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基于超快魔角旋转质子检测固态 NMR 定量药物制剂。

Quantifying Pharmaceutical Formulations from Proton Detected Solid-State NMR under Ultrafast Magic Angle Spinning.

机构信息

Pharmaceutical Sciences, Merck & Co., Inc., Kenilworth, NJ 07033, USA.

Pharmaceutical Sciences, Merck & Co., Inc., Kenilworth, NJ 07033, USA.

出版信息

J Pharm Sci. 2020 Oct;109(10):3045-3053. doi: 10.1016/j.xphs.2020.06.026. Epub 2020 Jul 15.

Abstract

Probing form conversions of active pharmaceutical ingredients in solid dosages is critical for understanding the physicochemical stability of drug substances in formulations. The multicomponent and low drug loading nature of drug products often results in challenges to quantify the phase stability, at a low detection limit and with the chemical resolution that differentiate drug molecules and excipients, for routine laboratory techniques. Recent advancement of ultrafast magic angle spinning (UF-MAS) enables proton-detected solid-state nuclear magnetic resonance (ssNMR) techniques to characterize pharmaceutical materials with enhanced resolution and sensitivity. This study demonstrates one of the first documented cases implementing 60 kHz UF-MAS techniques to quantify the minor content of pioglitazone free base (PIO-FB) in a binary system with its hydrochloride salt (PIO-HCl) and a multicomponent formulation with typical excipients. One-dimensional H methods can unambiguously differentiate the two forms and exhibit a limit of detection at 1.77% (w/w). Moreover, we extended it to a two-dimensional H-H correlation for minimizing peak overlap and successfully quantifying approximately 2.0% (w/w) PIO-FB in a multicomponent formulation. These results have demonstrated that H ssNMR as a novel method to quantify solid dosages at a higher resolution and faster acquisition than conventional C techniques.

摘要

探测固体剂型中活性药物成分的形态转化对于理解药物在制剂中的物理化学稳定性至关重要。药物产品的多组分和低载药量性质常常导致在常规实验室技术中难以定量测定相稳定性,尤其是在检测限低且需要化学分辨率以区分药物分子和赋形剂的情况下。最近超快魔角旋转(UF-MAS)的发展使质子探测固态核磁共振(ssNMR)技术能够以增强的分辨率和灵敏度来表征药物材料。本研究展示了首例采用 60 kHz UF-MAS 技术定量测定二元体系中盐酸吡格列酮游离碱(PIO-FB)与盐酸盐(PIO-HCl)以及含有典型赋形剂的多组分制剂中微量 PIO-FB 的实例之一。一维 H 方法可以明确区分两种形式,检测限为 1.77%(w/w)。此外,我们将其扩展到二维 H-H 相关,以最小化峰重叠,并成功定量测定多组分制剂中约 2.0%(w/w)的 PIO-FB。这些结果表明,H ssNMR 是一种比传统 C 技术具有更高分辨率和更快采集速度的新型方法,可用于定量测定固体剂量。

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