首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Disproportionation of a crystalline citrate salt of a developmental pharmaceutical compound: Characterization of the kinetics using pH monitoring and online Raman spectroscopy plus quantitation of the crystalline free base form in binary physical mixtures using FT-Raman, XRPD and DSC
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Disproportionation of a crystalline citrate salt of a developmental pharmaceutical compound: Characterization of the kinetics using pH monitoring and online Raman spectroscopy plus quantitation of the crystalline free base form in binary physical mixtures using FT-Raman, XRPD and DSC

机译:研发药物化合物的柠檬酸盐的歧化反应:使用pH监测和在线拉曼光谱法表征动力学,并使用FT-Raman,XRPD和DSC对二元物理混合物中的结晶游离碱形式进行定量

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The crystalline citrate salt (CS) of a developmental pharmaceutical compound, MK-Q, was investigated in this work from two different, but related, perspectives. In the first part of the paper, the apparent disproportionation kinetics were surveyed using two different slurry systems, one containing water and the other a pH 6.9 phosphate buffer, using time-dependent measurements of the solution pH or by acquiring online Raman spectra of the solids. While the CS is generally stable when stored as a solid under ambient conditions of temperature and humidity, its low pHmax (<3) facilitates rapid disproportionation in aqueous solution, particularly at higher pH values. The rate of disappearance of the CS was found to obey first-order (Noyes-Whitney/dissolution rate-limited) kinetics, however, the formation of the crystalline product form in the slurry system was observed to exhibit kinetics consistent with a heterogeneous nucleation-and-growth mechanism. In the second part of this paper, more sensitive offline measurements made using XRPD, DSC and FT-Raman spectroscopy were applied to the characterization of binary physical mixtures of the CS and free base (FB) crystalline forms of MK-Q to obtain a calibration curve for each technique. It was found that all calibration plots exhibited good linearity of response, with the limit of detection (LOD) for each technique estimated to be ≤7. wt% FB. While additional calibration curves would need to be constructed to allow for accurate quantitation in various slurry systems, the general feasibility of these techniques is demonstrated for detecting low levels of CS disproportionation.
机译:在这项工作中,从两个不同但相关的角度研究了一种发育性药物化合物MK-Q的结晶柠檬酸盐(CS)。在本文的第一部分中,使用两种不同的浆液系统(其中一种包含水,另一种使用pH 6.9磷酸盐缓冲液),使用溶液的时间依赖性测量值或通过获取固体的在线拉曼光谱,对表观歧化动力学进行了研究。 。尽管CS在固态环境下在温度和湿度条件下以固体形式储存时通常是稳定的,但它的低pHmax(<3)有助于在水溶液中快速歧化,特别是在较高的pH值下。发现CS的消失速率服从一级动力学(Noyes-Whitney /溶解速率限制),但是,观察到浆液系统中结晶产物形式的形成具有与异相成核相一致的动力学。和增长机制。在本文的第二部分中,使用XRPD,DSC和FT-拉曼光谱进行了更灵敏的离线测量,以表征CS和MK-Q的游离碱(FB)晶型的二元物理混合物,以获得校准每种技术的曲线。发现所有校准图均显示出良好的响应线性,每种技术的检测限(LOD)估计≤7。 wt%FB。尽管需要构建其他校准曲线以允许在各种浆料系统中进行准确定量,但这些技术的总体可行性已证明可用于检测低水平的CS歧化。

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