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利用等离子体表面处理提高人体三维皮肤等效物的稳定性。

Improving stability of human three dimensional skin equivalents using plasma surface treatment.

机构信息

Graduate Program in Biotechnology, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.

Center of Excellence in Materials and Bio-Interfaces, Chulalongkorn University, Bangkok, Thailand.

出版信息

Biotechnol Bioeng. 2024 Jun;121(6):1950-1960. doi: 10.1002/bit.28690. Epub 2024 Mar 12.

Abstract

In developing three-dimensional (3D) human skin equivalents (HSEs), preventing dermis and epidermis layer distortion due to the contraction of hydrogels by fibroblasts is a challenging issue. Previously, a fabrication method of HSEs was tested using a modified solid scaffold or a hydrogel matrix in combination with the natural polymer coated onto the tissue culture surface, but the obtained HSEs exhibited skin layer contraction and loss of the skin integrity and barrier functions. In this study, we investigated the method of HSE fabrication that enhances the stability of the skin model by using surface plasma treatment. The results showed that plasma treatment of the tissue culture surface prevented dermal layer shrinkage of HSEs, in contrast to the HSE fabrication using fibronectin coating. The HSEs from plasma-treated surface showed significantly higher transepithelial electrical resistance compared to the fibronectin-coated model. They also expressed markers of epidermal differentiation (keratin 10, keratin 14 and loricrin), epidermal tight junctions (claudin 1 and zonula occludens-1), and extracellular matrix proteins (collagen IV), and exhibited morphological characteristics of the primary human skins. Taken together, the use of plasma surface treatment significantly improves the stability of 3D HSEs with well-defined dermis and epidermis layers and enhanced skin integrity and the barrier functions.

摘要

在开发三维(3D)人体皮肤等效物(HSE)时,防止成纤维细胞引起的水凝胶收缩导致真皮和表皮层变形是一个具有挑战性的问题。以前,已经使用经过改良的固体支架或水凝胶基质结合涂覆在组织培养表面的天然聚合物测试了 HSE 的制造方法,但是所获得的 HSE 表现出皮肤层收缩以及皮肤完整性和屏障功能丧失。在这项研究中,我们研究了通过使用表面等离子体处理来增强皮肤模型稳定性的 HSE 制造方法。结果表明,与使用纤连蛋白涂层的 HSE 制造相比,组织培养表面的等离子体处理可防止 HSE 的真皮层收缩。与纤连蛋白涂层模型相比,来自等离子体处理表面的 HSE 显示出明显更高的跨上皮电阻。它们还表达了表皮分化标志物(角蛋白 10、角蛋白 14 和板层素)、表皮紧密连接(闭合蛋白 1 和封闭蛋白-1)和细胞外基质蛋白(IV 型胶原),并表现出原发性人皮肤的形态特征。总之,使用等离子体表面处理可显著提高具有明确真皮和表皮层以及增强的皮肤完整性和屏障功能的 3D HSE 的稳定性。

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