首页> 外文期刊>European journal of pharmaceutical sciences >Multimodal molecular encapsulation of nicardipine hydrochloride by beta-cyclodextrin, hydroxypropyl-beta-cyclodextrin and triacetyl-beta-cyclodextrin in solution. Structural studies by 1H NMR and ROESY experiments.
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Multimodal molecular encapsulation of nicardipine hydrochloride by beta-cyclodextrin, hydroxypropyl-beta-cyclodextrin and triacetyl-beta-cyclodextrin in solution. Structural studies by 1H NMR and ROESY experiments.

机译:溶液中β-环糊精,羟丙基-β-环糊精和三乙酰基-β-环糊精对盐酸尼卡地平的多峰分子包封。通过1 H NMR和ROESY实验进行结构研究。

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摘要

Proton nuclear magnetic resonance spectroscopy (1H NMR), which has become an important tool for in vitro study of cyclodextrin (CD) complexes, was used to study and structurally characterize the inclusion compounds formed in solution between nicardipine hydrochloride (NC) and beta-cyclodextrin (betaCD), hydroxypropyl-beta-cyclodextrin (HPbetaCD) and triacetyl-beta-cyclodextrin (TAbetaCD). The large variation of chemical shifts from protons located around the interior of the hydrophobic cavity (i.e. H-3, H-5 and H-6) coupled with minimal variation of shifts from protons located on the outer sphere of the betaCD (i.e. H-1, H-2 and H-4) provided clear evidence of inclusion complexation. In the presence of the different CDs, the aromatic protons of NC were the most affected, suggesting a strong involvement of the phenyl groups in the inclusion mechanism. The application of continuous variation method indicated the presence of complexes with a 1:1 host/guest stoichiometry for all the studied CDs. Two-dimensional rotating frame nuclear Overhauser effect spectroscopy (ROESY) experiments were carried out to further support the proposed inclusion mode. Inspection of the ROESY spectra allowed the establishment of spatial proximities between several aromatic hydrogens of the guest and the CD protons, indicating that the inclusion occurs by accommodation of the two aromatic groups of NC. All the experimental data were further rationalized to elaborate possible three-dimensional geometric models of inclusion complexes. From the aforementioned observations, we concluded there is no preference for inclusion of a particular aromatic ring. Instead, two types of 1:1 complexes with different inclusion structures may exist simultaneously in solution, being alternatively included through the wider side of the cavity, i.e. the so-called multimodal inclusion occurs in the interaction of NC with the different CDs.
机译:质子核磁共振波谱(1H NMR)已成为体外研究环糊精(CD)配合物的重要工具,用于研究和结构表征盐酸尼卡地平(NC)和β-环糊精之间形成的包合物。 (βCD),羟丙基-β-环糊精(HPbetaCD)和三乙酰基-β-环糊精(TAbetaCD)。来自位于疏水腔内部(即H-3,H-5和H-6)周围的质子的化学位移的大变化,以及来自位于βCD外球(即H- 1,H-2和H-4)提供了包涵体络合的清晰证据。在存在不同CD的情况下,NC的芳族质子受到的影响最大,表明苯基强烈参与了包涵机制。连续变异法的应用表明所有研究的CD都存在具有1:1宿主/客体化学计量比的复合物。进行了二维旋转框架核Overhauser效应光谱(ROESY)实验,以进一步支持所提出的包含模式。通过检查ROESY光谱,可以在来宾的几个芳族氢和CD质子之间建立空间邻近性,这表明包容是通过容纳NC的两个芳族基团而发生的。所有的实验数据都进一步合理化,以阐述可能的包合物的三维几何模型。根据上述观察,我们得出结论,不偏爱包含特定的芳环。取而代之的是,两种具有不同夹杂结构的1:1配合物可以同时存在于溶液中,也可以通过腔体的较宽侧面包括在内,即所谓的多峰夹杂发生在NC与不同CD的相互作用中。

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