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超快魔角旋转 NMR 研究拉呋替丁-聚维酮无定形固体分散体中的分子相互作用。

Understanding Molecular Interactions in Rafoxanide-Povidone Amorphous Solid Dispersions from Ultrafast Magic Angle Spinning NMR.

机构信息

Pharmaceutical Sciences, Merck & Co., Inc., Kenilworth, New Jersey 07033, United States.

Division of Molecular Pharmaceutics and Drug Delivery, College of Pharmacy, The University of Texas at Austin, Austin, Texas 78712, United States.

出版信息

Mol Pharm. 2020 Jun 1;17(6):2196-2207. doi: 10.1021/acs.molpharmaceut.0c00317. Epub 2020 May 21.

Abstract

In solid dosage formulations, probing intermolecular interactions between active pharmaceutical ingredients (APIs) and polymeric excipients, which have a mechanistic impact on physical stability as well as bioavailability, remains a challenge. In recent years, solid-state NMR spectroscopy has been demonstrated to be a powerful tool to provide structural details with an atomic resolution of therapeutic organic compounds and formulation products. However, conventional C-detected techniques often suffer from poor resolution and low sensitivity due to the disordered structure of certain materials such as amorphous pharmaceuticals and C natural abundance, hindering in-depth investigations. In this study, we utilize the magic angle spinning (MAS) technique with ultrafast speeds (UF-MAS: ν = 60 and 110 kHz) and demonstrate the enabled methods with H detection to study the amorphous molecular complex of rafoxanide and povidone in the solid state. The downfield shift of the RAF amide proton, resolved under UF-MAS, and its correlations with aliphatic protons of PVP, serve as strong evidence of the existence of intermolecular hydrogen bonding. Two-dimensional (2D) H-detected H{C} and H-H correlation experiments, interestingly, exhibit distinct API-polymer interactions in the spray-dried amorphous solid dispersions (ASDs), utilizing aqueous and organic cosolvents and organic solvents mixtures. The rich intermolecular interactions in the aqueously prepared ASDs presumably contribute to the physical stability, and the interactions are retained in the solution state to maintain supersaturation for an enhanced dissolution profile. This study presents the first application of UF-MAS NMR characterization of therapeutic solid dosages at a spinning frequency of 110 kHz and uncovers the molecular mechanisms of solvent-mediated pharmaceutical dispersions.

摘要

在固体制剂中,探测活性药物成分 (API) 和聚合物赋形剂之间的分子间相互作用仍然是一个挑战,这些相互作用对物理稳定性和生物利用度具有机械影响。近年来,固态 NMR 光谱学已被证明是一种强大的工具,可以提供治疗性有机化合物和制剂产品的原子分辨率结构细节。然而,由于某些材料(如无定形药物和 C 天然丰度)的无序结构,传统的 C 检测技术通常存在分辨率差和灵敏度低的问题,阻碍了深入研究。在这项研究中,我们利用超快速度的魔角旋转 (MAS) 技术(UF-MAS:ν = 60 和 110 kHz),并利用 H 检测来展示这些方法,以研究固体状态下雷氟沙星和聚维酮的无定形分子复合物。在 UF-MAS 下解析出的 RAF 酰胺质子的场移及其与 PVP 脂肪族质子的相关性,为分子间氢键的存在提供了有力证据。有趣的是,二维 (2D) H 检测 H{C}和 H-H 相关实验显示,在喷雾干燥的无定形固体分散体 (ASD) 中,利用水相和有机共溶剂以及有机溶剂混合物,存在明显的 API-聚合物相互作用。水相制备的 ASD 中丰富的分子间相互作用可能有助于物理稳定性,并且这些相互作用在溶液状态下得以保留,以维持过饱和度,从而提高溶解特性。本研究首次应用 110 kHz 旋转频率的 UF-MAS NMR 对治疗性固体制剂进行了表征,并揭示了溶剂介导的药物分散的分子机制。

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