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首页> 外文期刊>Journal of pharmaceutical sciences. >Dynamics and control of percutaneous drug absorption in the presence of epidermal turnover.
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Dynamics and control of percutaneous drug absorption in the presence of epidermal turnover.

机译:在表皮更新的情况下经皮药物吸收的动力学和控制。

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摘要

The integration of epidermal turnover into the study of transdermal drug-delivery kinetics is addressed in light of classical control theory. A mathematical representation of the process, which includes Fickian diffusion and advection, was formulated in the frequency domain. This transformation facilitated a detailed analysis of the system dynamics and revealed the intricate relationships among a medicament transient absorption through the skin, the epidermal turnover rate, its physicochemical properties and the amount of drugs in a reservoir. The process, represented by transcendental transfer functions, was reduced to a second-order system with dead-time by minimizing the squared magnitude of the complex error between the original and simplified models. Clinically relevant parameters, such as the time to reach steady-state flux or drug concentration in the skin layers, are readily available from the low-order models. The time it takes to deliver a specified dose of drug to a particular depth in the skin is a function of the penetration depth and the diffusion coefficients of the drug molecules in the stratum corneum and the viable epidermis. An optimum administration protocol was developed for the transdermal delivery of chemicals when epidermal turnover is likely to affect their absorption into the systemic circulation.
机译:表皮周转集成到透皮药物传递动力学的研究是根据经典控制理论解决的。在频域中对过程进行了数学表示,其中包括菲克扩散和对流。这种转变促进了系统动力学的详细分析,并揭示了药物通过皮肤的瞬时吸收,表皮周转率,其理化特性和储库中药物量之间的复杂关系。通过将原始模型和简化模型之间的复数误差的平方幅度最小化,将以先验传递函数为代表的过程简化为具有死区时间的二阶系统。临床相关参数,例如达到稳态流量或皮肤层中药物浓度的时间,很容易从低阶模型中获得。将指定剂量的药物输送到皮肤中特定深度所花费的时间取决于角质层和活表皮中药物分子的渗透深度和扩散系数。当表皮周转可能影响其吸收到体循环中时,开发了一种最佳的给药方案,用于化学药品的经皮输送。

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