Gupta E, Wientjes M G, Au J L
Division of Pharmaceutics, College of Pharmacy, Ohio State University, USA.
Pharm Res. 1995 Jan;12(1):108-12. doi: 10.1023/a:1016298906589.
The present study evaluated the kinetics of drug penetration in the dermis. A rat was given a dermal dose of 2',3'-dideoxyinosine (ddI). At 6 hr, the skin tissue was excised, immediately frozen and sectioned, and the decline of drug concentration as a function of tissue depth was determined. The tissue concentration-depth profile showed a semilogarithmic decline, as would be expected in a distributed tissue kinetic model which incorporates diffusion and capillary membrane transport. The goodness of fit of the profiles by the simple diffusion and the distributed models were compared using four statistical criteria, i.e., coefficient of determination. Akaike Information criterion, Schwartz criterion and Imbimbo criterion. These analyses showed that the decline of tissue concentration versus tissue depth in the dermis was better described by the distributed model than by the diffusion model in all 7 animals. To examine the effect of blood perfusion on the tissue concentration-depth profiles, some of the tissues were frozen after 1 and 2 hr storage at room temperature. In contrast to the adjacent tissues frozen immediately, the concentration-depth profiles in tissues frozen after a 1-2 hr delay were described equally well by distributed and diffusion models. A comparison of the concentration-depth profiles in the tissues processed immediately or after a delay showed a 7 fold more shallow slope and a 60% lower concentration at the epidermis-dermis interface after storage. However, storage did not alter the total amount of drug in the entire dermis. Drug degradation during storage was further ruled out by the insignificant ddI degradation in 10% skin homogenate (a half-life of approximately 70 hr).(ABSTRACT TRUNCATED AT 250 WORDS)
本研究评估了药物在真皮中的渗透动力学。给一只大鼠经皮给予2',3'-双脱氧肌苷(ddI)。6小时后,切除皮肤组织,立即冷冻并切片,测定药物浓度随组织深度的下降情况。组织浓度-深度曲线呈半对数下降,这在包含扩散和毛细血管膜转运的分布组织动力学模型中是预期的。使用四个统计标准,即决定系数、赤池信息准则、施瓦茨准则和因宾博准则,比较了简单扩散模型和分布模型对曲线的拟合优度。这些分析表明,在所有7只动物中,分布模型比扩散模型能更好地描述真皮中组织浓度随组织深度的下降情况。为了研究血液灌注对组织浓度-深度曲线的影响,一些组织在室温下储存1小时和2小时后冷冻。与立即冷冻的相邻组织相比,延迟1 - 2小时后冷冻的组织中的浓度-深度曲线用分布模型和扩散模型描述得同样好。比较立即处理或延迟处理的组织中的浓度-深度曲线,储存后表皮-真皮界面处的斜率浅7倍,浓度低60%。然而,储存并未改变整个真皮中的药物总量。10%皮肤匀浆中ddI降解不显著(半衰期约为70小时),进一步排除了储存期间的药物降解。(摘要截断于250字)