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首页> 外文期刊>Journal of pharmaceutical sciences. >Prediction of steady-state skin permeabilities of polar and nonpolar permeants across excised pig skin based on measurements of transient diffusion: Characterization of hydration effects on the skin porous pathway.
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Prediction of steady-state skin permeabilities of polar and nonpolar permeants across excised pig skin based on measurements of transient diffusion: Characterization of hydration effects on the skin porous pathway.

机译:基于瞬态扩散的测量值,预测经过切除的猪皮肤上极性和非极性渗透物的稳态皮肤渗透性:水合对皮肤多孔途径的影响。

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The applicability of a two-parameter Fickian diffusion model for predicting the skin steady-state permeability based on measurements of the transient transport of permeants across the skin was tested. Using five model permeants possessing different physicochemical properties and pig skin as the model membrane, the skin permeabilities predicted by the two-parameter Fickian diffusion model were compared with the measured skin permeabilities. Results show that the transient skin permeation profiles of the hydrophobic permeants, estradiol, testosterone, and dolichol, across split-thickness pig skin can be modeled adequately by the two-parameter Fickian diffusion model (with constant parameter values), and therefore, that this model can be utilized to shorten the experimental time required to determine the skin permeabilities of these compounds. However, the skin permeabilities of the highly hydrophilic permeants, mannitol and sucrose, predicted by the two-parameter Fickian diffusion model (with constant parameter values) were significantly lower than the experimentally determined values, indicating that the dominant skin pathway of polar permeants within the excised pig skin undergoes significant structural changes during the in vitro diffusion cell studies. Although the skin permeability values determined experimentally using the traditional steady-state method normally correspond to a highly hydrated skin sample, the two-parameter Fickian diffusion model enables an estimation of the skin permeability of the skin membrane at its less-hydrated state (a condition more representative of in vivo and clinical situations). Using the two-parameter Fickian diffusion model and a recently developed skin porous-pathway theory, the effects of skin hydration on the skin porous pathway within the excised pig skin were characterized. Specifically, we found that hydration leads to induction of new pores/reduction of the tortuosity of existing pores within the excised pig skin during the 48 h diffusion cell studies conducted, while the skin average pore radii remain relatively constant ( approximately 26 A) for up to 48 h.
机译:测试了两参数Fickian扩散模型用于基于渗透物在皮肤上的瞬态传输的测量值预测皮肤稳态渗透性的适用性。以五种具有不同理化性质的模型渗透剂和猪皮为模型膜,将两参数菲克扩散模型预测的皮肤渗透率与测得的皮肤渗透率进行了比较。结果表明,可以通过两参数Fickian扩散模型(具有恒定的参数值)来充分建模整个分裂厚度的猪皮肤上疏水性渗透剂,雌二醇,睾丸激素和三醇的瞬时皮肤渗透曲线。该模型可用于缩短确定这些化合物的皮肤渗透性所需的实验时间。然而,通过两参数菲克扩散模型(具有恒定参数值)预测的高亲水性渗透剂,甘露醇和蔗糖的皮肤渗透率显着低于实验确定的值,表明极性渗透剂在皮肤内的主要皮肤途径在体外扩散细胞研究中,切除的猪皮发生了明显的结构变化。尽管使用传统稳态方法通过实验确定的皮肤渗透率值通常对应于水合程度高的皮肤样品,但两参数Fickian扩散模型可以估计水合程度较低的皮肤膜的皮肤渗透率(一种条件更能代表体内和临床情况)。使用两参数Fickian扩散模型和最近开发的皮肤多孔途径理论,表征了皮肤水合作用对切除猪皮内皮肤多孔途径的影响。具体而言,我们发现在进行的48 h扩散细胞研究中,水合导致诱导的新毛孔减少/切除的猪皮内现有毛孔的曲折性降低,而皮肤平均毛孔半径保持相对恒定(约26 A)。至48小时

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