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用于控释给药的氨甲基丙烯酸酯共聚物与乙基纤维素二元共混物微粒中硝苯地平的分子分散:基质组成的影响

Nifedipine molecular dispersion in microparticles of ammonio methacrylate copolymer and ethylcellulose binary blends for controlled drug delivery: effect of matrix composition.

作者信息

Huang Jingjun, Wigent Rodney J, Schwartz Joseph B

机构信息

Department of Pharmaceutical Sciences, University of the Sciences in Philadelphia, Philadelphia, PA 19104, USA.

出版信息

Drug Dev Ind Pharm. 2006 Nov-Dec;32(10):1185-97. doi: 10.1080/03639040600832827.

Abstract

The objective of this study is to explore matrix-type microparticles, comprising a solid dispersion of drug with an ammonio methacrylate copolymer and ethylcellulose binary blend, for use in the controlled release of a poorly water-soluble drug, nifedipine. Microparticles consisting of an ethylcellulose N7 (N7) and Eudragit RL (RL) binary blend at different ratios were prepared using phase-separation methodology. The effects of matrix composition on microparticle properties were evaluated by polarized light microscopy, differential scanning calorimetry (DSC), FT-infrared and UV-visible spectroscopy, stability, and drug release studies. Study results indicate that the particle size distribution, particle morphology, and drug release rate from the microparticles were influenced by the ratio of RL to N7. Discrete spherical microparticles with a narrow size distribution and a controlled release profile were obtained when the ratio of RL to N7 was in the range from 1:1 to 2:1 w/w. Solid-state characterization and release kinetic studies on these microparticles confirmed that the nifedipine release from the microparticles followed the Baker and Lonsdale's matrix diffusion model (1974) for microspheres containing dissolved drug, and the nifedipine diffusion in the microparticle matrix was the rate-limiting step. As the ratio of RL to N7 was changed from 0:1 to 4:1 w/w, the effective drug diffusion coefficient in the micro-matrix increased from 5.8 x 10-10 to 8.6 x 10-9 (cm2/h). In addition, probably due to formation of a stable molecular dispersion promoted by hydrogen bonding between nifedipine and the polymers, no significant changes in the nifedipine physical form or release kinetics were observed after 1-year storage at ambient room temperature followed by 3-month accelerated stability at 40 degrees C/75% RH in a closed container.

摘要

本研究的目的是探索一种基质型微粒,其由药物与甲基丙烯酸铵共聚物和乙基纤维素二元共混物的固体分散体组成,用于难溶性药物硝苯地平的控释。使用相分离方法制备了由不同比例的乙基纤维素N7(N7)和尤特奇RL(RL)二元共混物组成的微粒。通过偏光显微镜、差示扫描量热法(DSC)、傅里叶变换红外光谱和紫外可见光谱、稳定性和药物释放研究,评估了基质组成对微粒性质的影响。研究结果表明,RL与N7的比例影响微粒的粒径分布、颗粒形态和药物释放速率。当RL与N7的比例为1:1至2:1 w/w时,可获得粒径分布窄且具有控释特性的离散球形微粒。对这些微粒的固态表征和释放动力学研究证实,硝苯地平从微粒中的释放遵循Baker和Lonsdale(1974年)针对含有溶解药物的微球的基质扩散模型,硝苯地平在微粒基质中的扩散是限速步骤。随着RL与N7的比例从0:1变为4:1 w/w,微基质中有效药物扩散系数从5.8×10-10增加到8.6×10-9(cm2/h)。此外,可能由于硝苯地平与聚合物之间通过氢键促进形成稳定的分子分散体,在室温环境下储存1年,随后在40℃/75%相对湿度的密闭容器中进行3个月加速稳定性试验后,未观察到硝苯地平物理形态或释放动力学的显著变化。

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