Univ. Lille Nord de France, College of Pharmacy, 3 Rue du Professeur Laguesse, 59006 Lille, France.
Int J Pharm. 2011 Oct 10;418(1):6-12. doi: 10.1016/j.ijpharm.2011.03.051. Epub 2011 Mar 31.
Fifty years ago, the legendary Professor Takeru Higuchi published the derivation of an equation that allowed for the quantification of drug release from thin ointment films, containing finely dispersed drug into a perfect sink. This became the famous Higuchi equation whose fiftieth anniversary we celebrate this year. Despite the complexity of the involved mass transport processes, Higuchi derived a very simple equation, which is easy to use. Based on a pseudo-steady-state approach, a direct proportionality between the cumulative amount of drug released and the square root of time can be demonstrated. In contrast to various other "square root of time" release kinetics, the constant of proportionality in the classical Higuchi equation has a specific, physically realistic meaning. The major benefits of this equation include the possibility to: (i) facilitate device optimization, and (ii) to better understand the underlying drug release mechanisms. The equation can also be applied to other types of drug delivery systems than thin ointment films, e.g., controlled release transdermal patches or films for oral controlled drug delivery. Later, the equation was extended to other geometries and related theories have been proposed. The aim of this review is to highlight the assumptions the derivation of the classical Higuchi equation is based on and to give an overview on the use and potential misuse of this equation as well as of related theories.
五十年前,传奇教授 Takeru Higuchi 推导出了一个方程,该方程可用于量化从含有精细分散药物的薄软膏膜中释放药物到理想溶出介质的过程。这就是著名的 Higuchi 方程,今年我们将庆祝它的五十周年。尽管涉及的传质过程非常复杂,但 Higuchi 推导出了一个非常简单易用的方程。基于准稳态方法,可以证明累积释放的药物量与时间的平方根之间存在直接的比例关系。与各种其他“时间平方根”释放动力学不同,经典 Higuchi 方程中的比例常数具有特定的、物理现实的意义。该方程的主要优点包括:(i)促进器械优化,(ii)更好地理解潜在的药物释放机制。该方程还可应用于除薄软膏膜以外的其他类型的药物传递系统,例如控释透皮贴剂或用于口服控释药物传递的薄膜。后来,该方程被扩展到其他几何形状,并且已经提出了相关理论。本文的目的是强调推导经典 Higuchi 方程所基于的假设,并概述该方程的使用和潜在误用以及相关理论。