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首页> 外文期刊>Instrumentation science & technology: Designs and applications for chemistry, biotechnology, and environmental science >Investigation of drugs diffusion into collodion membranes using FTIR-ATR and step-scan FTIR-PAS techniques
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Investigation of drugs diffusion into collodion membranes using FTIR-ATR and step-scan FTIR-PAS techniques

机译:使用FTIR-ATR和步进扫描FTIR-PAS技术研究药物扩散到胶棉膜中

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摘要

Fourier transform infrared attenuated total reflectance (FTIR-ATR) and step-scan Fourier transform infrared photoacoustic spectroscopic (FTIR-PAS) techniques were applied to analyze penetration of dithranol and ketoconazole into artificial dodecanol-collodion (DDC) membranes. Based on Fick's second law, the problem of a drug's spatial and time dependent distribution in the membrane was solved. Dithranol diffusion results obtained by FTIR-ATR measurement were used to verify correctness of the obtained solution. Comparing experimental data with a theoretical curve allowed for determination of the diffusion coefficient of dithranol in the DDC membrane. Based on a model describing the concentration of diffusing matter, it was possible to calculate distribution of heat sources and the temperature distribution in the membrane illuminated by modulated light. A proposed mathematical model was used for interpretation of step-scan FTIR-PAS data. Using a multiparameter fitting procedure, one has determined the diffusion coefficient of ketoconazole in the DC membrane. Obtained results confirmed usability of FTIR-ATR and step-scan FTIR-PAS techniques for studies of diffusion processes.
机译:傅里叶变换红外衰减全反射率(FTIR-ATR)和阶跃扫描傅里叶变换红外光声光谱(FTIR-PAS)技术被用于分析二乙醇胺和酮康唑对人造十二烷胶棉(DDC)膜的渗透性。基于菲克第二定律,解决了药物在膜中的时空分布问题。通过FTIR-ATR测量获得的二烷醇扩散结果用于验证所获得溶液的正确性。将实验数据与理论曲线进行比较,可以确定二硫醇在DDC膜中的扩散系数。基于描述扩散物质浓度的模型,可以计算热源的分布和被调制光照射的膜中的温度分布。提出的数学模型用于解释步扫描FTIR-PAS数据。使用多参数拟合程序,已经确定了酮康唑在DC膜中的扩散系数。获得的结果证实了FTIR-ATR和步进扫描FTIR-PAS技术在研究扩散过程中的可用性。

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