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Femtosecond Laser-Based Integration of Nano-Membranes into Organ-on-a-Chip Systems

机译:基于飞秒激光的纳米膜整合到片内系统

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摘要

Organ-on-a-chip devices are gaining popularity in medical research due to the possibility of performing extremely complex living-body-resembling research in vitro. For this reason, there is a substantial drive in developing technologies capable of producing such structures in a simple and, at the same time, flexible manner. One of the primary challenges in producing organ-on-chip devices from a manufacturing standpoint is the prevalence of layer-by-layer bonding techniques, which result in limitations relating to the applicable materials and geometries and limited repeatability. In this work, we present an improved approach, using three dimensional (3D) laser lithography for the direct integration of a functional part—the membrane—into a closed-channel system. We show that it allows the freely choice of the geometry of the membrane and its integration into a complete organ-on-a-chip system. Considerations relating to sample preparation, the writing process, and the final preparation for operation are given. Overall, we consider that the broader application of 3D laser lithography in organ-on-a-chip fabrication is the next logical step in this field’s evolution.
机译:由于在体外执行极其复杂的生活身体研究,芯片器件在医学研究中取得了普及。因此,在开发技术中存在大大驱动,该技术能够以简单的和同时,灵活的方式产生这种结构。从制造角度生产片上器件的主要挑战之一是逐层键合技术的普遍性,这导致与适用材料和几何形状有关的限制以及有限的可重复性。在这项工作中,我们介绍了一种改进的方法,使用三维(3D)激光光刻用于直接集成功能部分 - 膜 - 进入闭声道系统。我们表明它允许自由地选择膜的几何形状及其集成到完整的器官芯片系统中。给出了与样品制备,写入过程和用于操作的最终制剂有关的考虑因素。总体而言,我们认为3D激光光刻在片上制造中的更广泛应用是该领域进化中的下一个逻辑步骤。

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