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体内经皮吸收:角质层/载体分配的关键作用。

In vivo percutaneous absorption: a key role for stratum corneum/vehicle partitioning.

作者信息

Rougier A, Rallis M, Krien P, Lotte C

机构信息

Départment de Biologie, Centre de Recherche Fondamentale de l'Oreal, Aulnay sous Bois, France.

出版信息

Arch Dermatol Res. 1990;282(8):498-505. doi: 10.1007/BF00371943.

Abstract

Percutaneous absorption of five compounds was studied in the hairless rat in vivo: benzoic acid, caffeine, hydrocortisone, inulin and thiourea. The results clearly demonstrate that, as with in vitro experiments, a steady-state flux can be achieved in vivo. This steady-state flux is strongly molecule dependent. Thus, the values for inulin and benzoic acid differ by a factor of about 40. In contrast, although the physicochemical properties of the studied compounds vary widely, their lag times were not significantly different. The mean lag time was 11 +/- 2 min. Different compounds could be considered to have approximately the same apparent diffusion coefficient with regard to their percutaneous absorption in vivo. Thus, for a given thickness of stratum corneum and a given anatomical site, the penetration flux value of a substance depends only on its stratum corneum/vehicle partition coefficient. Using a classical model, we have demonstrated that the amount of substance present in the stratum corneum (Qsc) at equilibrium (30 min) is related to this partition coefficient. There is also a linear relationship between steady-state flux and Qsc. In practice, the in vivo steady-state flux of penetration of a compound can be predicted from the simple measurement of the amount present in the stratum corneum after a contact time of 30 min.

摘要

在无毛大鼠体内研究了五种化合物的经皮吸收情况,这五种化合物分别为苯甲酸、咖啡因、氢化可的松、菊粉和硫脲。结果清楚地表明,与体外实验一样,在体内也可实现稳态通量。这种稳态通量强烈依赖于分子。因此,菊粉和苯甲酸的值相差约40倍。相比之下,尽管所研究化合物的物理化学性质差异很大,但其滞后时间并无显著差异。平均滞后时间为11±2分钟。就其体内经皮吸收而言,不同化合物可被认为具有大致相同的表观扩散系数。因此,对于给定厚度的角质层和给定的解剖部位,一种物质的渗透通量值仅取决于其角质层/载体分配系数。使用经典模型,我们已证明平衡状态(30分钟)时角质层中存在的物质总量(Qsc)与该分配系数相关。稳态通量与Qsc之间也存在线性关系。实际上,一种化合物的体内经皮渗透稳态通量可通过在接触30分钟后简单测量角质层中存在的物质量来预测。

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