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利用图案生物打印技术构建异质且具有生理代表性的重建表皮皮肤模型。

Utilization of patterned bioprinting for heterogeneous and physiologically representative reconstructed epidermal skin models.

机构信息

L'Oréal Research and Innovation, Aulnay-sous-Bois, France.

出版信息

Sci Rep. 2021 Mar 18;11(1):6217. doi: 10.1038/s41598-021-85553-3.

Abstract

Organotypic skin tissue models have decades of use for basic research applications, the treatment of burns, and for efficacy/safety evaluation studies. The complex and heterogeneous nature of native human skin however creates difficulties for the construction of physiologically comparable organotypic models. Within the present study, we utilized bioprinting technology for the controlled deposition of separate keratinocyte subpopulations to create a reconstructed epidermis with two distinct halves in a single insert, each comprised of a different keratinocyte sub-population, in order to better model heterogonous skin and reduce inter-sample variability. As an initial proof-of-concept, we created a patterned epidermal skin model using GPF positive and negative keratinocyte subpopulations, both printed into 2 halves of a reconstructed skin insert, demonstrating the feasibility of this approach. We then demonstrated the physiological relevance of this bioprinting technique by generating a heterogeneous model comprised of dual keratinocyte population with either normal or low filaggrin expression. The resultant model exhibited a well-organized epidermal structure with each half possessing the phenotypic characteristics of its constituent cells, indicative of a successful and stable tissue reconstruction. This patterned skin model aims to mimic the edge of lesions as seen in atopic dermatitis or ichthyosis vulgaris, while the use of two populations within a single insert allows for paired statistics in evaluation studies, likely increasing study statistical power and reducing the number of models required per study. This is the first report of human patterned epidermal model using a predefined bioprinted designs, and demonstrates the relevance of bioprinting to faithfully reproduce human skin microanatomy.

摘要

器官型皮肤组织模型在基础研究应用、烧伤治疗以及功效/安全性评估研究中已有数十年的应用历史。然而,由于天然人皮肤的复杂性和异质性,构建具有生理可比性的器官型模型存在困难。在本研究中,我们利用生物打印技术对分离的角质形成细胞亚群进行受控沉积,以便在单个插入物中创建具有两个不同半部分的重建表皮,每个半部分由不同的角质形成细胞亚群组成,从而更好地模拟异质皮肤并减少样本间的变异性。作为初步的概念验证,我们使用 GFP 阳性和阴性角质形成细胞亚群创建了一个图案化的表皮皮肤模型,这两个亚群都被打印到重建皮肤插入物的两个半部分中,证明了这种方法的可行性。然后,我们通过生成由具有正常或低丝聚合蛋白表达的双重角质形成细胞群体组成的异质模型,证明了这种生物打印技术的生理相关性。所得模型表现出具有组织学特征的表皮结构,每个半部分都具有其组成细胞的表型特征,表明组织重建成功且稳定。这种图案化皮肤模型旨在模拟特应性皮炎或寻常型鱼鳞病中可见的病变边缘,而在单个插入物中使用两个群体允许在评估研究中进行配对统计,可能会增加研究的统计能力并减少每个研究所需的模型数量。这是首次使用预定义的生物打印设计报告人类图案化表皮模型,并证明了生物打印在忠实地再现人类皮肤微观解剖结构方面的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02c4/7973417/15bc7638840f/41598_2021_85553_Fig1_HTML.jpg

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