CHA University College of Medicine, Seongnam, Korea.
Department of Dermatology, CHA Bundang Medical Center, Seongnam, Korea.
Yonsei Med J. 2021 Nov;62(11):969-980. doi: 10.3349/ymj.2021.62.11.969.
The skin is the first line of defense of our body, and it is composed of the epidermis and dermis with diverse immune cells. Various in vitro models have been investigated to recapitulate the immunological functions of the skin and to model inflammatory skin diseases. The simplest model is a two-dimensional (2D) co-culture system, which helps understand the direct and indirect cell-to-cell interactions between immune and structural cells; however, it has limitations when observing three-dimensional (3D) interactions or reproducing skin barriers. Conversely, 3D skin constructs can mimic the human skin characteristics in terms of epidermal and dermal structures, barrier functions, cell migration, and cell-to-cell interaction in the 3D space. Recently, as the importance of neuro-immune-cutaneous interactions in the inflammatory response is emerging, 3D skin constructs containing both immune cells and neurons are being developed. A microfluidic culture device called "skin-on-a-chip," which simulates the structures and functions of the human skin with perfusion, was also developed to mimic immune cell migration through the vascular system. This review summarizes the in vitro skin models with immune components, focusing on two highly prevalent chronic inflammatory skin diseases: atopic dermatitis and psoriasis. The development of these models will be valuable in studying the pathophysiology of skin diseases and evaluating the efficacy and toxicity of new drugs.
皮肤是人体的第一道防线,由表皮和真皮组成,其中包含多种免疫细胞。为了重现皮肤的免疫学功能并对炎症性皮肤病进行建模,已经研究了各种体外模型。最简单的模型是二维(2D)共培养系统,有助于理解免疫细胞和结构细胞之间的直接和间接细胞间相互作用;然而,当观察三维(3D)相互作用或再现皮肤屏障时,它存在局限性。相反,3D 皮肤构建体可以在表皮和真皮结构、屏障功能、细胞迁移和 3D 空间中的细胞间相互作用方面模拟人体皮肤的特征。最近,由于神经免疫皮肤相互作用在炎症反应中的重要性日益凸显,正在开发包含免疫细胞和神经元的 3D 皮肤构建体。一种称为“芯片上皮肤”的微流控培养装置也得到了发展,它通过灌注模拟了人类皮肤的结构和功能,以模拟免疫细胞通过血管系统的迁移。本综述总结了具有免疫成分的体外皮肤模型,重点介绍了两种常见的慢性炎症性皮肤病:特应性皮炎和银屑病。这些模型的发展对于研究皮肤病的病理生理学以及评估新药的疗效和毒性将具有重要价值。