...
首页> 外文期刊>European journal of pharmaceutical sciences >Determination of the partition coefficients and absorption kinetic parameters of chemicals in a lipophilic membrane/water system by using a membrane-coated fiber technique.
【24h】

Determination of the partition coefficients and absorption kinetic parameters of chemicals in a lipophilic membrane/water system by using a membrane-coated fiber technique.

机译:通过使用膜包被的纤维技术测定亲脂性膜/水系统中化学物质的分配系数和吸收动力学参数。

获取原文
获取原文并翻译 | 示例

摘要

The absorption kinetics of chemicals in a lipophilic membrane/water system was studied with a membrane-coated fiber (MCF) technique, in which the partition coefficient, membrane diffusivity and boundary layer adjacent to the membrane were taken into account. The cumulative amount permeated into the membrane was expressed as a function of absorption time in an exponential equation. Two constants were introduced into the model. Both of them were clearly defined by the physiochemical parameters of the system and were obtained by regression of the experimental data sampled over a limited time. The partition and diffusion coefficients, as well as the thickness of the boundary layer, were calculated from the two constants. The kinetic model adequately described the absorption kinetics of the MCF technique. All of the theoretical predictions were supported by the experimental results. The measured partition coefficients correlated well with the published octanol/water partition coefficient (R(2)=0.91). The thickness of the boundary layer was 5.2 microm in a solution stirred at 400 rpm. An inference of the kinetic model revealed that the contribution of the boundary layer to the absorption kinetics is significant for lipophilic chemicals by a lipophilic membrane. It suggested that the absorption rate of a very lipophilic compound could be controlled by the boundary layer even though the diffusivity of the compound in the membrane is lower than that in the solution. It was demonstrated that the MCF technique could be used to determine the partition, diffusion and permeation coefficients, as well as the thickness of the boundary layer in a lipophilic membrane/water system.
机译:利用膜包覆纤维(MCF)技术研究了亲脂性膜/水系统中化学物质的吸收动力学,其中考虑了分配系数,膜扩散系数和与膜相邻的边界层。渗透到膜中的累积量在指数方程中表示为吸收时间的函数。模型中引入了两个常数。两者均由系统的物理化学参数明确定义,并且是通过在有限的时间内对所采样的实验数据进行回归获得的。由两个常数计算分配系数和扩散系数,以及边界层的厚度。动力学模型充分描述了MCF技术的吸收动力学。所有的理论预测都得到了实验结果的支持。测得的分配系数与已发布的辛醇/水分配系数具有很好的相关性(R(2)= 0.91)。在以400rpm搅拌的溶液中,边界层的厚度为5.2微米。动力学模型的推论表明,对于亲脂性膜的亲脂性化学物质,边界层对吸收动力学的贡献是显着的。这表明,即使亲脂性化合物在膜中的扩散率低于溶液中的扩散率,也可以通过边界层控制其吸收速率。结果表明,MCF技术可用于确定亲脂膜/水系统中的分配系数,扩散系数和渗透系数,以及边界层的厚度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号