首页> 外文期刊>International Journal of Pharmaceutics >Investigation of drug release from suspension using FTIR-ATR technique: part I. Determination of effective diffusion coefficient of drugs.
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Investigation of drug release from suspension using FTIR-ATR technique: part I. Determination of effective diffusion coefficient of drugs.

机译:使用FTIR-ATR技术从悬浮液中释放药物的研究:第一部分。药物有效扩散系数的确定。

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摘要

Fourier transform infrared attenuated total reflectance (FTIR-ATR) spectroscopy was used to study directly the release of drug particles (ketoconazole) in a liquid medium (paraffinum liquidum). In the case of the release experiment, the formulation is placed on the ATR crystal and the acceptor membrane on the top of the ointment. The decrease of the drug content in the sediment near the interface ATR crystal-formulation in the course of the release process was quantified by monitoring the changes of the IR spectrum in relevant spectral ranges using multivariate analysis. A mathematical model based on Fick's second law with appropriate initial and boundary conditions was applied in order to determine the diffusion coefficient of the drug in the liquid medium. Knowing this value, it is possible to calculate the effective diffusion coefficient of the drug in heterogeneous semisolid formulation (Vaseline) as a function of the volume fraction of the solid phase.
机译:傅里叶变换红外衰减全反射(FTIR-ATR)光谱用于直接研究液体介质(石蜡液体)中药物颗粒(酮康唑)的释放。在释放实验的情况下,将制剂放置在ATR晶体和软膏顶部的受体膜上。通过使用多变量分析监测相关光谱范围内的红外光谱变化,可以量化释放过程中界面ATR晶体配方附近沉积物中药物含量的降低。为了确定药物在液体介质中的扩散系数,应用了基于菲克第二定律的数学模型,该模型具有适当的初始条件和边界条件。知道该值,就可以计算药物在异质半固体制剂(凡士林)中的有效扩散系数,它是固相体积分数的函数。

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