Hofmann Elisabeth, Schwarz Anna, Fink Julia, Kamolz Lars-Peter, Kotzbeck Petra
COREMED-Centre of Regenerative and Precision Medicine, JOANNEUM RESEARCH Forschungsgesellschaft, 8010 Graz, Austria.
Division of Plastic, Aesthetic and Reconstructive Surgery, Department of Surgery, Medical University of Graz, 8036 Graz, Austria.
Biomedicines. 2023 Mar 6;11(3):794. doi: 10.3390/biomedicines11030794.
The skin serves as an important barrier protecting the body from physical, chemical and pathogenic hazards as well as regulating the bi-directional transport of water, ions and nutrients. In order to improve the knowledge on skin structure and function as well as on skin diseases, animal experiments are often employed, but anatomical as well as physiological interspecies differences may result in poor translatability of animal-based data to the clinical situation. In vitro models, such as human reconstructed epidermis or full skin equivalents, are valuable alternatives to animal experiments. Enormous advances have been achieved in establishing skin models of increasing complexity in the past. In this review, human skin structures are described as well as the fast evolving technologies developed to reconstruct the complexity of human skin structures in vitro.
皮肤是一道重要的屏障,可保护身体免受物理、化学和病原体危害,同时调节水、离子和营养物质的双向运输。为了增进对皮肤结构与功能以及皮肤疾病的了解,人们经常进行动物实验,但种间解剖学和生理学差异可能导致基于动物的数据难以转化为临床情况。体外模型,如人重建表皮或全皮肤等效物,是动物实验的宝贵替代方案。过去在建立复杂性不断增加的皮肤模型方面取得了巨大进展。在这篇综述中,将描述人类皮肤结构以及为在体外重建人类皮肤结构的复杂性而开发的快速发展的技术。