Papadopoulou Vasiliki, Kosmidis Kosmas, Vlachou Marilena, Macheras Panos
School of Pharmacy, University of Athens, Athens 15771, Greece.
Int J Pharm. 2006 Feb 17;309(1-2):44-50. doi: 10.1016/j.ijpharm.2005.10.044. Epub 2005 Dec 20.
Previous findings from our group based on Monte Carlo simulations indicated that Fickian drug release from Euclidian or fractal matrices can be described with the Weibull function. In this study, the entire drug release kinetics of various published data and experimental data from commercial or prepared controlled release formulations of diltiazem and diclofenac are analyzed using the Weibull function. The exponent of time b of the Weibull function is linearly related to the exponent n of the power law derived from the analysis of the first 60% of the release curves. The value of the exponent b is an indicator of the mechanism of transport of a drug through the polymer matrix. Estimates for b< or =0.75 indicate Fickian diffusion in either fractal or Euclidian spaces while a combined mechanism (Fickian diffusion and Case II transport) is associated with b values in the range 0.75<b<1. For values of b higher than 1, the drug transport follows a complex release mechanism.
我们团队之前基于蒙特卡洛模拟的研究结果表明,从欧几里得或分形基质中进行的菲克型药物释放可用威布尔函数来描述。在本研究中,使用威布尔函数分析了来自商业或自制的地尔硫卓和双氯芬酸控释制剂的各种已发表数据及实验数据的整个药物释放动力学。威布尔函数中时间指数b与从释放曲线前60%的分析得出的幂律指数n呈线性相关。指数b的值是药物通过聚合物基质的转运机制的一个指标。b≤0.75的估计值表明在分形或欧几里得空间中为菲克扩散,而组合机制(菲克扩散和第二类转运)与0.75 < b < 1范围内的b值相关。对于b大于1的值,药物转运遵循复杂的释放机制。