Huang Jingjun, Wigent Rodney J, Schwartz Joseph B
Department of Pharmaceutical Sciences, University of the Sciences in Philadelphia, 600 S 43rd Street, Philadelphia, PA 19104, USA.
J Pharm Sci. 2008 Jan;97(1):251-62. doi: 10.1002/jps.21072.
Using spectroscopic and thermal analysis, this study investigated drug-polymer interaction and its significance on the physical stability of drug amorphous dispersion in microparticles of an ammonio polymethacrylate copolymer (Eudragit RL) (RL) and ethylcellulose (EC) binary blend (RL/EC = 2:1 w/w) prepared for use in controlled release of poorly water-soluble drugs. Solid dispersion of the model drug, nifedipine in the microparticles could be described as an ideal amorphous mixture for drug loadings up to 11% w/w. The antiplasticizing effect of the polymer blend was indicated by a significant increase in the glass transition point from approximately 50 degrees C for the amorphous nifedipine to approximately 115 degrees C for its solid solution. Moreover, shifts in infrared vibration wavenumber of nifedipine carbonyl and amine groups suggested that the hydrogen bonds (H-bonds) originally formed among nifedipine molecules were broken and replaced by those formed between nifedipine and polymers in the microparticles. Further infrared analysis on nifedipine amorphous dispersions with a single polymer, namely RL or EC, confirmed the proposed hydrogen-bonding interactions; and their stability study results suggested that both antiplasticizing effects and hydrogen bonding of EC and RL with nifedipine might be responsible for the physical stability of the microparticles of nifedipine amorphous dispersion with a RL/EC binary blend.
本研究采用光谱分析和热分析方法,研究了药物与聚合物的相互作用及其对氨甲基丙烯酸酯共聚物(尤特奇RL)(RL)和乙基纤维素(EC)二元共混物(RL/EC = 2:1 w/w)微粒中药物无定形分散体物理稳定性的影响,该共混物用于难溶性药物的控释。模型药物硝苯地平在微粒中的固体分散体对于高达11% w/w的药物载量可描述为理想的无定形混合物。聚合物共混物的抗塑化作用表现为玻璃化转变温度显著升高,从无定形硝苯地平的约50℃升至其固溶体的约115℃。此外,硝苯地平羰基和胺基红外振动波数的位移表明,硝苯地平分子间最初形成的氢键被微粒中硝苯地平和聚合物之间形成的氢键所取代。对含单一聚合物(即RL或EC)的硝苯地平无定形分散体进行的进一步红外分析证实了所提出的氢键相互作用;其稳定性研究结果表明,EC和RL与硝苯地平的抗塑化作用和氢键作用可能共同决定了含RL/EC二元共混物的硝苯地平无定形分散体微粒的物理稳定性。