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首页> 外文期刊>Tissue engineering, Part C. Methods >Fully Three-Dimensional Bioprinted Skin Equivalent Constructs with Validated Morphology and Barrier Function
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Fully Three-Dimensional Bioprinted Skin Equivalent Constructs with Validated Morphology and Barrier Function

机译:具有验证的形态和屏障功能的全三维生物制药等效构建体

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摘要

Development of high-throughput, reproducible, three-dimensional (3D) bioprinted skin equivalents (BPSEs) that are morphologically and functionally comparable to native skin tissue is advancing research in skin diseases, and providing a physiologically relevant platform for the development of therapeutics, transplants for regenerative medicine, and testing of skin products like cosmetics. Current protocols for the production of engineered skin grafts are limited in their ability to control 3D geometry of the structure and contraction leading to variability of skin function between constructs. In this study, we describe a method for the biofabrication of skin equivalents (SEs) that are fully bioprinted using an open-market bioprinter, made with commercially available primary cells and natural hydrogels. The unique hydrogel formulation allows for the production of a human-like SE with minimal lateral tissue contraction in a multiwell plate format, thus making them suitable for high-throughput bioprinting in a single print with fast print and relatively short incubation times. The morphology and barrier function of the fully 3D BPSEs are validated by immunohistochemistry staining, optical coherence tomography, and permeation assays. Impact Statement This article describes a method for the biofabrication of skin tissue equivalents in a multiwell plate format. The technique and results overcome shortcomings of previously published engineering methods, and show good architecture and barrier function from well to well; thus it may be used for compound functional testing and for the development of disease tissue models for screening.
机译:高通量,可重复,三维(3D)生物印刷的皮肤等同物(BPSES),其形态学和功能性与天然皮肤组织相比正在推进皮肤病的研究,并为治疗方法进行生理相关的平台,进行移植用于再生医学,以及化妆品等皮肤产品的测试。工程皮肤移植物的生产方案受到控制结构和收缩的3D几何形状的能力,导致构造之间的皮肤功能的变化。在该研究中,我们描述了一种使用市售的原发性细胞和天然水凝胶制成的开放式中间人的生物开口的皮肤等同物(SES)生物制造的方法。独特的水凝胶制剂允许以多孔板格式产生具有最小横向组织收缩的人样SE,从而使它们适用于具有快速印刷和相对短的孵育时间的单一印刷中的高通量生物印刷。通过免疫组织化学染色,光学相干断层扫描和渗透测定验证了完全3D BPS的形态和屏障功能。冲击声明本文介绍了以多孔板格式生物结复皮肤组织等同物的方法。该技术和结果克服了先前公布的工程方法的缺点,并从良好的情况下显示了良好的架构和障碍功能;因此,它可用于复合功能测试和用于疾病组织模型进行筛选。

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