College of Pharmacy, Pusan National University, 63 Busandaehak-ro, Geumjeong-gu, Busan 46241, Republic of Korea.
Yonsei Institute of Pharmaceutical Sciences & College of Pharmacy, Yonsei University, 85 Songdogwahak-ro, Yeonsu-gu, Incheon 21983, Republic of Korea.
Int J Pharm. 2020 May 15;581:119232. doi: 10.1016/j.ijpharm.2020.119232. Epub 2020 Mar 30.
The glimepiride/L-arginine (GA) binary systems were prepared at various molar ratios by using a supercritical antisolvent (SAS) process. For comparison, the GA system was also prepared by physical mixing (PM), melt quenching (MQ), and solvent evaporation (SE) methods. Analyses by DSC and PXRD showed that only the GA binary mixture at 1:1 M ratio prepared by the SAS process was a pure co-amorphous mixture with an excellent content uniformity. On the other hand, GA mixture prepared by PM and SE were not pure co-amorphous systems and contained crystalline eutectic mixture, and MQ method at 170 °C induced the decrease in drug content due to decomposition of glimepiride. The positive deviation of experimentally measured glass transition temperature (T) compared to predicted T by the Gordon Taylor equation suggests specific molecular interactions between glimepiride and L-arginine in solid-state GA co-amorphous (GACA) mixture. The intermolecular interactions between glimepiride and L-arginine in GACA system were characterized by FT-IR and solid-state NMR analyses. Improved glimepiride dissolution rate of GACA formulation were confirmed using the solubility test, contact angle measurement, and dissolution test. Furthermore, the evaluation of pharmacodynamic hypoglycemic effect demonstrated that GACA prepared by the SAS process significantly improved the therapeutic efficacy of glimepiride.
采用超临界抗溶剂(SAS)过程,按不同摩尔比制备了格列美脲/精氨酸(GA)二元体系。为了进行比较,还通过物理混合(PM)、熔融淬火(MQ)和溶剂蒸发(SE)方法制备了 GA 体系。通过 DSC 和 PXRD 分析表明,只有 SAS 过程制备的 1:1 M 摩尔比的 GA 二元混合物是一种纯共无定形混合物,具有优异的含量均匀性。另一方面,PM 和 SE 制备的 GA 混合物不是纯共无定形体系,含有结晶共晶混合物,而 170°C 的 MQ 方法由于格列美脲的分解导致药物含量降低。实验测量的玻璃化转变温度(T)与 Gordon Taylor 方程预测的 T 之间的正偏差表明,在固态 GA 共无定形(GACA)混合物中,格列美脲和精氨酸之间存在特定的分子相互作用。通过傅里叶变换红外光谱(FT-IR)和固态核磁共振(NMR)分析,对 GACA 体系中格列美脲和精氨酸之间的分子间相互作用进行了表征。通过溶解度测试、接触角测量和溶解测试,证实了 GACA 配方中格列美脲溶解速率的提高。此外,药效学降血糖作用的评价表明,SAS 过程制备的 GACA 显著提高了格列美脲的治疗效果。