Tian Bin, Zhang Ling, Pan Zhendong, Gou Jingxin, Zhang Yu, Tang Xing
Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, Shenyang, Liaoning, China.
Int J Pharm. 2014 Nov 20;475(1-2):385-92. doi: 10.1016/j.ijpharm.2014.09.010. Epub 2014 Sep 8.
The purpose of this work was to compare the effect of temperature and relative humidity (RH) on the physical stability and dissolution of solid dispersions. Cinnarizine-Soluplus(®) solid dispersions (SDs) at three different drug loadings (10, 20 and 35 wt%) were prepared by hot melt extrusion and exposed to stress conditions: high temperatures (40 and 60 °C), high relative humidities (75% and 94% RH) and accelerated conditions (40 °C/75% RH) for 30 days, or stored at 25 °C for up to 5 months. Changes in solid state and dissolution of SDs were investigated by differential scanning calorimetry (DSC), powder X-ray diffraction (PXRD) and dissolution testing. For samples under stress conditions, the results showed a reduced dissolution and a recrystallization of the drug with an increased crystallinity in the order of 40 °C/75% RH, >60 °C/0% RH, >25 °C/94% RH, >40 °C/0% RH, >25 °C/75% RH. For samples stored at 25 °C, nonlinear physical aging was observed and the dissolution also decreased although the SDs were still amorphous. The results indicated that temperature and humidity seemed to have comparable effects on the crystallization of cinnarizine-Soluplus(®) SDs. It is not reasonable to regard recrystallization as a sign of reduced dissolution, and glass transition temperature (Tg) may be a good indicator of the changes in dissolution.
本研究旨在比较温度和相对湿度(RH)对固体分散体物理稳定性和溶出度的影响。采用热熔挤出法制备了三种不同载药量(10%、20%和35%重量比)的桂利嗪-固体分散体(SDs),并将其置于如下应力条件下:高温(40℃和60℃)、高相对湿度(75%和94%RH)以及加速条件(40℃/75%RH)下30天,或在25℃下储存长达5个月。通过差示扫描量热法(DSC)、粉末X射线衍射(PXRD)和溶出度测试研究了SDs的固态变化和溶出情况。对于处于应力条件下的样品,结果显示药物的溶出度降低且发生重结晶,结晶度增加,顺序为40℃/75%RH>60℃/0%RH>25℃/94%RH>40℃/0%RH>25℃/75%RH。对于在25℃下储存的样品,观察到了非线性物理老化现象,尽管SDs仍为非晶态,但溶出度也有所下降。结果表明,温度和湿度对桂利嗪-固体分散体(SDs)的结晶似乎具有相似的影响。将重结晶视为溶出度降低的标志并不合理,玻璃化转变温度(Tg)可能是溶出度变化的一个良好指标。