Department of Molecular Cell Biology and Immunology, Amsterdam UMC Location Vrije Universiteit Amsterdam, De Boelelaan 1117, Amsterdam, 1081 HV, The Netherlands.
Amsterdam institute for Infection and Immunity, Amsterdam University Medical Center, Vrije Universiteit, Amsterdam, The Netherlands.
Adv Healthc Mater. 2024 Nov;13(29):e2400750. doi: 10.1002/adhm.202400750. Epub 2024 Oct 6.
Integration of reconstructed human skin (RhS) into organ-on-chip (OoC) platforms addresses current limitations imposed by static culturing. This innovation, however, is not without challenges. Microfluidic devices, while powerful, often encounter usability, robustness, and gas bubble issues that hinder large-scale high-throughput setups. This study aims to develop a novel re-usable multi-well microfluidic adaptor (MMA) with the objective to provide a flexible tool for biologists implementing complex 3D biological models (e.g., skin) while enabling simultaneous user control over temperature, medium flow, oxigen (O), nitrogen (N), and carbon dioxide (CO) without the need for an incubator. The presented MMA device is designed to be compatible with standard, commercially available 6-well multi-well plates (6MWPs) and 12-well transwells. This MMA-6MWP setup is employed to generate a skin-on-chip (SoC). RhS viability is maintained under flow for three days and their morphology closely resembles that of native human skin. A proof-of-concept study demonstrates the system's potential in toxicology applications by combining endothelialised RhS with flowing immune cells. This dynamic setting activates the monocyte-like MUTZ-3 cells (CD83 and CD86 upregulation) upon topical exposure of RhS to a sensitizer, revealing the MMA-6MWP's unique capabilities compared to static culturing, where such activation is absent.
将重建的人体皮肤 (RhS) 整合到器官芯片 (OoC) 平台中,解决了当前静态培养所带来的限制。然而,这种创新并非没有挑战。微流控设备虽然功能强大,但常常面临可用性、鲁棒性和气泡问题,这些问题阻碍了大规模高通量设置。本研究旨在开发一种新型可重复使用的多孔微流控适配器 (MMA),旨在为实施复杂 3D 生物模型(例如皮肤)的生物学家提供一个灵活的工具,同时使用户能够在不使用孵育箱的情况下,同时控制温度、培养基流动、氧气 (O)、氮气 (N) 和二氧化碳 (CO)。所提出的 MMA 设备旨在与标准的、市售的 6 孔多孔板 (6MWP) 和 12 孔 Transwell 兼容。该 MMA-6MWP 装置用于生成芯片上皮肤 (SoC)。在流动条件下 RhS 的存活时间可维持三天,其形态与天然人体皮肤非常相似。一项概念验证研究通过将内皮化的 RhS 与流动的免疫细胞结合,展示了该系统在毒理学应用中的潜力。在 RhS 暴露于敏化剂的情况下,这种动态设置会激活类单核细胞样 MUTZ-3 细胞(CD83 和 CD86 的上调),这揭示了与静态培养相比,MMA-6MWP 的独特能力,静态培养中不存在这种激活。