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Assessment of Finite and Infinite Dose In Vitro Experiments in Transdermal Drug Delivery

机译:在透皮药物递送中的有限和无限剂量的评估

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摘要

Penetration, usually with finite dosing, provides data about the total active amount in the skin and permeation, being the most used methodology, usually with infinite dosing, leads to data about pharmacokinetic parameters. The main objective of this work is to assess if results from permeation, most of them at finite dose, may be equivalent to those from penetration usually at infinite dose. The transdermal behavior of four drugs with different physicochemical properties (diclofenac sodium, ibuprofen, lidocaine, and caffeine) was studied using penetration/finite and kinetic permeation/infinite dose systems using vertical Franz diffusion cells to determine the relationships between permeation and penetration profiles. Good correlation of these two in vitro assays is difficult to find; the influence of their dosage and the proportion of different ionized/unionized compounds due to the pH of the skin layers was demonstrated. Finite and infinite dose regimens have different applications in transdermal delivery. Each approach presents its own advantages and challenges. Pharmaceutical industries are not always clear about the method and the dose to use to determine transdermal drug delivery. Being aware that this study presents results for four actives with different physicochemical properties, it can be concluded that the permeation/infinite results could not be always extrapolated to those of penetration/finite. Differences in hydrophilicity and ionization of drugs can significantly influence the lack of equivalence between the two methodologies. Further investigations in this field are still needed to study the correlation of the two methodologies and the main properties of the drugs that should be taken into account.
机译:通常具有有限剂量的渗透,提供有关皮肤和渗透的总活性量的数据,是通常具有最常用的方法,通常具有无限剂量,导致有关药代动力学参数的数据。这项工作的主要目的是评估渗透的结果,其中大多数在有限剂量时,可能与通常在无限剂量下的渗透的结果。使用垂直FRANZ扩散细胞使用垂直/有限和动力学渗透/无限剂量系统研究了四种具有不同物理化学性质(双氯芬酸钠,布洛芬,利多卡因和咖啡因)的透皮行为,以确定渗透和穿透剖之间的关系。这两个体外测定的良好相关性很难找到;证实了它们的用量和不同电离/单次化合物的比例由于皮肤层的pH值。有限且无限剂量方案在透皮递送中具有不同的应用。每种方法都具有自己的优势和挑战。制药行业并不总是清楚使用用于确定透皮药物递送的方法和剂量。如图所知,本研究提出了具有不同物理化学性质的四个活性物质的结果,可以得出结论,渗透/无限效果不能被推断为渗透/有限的结果。药物亲水性和电离的差异可以显着影响两种方法之间的等效性。仍然需要在该领域进一步调查来研究两种方法的相关性和应考虑的药物的主要性质。

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