oligosaccharide 2-hydroxypropyl-β-cyclodextrin (HP-β-CD). The study was carried out by neutron scattering spectroscopy, along with thermal analysis, and density functional theory computation. Mean square displacements suggest that RVC may be less flexible in crystalline form than BVC, but both molecules exhibit very similar dynamics when confined in HP-β-CD. The use of vibrational analysis by density functional theory (DFT) made possible the identification of molecular modes that are most affected in both molecules by insertion into HP-β-CD, namely those of the piperidine rings and methyl groups. Nonetheless, the somewhat greater structure in the vibrational spectrum at room temperature of complexed RVC than that of BVC, suggests that the effects of complexation are more severe for the latter. This unique approach to the molecular level study of encapsulated drugs should lead to deeper understanding of their mobility and the respective release dynamics.

摘要

由于药物在用于递送的络合过程中其动力学和流动性的潜在变化可能会影响其最终疗效,我们研究了两种局部麻醉分子布比卡因(BVC,C₁₈H₂₈N₂O)和罗哌卡因(RVC,C₁₇H₂₶N₂O)在其结晶形式以及与水溶性低聚糖2-羟丙基-β-环糊精(HP-β-CD)络合时的动力学。该研究通过中子散射光谱法结合热分析和密度泛函理论计算进行。均方位移表明,RVC在结晶形式下可能比BVC的柔韧性差,但当限制在HP-β-CD中时,两种分子表现出非常相似的动力学。通过密度泛函理论(DFT)进行振动分析使得识别两种分子中因插入HP-β-CD而受影响最大的分子模式成为可能,即哌啶环和甲基的分子模式。尽管如此,络合后的RVC在室温下的振动光谱结构比BVC的略大,这表明络合对后者的影响更为严重。这种对包封药物进行分子水平研究的独特方法应能更深入地了解其流动性和各自的释放动力学。

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