Shi Qin, Zhang Chen, Su Yuan, Zhang Jie, Zhou Dongshan, Cai Ting
Department of Polymer Science and Engineering, School of Chemistry and Chemical Engineering, Nanjing University , Nanjing 210093, China.
Mol Pharm. 2017 Jul 3;14(7):2262-2272. doi: 10.1021/acs.molpharmaceut.7b00097. Epub 2017 Jun 7.
This study aims to investigate the crystallization behavior and molecular dynamics of amorphous griseofulvin (GSF) in the presence of low-concentration poly(ethylene oxide) (PEO). We observe that the addition of 3% w/w PEO remarkably increases the crystal growth rate of GSF by two orders of magnitude in both the supercooled liquid and glassy states. The liquid dynamics of amorphous GSF in the presence and absence of PEO are characterized by dielectric spectroscopy. With an increase of the PEO content, the α-relaxation times of the systems decrease, indicating the increase of global molecular mobility. The couplings between molecular mobility and crystallization kinetics of GSF systems show strong time-dependences below T. The overlapping of α-relaxation times of GSF in presence and absence of PEO as a function of T/T suggest the "plasticization" effect of PEO additives. However, the crystallization kinetics of amorphous GSF containing low-concentration PEO do not overlap with those of pure GSF on a T/T scale. The remarkable accelerating effect of crystal growth of amorphous GSF by low-concentration PEO can be partially attributed to the increase of global mobility. The high segmental mobility of PEO is expected to strongly affect the crystal growth rates of GSF. These findings are relevant for understanding and predicting the physical stability of amorphous pharmaceutical solid dispersions.
本研究旨在考察在低浓度聚环氧乙烷(PEO)存在下无定形灰黄霉素(GSF)的结晶行为和分子动力学。我们观察到,添加3% w/w的PEO可使GSF在过冷液体和玻璃态下的晶体生长速率显著提高两个数量级。通过介电谱对有无PEO存在时无定形GSF的液体动力学进行了表征。随着PEO含量的增加,体系的α弛豫时间缩短,表明整体分子迁移率增加。在低于T时,GSF体系中分子迁移率与结晶动力学之间的耦合表现出强烈的时间依赖性。有无PEO时GSF的α弛豫时间随T/T的变化而重叠,这表明了PEO添加剂的“增塑”作用。然而,含有低浓度PEO的无定形GSF的结晶动力学在T/T尺度上与纯GSF的结晶动力学并不重叠。低浓度PEO对无定形GSF晶体生长的显著加速作用可部分归因于整体迁移率的增加。预计PEO的高链段迁移率会强烈影响GSF的晶体生长速率。这些发现对于理解和预测无定形药物固体分散体的物理稳定性具有重要意义。