Instituto de Ciencias Ambientais Quimicas e Farmaceuticas, Universidade Federal de Sao Paulo, Diadema SP, Brazil.
Therapeutics Research Centre, the University of Queensland Diamantina Institute, Translational Research Institute, Brisbane, Australia.
Curr Top Med Chem. 2018;18(4):287-299. doi: 10.2174/1568026618666180412153214.
It is critical to develop an effective understanding of the interaction between the drug, delivery system and skin in order to predict and assess skin penetration and permeation. Experimental models for the assessment of topical and transdermal delivery systems must permit evaluation of these complex interactions. Whilst in the past, animal models were commonly used, recent regulatory guidelines, based on 3R principles (refinement, reduction, replacement), encourage the rational use of animals. Alternative methods have been proposed for use in the development of topical and transdermal delivery systems which are often used in combination. We will review the current state of the art in alternative methods for topical and transdermal delivery systems development, including technologies that can assist in the characterization of skin penetration/permeation studies.
为了预测和评估药物的经皮渗透和透过性,必须深入了解药物、传递系统和皮肤之间的相互作用。用于评估局部和经皮传递系统的实验模型必须允许评估这些复杂的相互作用。虽然过去通常使用动物模型,但基于 3R 原则(优化、减少、替代)的最新监管指南鼓励合理使用动物。已经提出了替代方法用于局部和经皮传递系统的开发,这些方法通常结合使用。我们将回顾局部和经皮传递系统开发的替代方法的最新技术,包括可以辅助皮肤渗透/透过性研究特征描述的技术。