Exp Dermatol. 2012 Mar;21(3):233-5. doi: 10.1111/j.1600-0625.2011.01424.x.
For finite dose skin absorption experiments, a homogeneous donor distribution over the skin surface is usually assumed. However, the influence of the surface distribution on skin absorption is still unknown. The aim of this study was to evaluate the influence of the application area on the permeation of drugs during finite dose skin absorption experiments in static Franz diffusion cells. Permeation experiments with stained aqueous drug formulations were conducted, and the application area was determined by a suitable, objective, automated computational approach. The permeation of caffeine is strongly dependent on the application area. The variability between single experiments decreased when including the application area. For the lipophilic flufenamic acid, this was not the case. The variability highly increased after inclusion of the application area. Thus, a correction of the area is misleading. In summary, depending on the drug's physicochemical characteristics, the application area may influence skin absorption.
对于有限剂量皮肤吸收实验,通常假设皮肤表面的供体分布是均匀的。然而,表面分布对皮肤吸收的影响尚不清楚。本研究的目的是评估在静态Franz 扩散池中进行有限剂量皮肤吸收实验时,给药面积对药物渗透的影响。通过合适的、客观的、自动化的计算方法,对染色水溶液药物制剂进行渗透实验,并确定给药面积。咖啡因的渗透强烈依赖于给药面积。当包括给药面积时,单次实验的变异性降低。对于亲脂性的氟芬那酸,情况并非如此。包括给药面积后,变异性大大增加。因此,对面积进行校正会产生误导。总之,根据药物的物理化学特性,给药面积可能会影响皮肤吸收。