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用探针型低频拉曼光谱仪监测含抗疟药物青蒿素的新型药物共晶的溶解行为。

Monitoring the Dissolution Behavior of Novel Pharmaceutical Cocrystals Consisting of Antimalarial Drug Artemisinin with Probe-Type Low-Frequency Raman Spectrometer.

机构信息

Department of Molecular Pharmaceutics, Meiji Pharmaceutical University, Kiyose, Japan.

Analytical Development, Pharmaceutical Sciences, Takeda Pharmaceutical Company Limited, Fujisawa, Kanagawa, Japan.

出版信息

Appl Spectrosc. 2024 Nov;78(11):1125-1135. doi: 10.1177/00037028241275670. Epub 2024 Sep 23.

DOI:10.1177/00037028241275670
PMID:39308428
Abstract

Artemisinin (ART) is a most promising antimalarial agent. However, its low aqueous solubility limits its oral absorption, resulting in low bioavailability. In this study, we have successfully discovered a novel cocrystal with 2-methyl resorcinol (ART-2MRE) providing improved solubility compared with a previously reported cocrystal with resorcinol (ART-RES). Single crystal X-ray structure analysis revealed that the ART-2MRE cocrystal was composed of ART and 2MRE in a molar ratio of 2 : 1. Though the ART-2MRE and ART-RES cocrystals were found to have similarities in their crystal structures, with one layer of a cocrystal former and two layers of ART arranged in alternating rows, the ART-2MRE cocrystal showed higher dissolution rate than ART-RES cocrystal. In situ real-time low-frequency (LF) Raman monitoring and powder X-ray diffraction (PXRD) measurements of the crystals during the dissolution test proved useful to investigate the dissolution behavior of the cocrystals. Low-frequency Raman monitoring revealed that as dissolution progressed, there was a continuous shift from the peak unique to the ART-2MRE cocrystal to the peak unique to the ART stable form. Similar observations were obtained in PXRD measurements as well. Furthermore, experiments were conducted by adding a polymer to the dissolution test solution to investigate the dissolution behavior under supersaturation, indicating the possibility of differences in the dissolution behavior between the ART-2MRE cocrystal and ART-RES cocrystal. Understanding the dissolution behavior from cocrystals is essential in developing cocrystals.

摘要

青蒿素(ART)是一种很有前途的抗疟药物。然而,其低水溶性限制了其口服吸收,导致生物利用度低。在本研究中,我们成功地发现了一种与 2-甲基间苯二酚(ART-2MRE)的新共晶,与先前报道的间苯二酚(ART-RES)共晶相比,其溶解度得到了提高。单晶 X 射线结构分析表明,ART-2MRE 共晶由 ART 和 2MRE 以摩尔比 2:1 组成。尽管 ART-2MRE 和 ART-RES 共晶在晶体结构上存在相似之处,即一层共晶前体和两层 ART 交替排列,但 ART-2MRE 共晶的溶解速率高于 ART-RES 共晶。在溶解试验中对晶体进行原位实时低频(LF)拉曼监测和粉末 X 射线衍射(PXRD)测量,有助于研究共晶的溶解行为。低频拉曼监测表明,随着溶解的进行,从独特的 ART-2MRE 共晶峰到 ART 稳定形式的独特峰连续移动。在 PXRD 测量中也得到了类似的观察结果。此外,通过在溶解试验溶液中加入聚合物进行实验,研究过饱和度下的溶解行为,表明 ART-2MRE 共晶和 ART-RES 共晶的溶解行为可能存在差异。了解共晶的溶解行为对于开发共晶至关重要。

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