Majeed Abdul, Ranjha Nazar Muhammad, Hanif Muhammad, Abbas Ghulam, Khan Mahtab Ahmad
Acta Pol Pharm. 2017 Mar;74(2):565-578.
The objective of this study was to prepare and evaluate ivabradine HCl-loaded microspheres consisting of Eudragit LIOO-55 and ethyl cellulose prepared by oil-in-oil solvent evaporation method. Ivabradine HCl was encapsulated into microspheres by in situ method. The resultant microspheres were characterized with respect to drug loading, flow properties, Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), X-ray diffractometry (XRD), thermal analysis and release behavior. Chemical stability of IBH after being encapsulated into microspheres was confirmed by FTR, DSC and XRD. FTIR spectra reflect- ed no interaction between drug and excipients. TGA indicates that prepared microspheres showed much better thermal stability than pure drug ivabradine. SEM images showed formulation of microspheres in spherical shape. The maximum perceniage entrapment efficiency was found to be 81 ± 2.15 and percentage yield was 88 ± 2.65. The maximum in vito drug release was 94.5% for the pH 7.4 and demonstrated that all drug-loaded formulations had a pH-dependent drug release. The cumulative drug release data were analyzed by applying different kinetic models. Korsmeyer-Peppas equation was used to determine value of n which follows non-Fickian diffusion.
本研究的目的是制备并评估采用油包油溶剂蒸发法制备的、由尤特奇LIOO - 55和乙基纤维素组成的载盐酸伊伐布雷定微球。盐酸伊伐布雷定通过原位法被包封入微球中。对所得微球进行了载药量、流动性、傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)、X射线衍射(XRD)、热分析及释放行为等方面的表征。通过FTIR、差示扫描量热法(DSC)和XRD证实了IBH被包封入微球后的化学稳定性。FTIR光谱表明药物与辅料之间无相互作用。热重分析(TGA)表明制备的微球显示出比纯药物盐酸伊伐布雷定更好的热稳定性。SEM图像显示微球呈球形。最大包封率为81±2.15,产率为88±2.65。在pH 7.4条件下,体外最大药物释放率为94.5%,表明所有载药制剂均具有pH依赖性药物释放。应用不同的动力学模型分析累积药物释放数据。采用Korsmeyer - Peppas方程确定遵循非Fickian扩散的n值。