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Biofabrication of in situ Self Assembled 3D Cell Cultures in a Weightlessness Environment Generated using Magnetic Levitation

机译:在磁悬浮产生的失重环境中原位自组装3D细胞培养物的生物制造

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摘要

Magnetic levitation though negative magnetophoresis is a novel technology to simulate weightlessness and has recently found applications in material and biological sciences. Yet little is known about the ability of the magnetic levitation system to facilitate biofabrication of in situ three dimensional (3D) cellular structures. Here, we optimized a magnetic levitation though negative magnetophoresis protocol appropriate for long term levitated cell culture and developed an in situ 3D cellular assembly model with controlled cluster size and cellular pattern under simulated weightlessness. The developed strategy outlines a potential basis for the study of weightlessness on 3D living structures and with the opportunity for real-time imaging that is not possible with current ground-based simulated weightlessness techniques. The low-cost technique presented here may offer a wide range of biomedical applications in several research fields, including mechanobiology, drug discovery and developmental biology.
机译:尽管负磁致磁,磁悬浮是一种模拟失重的新技术,并且最近在材料和生物科学中得到了应用。关于磁悬浮系统促进原位三维(3D)细胞结构生物制造的能力知之甚少。在这里,我们通过适用于长期悬浮细胞培养的负磁泳协议优化了磁悬浮,并在模拟失重条件下开发了具有可控簇大小和细胞模式的原位3D细胞组装模型。制定的策略概述了研究3D居住结构失重的潜在基础,并为实时成像提供了机会,而这是当前基于地面的模拟失重技术无法实现的。本文介绍的低成本技术可能在包括机械生物学,药物发现和发育生物学在内的多个研究领域中提供广泛的生物医学应用。

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