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Skin-on-a-Chip: Transepithelial Electrical Resistance and Extracellular Acidification Measurements through an Automated Air-Liquid Interface

机译:芯片上皮肤:通过自动气液界面的跨上皮电阻和细胞外酸化测量

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摘要

Skin is a critical organ that plays a crucial role in defending the internal organs of the body. For this reason, extensive work has gone into creating artificial models of the epidermis for in vitro skin toxicity tests. These tissue models, called reconstructed human epidermis (RhE), are used by researchers in the pharmaceutical, cosmetic, and environmental arenas to evaluate skin toxicity upon exposure to xenobiotics. Here, we present a label-free solution that leverages the use of the intelligent mobile lab for in vitro diagnostics (IMOLA-IVD), a noninvasive, sensor-based platform, to monitor the transepithelial electrical resistance (TEER) of RhE models and adherent cells cultured on porous membrane inserts. Murine fibroblasts cultured on polycarbonate membranes were first used as a test model to optimize procedures using a custom BioChip encapsulation design, as well as dual fluidic configurations, for continuous and automated perfusion of membrane-bound cultures. Extracellular acidification rate (EAR) and TEER of membrane-bound L929 cells were monitored. The developed protocol was then used to monitor the TEER of MatTek EpiDermTM RhE models over a period of 48 h. TEER and EAR measurements demonstrated that the designed system is capable of maintaining stable cultures on the chip, monitoring metabolic parameters, and revealing tissue breakdown over time.
机译:皮肤是至关重要的器官,在捍卫身体内部器官中起着至关重要的作用。因此,已经进行了大量工作来创建用于体外皮肤毒性测试的表皮人造模型。这些被称为重建人表皮(RhE)的组织模型被研究人员用于制药,美容和环境领域,以评估暴露于异种生物后的皮肤毒性。在这里,我们提供了一种无标签的解决方案,该解决方案利用了智能移动实验室进行的体外诊断(IMOLA-IVD)(一种基于传感器的非侵入性平台)来监视RhE模型和粘附分子的跨上皮电阻(TEER)细胞在多孔膜插入物上培养。首先将培养在聚碳酸酯膜上的鼠成纤维细胞用作测试模型,以使用定制的BioChip封装设计以及双重流体配置优化程序,以连续和自动灌注膜结合的培养物。监测膜结合的L929细胞的细胞外酸化率(EAR)和TEER。然后将开发的协议用于在48小时内监测MatTek EpiDerm TM RhE模型的TEER。 TEER和EAR的测量表明,所设计的系统能够在芯片上维持稳定的培养,监测代谢参数并揭示组织随时间的分解。

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