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首页> 外文期刊>Molecular pharmaceutics >Isothermal microcalorimetry to investigate the phase separation for amorphous solid dispersions of AMG 517 with HPMC-AS
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Isothermal microcalorimetry to investigate the phase separation for amorphous solid dispersions of AMG 517 with HPMC-AS

机译:等温微量热法研究AMG 517与HPMC-AS的无定形固体分散体的相分离

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Understanding the crystallization kinetics of an amorphous drug is critical for the development of an amorphous solid dispersion (ASD) formulation. This paper examines the phase separation and crystallization of the drug AMG 517 in ASDs of varying drug load at various conditions of temperature and relative humidity using isothermal microcalorimetry. ASDs of AMG 517 in hydroxypropyl methylcellulose acetate succinate (HPMC-AS) were manufactured using a Buchi 290 mini spray dryer system. ASDs were characterized using modulated differential scanning calorimetry (mDSC) and scanning electron microscopy (SEM) prior to isothermal microcalorimetry evaluation, and crystallinity was measured using 19F solid state nuclear magnetic resonance spectroscopy (SSNMR), before and after crystallization. The crystallization of ASDs of AMG 517 in HPMC-AS was significantly slowed by the presence of HPMC-AS polymer, indicating enhanced physical stability for the ASD formulations. A two-phase crystallization was observed by isothermal microcalorimetry at temperatures near the glass transition temperature (Tg), indicating a drug-rich phase and a miscible ASD phase. 19F SSNMR showed that only partial crystallization of the drug occurred for the ASDs, suggesting a third phase which did not crystallize, possibly representing a thermodynamically stable, soluble component. Isothermal microcalorimetry provides important kinetic data for monitoring crystallization of the drug in the ASDs and, together with 19F SSNMR, suggests a three-phase ASD system for AMG 517 in HPMC-AS.
机译:了解无定形药物的结晶动力学对于开发无定形固体分散体(ASD)配方至关重要。本文利用等温微量热法研究了在不同温度和相对湿度条件下,载药量变化的ASD中药物AMG 517的相分离和结晶。使用Buchi 290小型喷雾干燥器系统生产AMG 517在乙酸羟丙基甲基纤维素琥珀酸酯(HPMC-AS)中的ASD。在等温微量热评估之前,使用调制差示扫描量热法(mDSC)和扫描电子显微镜(SEM)对ASD进行表征,并在结晶前后使用19F固态核磁共振波谱(SSNMR)测量结晶度。 HPMC-AS聚合物的存在显着减慢了HPMC-AS中AMG 517的ASD的结晶,表明ASD配方的物理稳定性增强。通过等温微量热法在接近玻璃化转变温度(Tg)的温度下观察到两相结晶,表明药物富集相和可混溶的ASD相。 19 F SSNMR显示对于ASD仅药物的部分结晶发生,表明第三相没有结晶,可能代表热力学稳定的可溶组分。等温微量热法为监测ASD中药物的结晶提供了重要的动力学数据,并与19F SSNMR一起提出了HPMC-AS中AMG 517的三相ASD系统。

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