Evaluation of drug release from topical dosage forms and permeability prediction through the skin barrier (review)

N. Melnikova, I. A. Sheferov, A. A. Emasheva, A. A. Sheferova, D. A. Panteleev, A. I. Slivkin
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Abstract

Introduction. The review considered the basic concepts of drug release and kinetic modeling of this process from dosage forms (DF) according to the dissolution profile using a vertical Franz diffusion cell.Text. Drug release from dosage forms (ointments, gels, transdermal patches and polymer films) is usually described as the processes of drug dissolution in the biological system. Formally, this process, in accordance with pharmacopoeial methods, is assessed using various solubility tests. The theoretical aspects of drug release are based on the theory of mass transfer of substances from a polymer matrix into a system that simulates a biological environment. Drug release can be carried out via the passive diffusion mechanism according to Fick and "non-Fick" diffusion, drug desorption from the inner side of the membrane, as well as other mechanisms. Drug release is determined both lipophilicity and the membrane nature, both various physicochemical parameters of the drug. One of the correlation characteristics of mass transfer is the assessment of the permeability coefficient for a specific membrane that simulates skin. Permeability coefficient describes the rate of penetration of a drug per unit concentration in distance/time units. An example of relationship of "structure-permeability" correlation are the equations relating the permeability constant and lipophilicity to the molecular weight of the drug. The paper showed statistical methods of data analysis (MANOVA, ANOVA) and model-dependent methods (zero order, first order, Higuchi model, Korsmeyer – Peppas model, Hixson – Crowell model, etc.). The ideal drug delivery of non-degradable and non-disaggregating drugs describes as drug release model by zero-order reaction. For drug release of water-soluble drugs from a porous matrix, first-order reaction model is more typical. Kinetic models of fractional power functions are used usually as the cube root law (Hixson – Crowell model) or the square root law (Higuchi model) to describe the process of drug release from gels and dermal films and patches. The Korsmeyer – Peppas model allows us to evaluate the mechanism of mass transfer with Fickian diffusion or another process.Conclusion. Mathematical modeling of the drug release kinetics from soft dosage forms is an important element for the development and optimization of their compositions. The study of the drugs release from soft dosage forms, including TTS and polymer films, as well as the release from solid dosage forms, is based on establishing correlations between the kinetics of the release and dissolution profile. The main release models, regardless of the DF, remain the following models: zero order, first order, Korsmeyer – Peppas, Higuchi, Hickson – Crowell, the empirical or semi-empirical constants of which vary significantly depending on the DF and the release mechanism (Fickian diffusion or another drug mass transfer mechanism). Correlation relationships QSPeR or QSPR, using the coefficients of permeability, diffusion and lipophilicity, provide information on the mass transfer of drugs through the skin.
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评估外用剂型的药物释放和通过皮肤屏障的渗透性预测(综述)
简介。这篇综述探讨了药物释放的基本概念,以及使用垂直弗朗兹扩散池根据溶解曲线对药物从剂型(DF)释放的过程进行动力学建模。药物从剂型(软膏、凝胶、透皮贴剂和聚合物薄膜)中的释放通常被描述为药物在生物系统中的溶解过程。在形式上,根据药典方法,这一过程通过各种溶解度测试进行评估。药物释放的理论基础是物质从聚合物基质向模拟生物环境的系统传质的理论。药物释放可通过菲克和 "非菲克 "扩散的被动扩散机制、药物从膜内侧的解吸以及其他机制进行。药物释放既取决于亲脂性,也取决于膜的性质,还取决于药物的各种理化参数。质量传递的相关特性之一是对模拟皮肤的特定膜的渗透系数进行评估。渗透系数描述了以距离/时间为单位的单位浓度药物的渗透率。结构-渗透性 "相关关系的一个例子是渗透性常数和亲油性与药物分子量之间的关系式。论文展示了数据分析的统计方法(MANOVA、ANOVA)和依赖模型的方法(零阶、一阶、Higuchi 模型、Korsmeyer - Peppas 模型、Hixson - Crowell 模型等)。非降解和非分解药物的理想给药方式是零阶反应药物释放模型。对于水溶性药物从多孔基质中的药物释放,一阶反应模型更为典型。分数幂函数动力学模型通常采用立方根定律(Hixson - Crowell 模型)或平方根定律(Higuchi 模型)来描述凝胶、皮肤薄膜和贴剂的药物释放过程。通过 Korsmeyer - Peppas 模型,我们可以评估菲克扩散或其他过程的传质机制。软制剂药物释放动力学数学模型是开发和优化软制剂成分的重要因素。研究药物从软剂型(包括 TTS 和聚合物薄膜)以及固体剂型中的释放,是以建立释放动力学和溶解曲线之间的相关性为基础的。无论 DF 如何,主要的释放模型仍然是以下几种:零阶、一阶、Korsmeyer - Peppas、Higuchi、Hickson - Crowell,其经验或半经验常数因 DF 和释放机制(费克扩散或其他药物质量转移机制)的不同而有很大差异。相关关系 QSPeR 或 QSPR 使用渗透系数、扩散系数和亲油系数,可提供药物通过皮肤传质的信息。
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