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由重组丝支撑的独立单层和双层人体皮肤 3D 模型具有天然的空间组织。

Standalone single- and bi-layered human skin 3D models supported by recombinant silk feature native spatial organization.

机构信息

Division of Protein Technology, Department of Protein Science, KTH Royal Institute of Technology, Stockholm, Sweden.

Science for Life Laboratory, Department of Gene Technology, KTH Royal Institute of Technology, Stockholm, Sweden.

出版信息

Biofabrication. 2024 Nov 5;17(1). doi: 10.1088/1758-5090/ad8b72.

Abstract

Physiologically relevant human skin models that include key skin cell types can be used fordrug testing, skin pathology studies, or clinical applications such as skin grafts. However, there is still no golden standard for such a model. We investigated the potential of a recombinant functionalized spider silk protein, FN-silk, for the construction of a dermal, an epidermal, and a bilayered skin equivalent (BSE). Specifically, two formats of FN-silk (i.e. 3D network and nanomembrane) were evaluated. The 3D network was used as an elastic ECM-like support for the dermis, and the thin, permeable nanomembrane was used as a basement membrane to support the epidermal epithelium. Immunofluorescence microscopy and spatially resolved transcriptomics analysis demonstrated the secretion of key ECM components and the formation of microvascular-like structures. Furthermore, the epidermal layer exhibited clear stratification and the formation of a cornified layer, resulting in a tight physiologic epithelial barrier. Our findings indicate that the presented FN-silk-based skin models can be proposed as physiologically relevant standalone epidermal or dermal models, as well as a combined BSE.

摘要

生理相关的人类皮肤模型,包括关键的皮肤细胞类型,可以用于药物测试、皮肤病理学研究或临床应用,如皮肤移植。然而,目前仍然没有这样的模型的黄金标准。我们研究了重组功能化蜘蛛丝蛋白 FN-silk 在构建真皮、表皮和双层皮肤等效物 (BSE) 方面的潜力。具体而言,我们评估了两种形式的 FN-silk(即 3D 网络和纳米膜)。3D 网络被用作真皮的弹性细胞外基质样支撑物,而薄的、可渗透的纳米膜被用作支持表皮上皮的基底膜。免疫荧光显微镜和空间分辨转录组学分析表明,关键细胞外基质成分的分泌和微血管样结构的形成。此外,表皮层表现出明显的分层和角质层的形成,导致紧密的生理上皮屏障。我们的研究结果表明,所提出的基于 FN-silk 的皮肤模型可以作为生理相关的独立表皮或真皮模型,以及组合的 BSE。

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