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新兴技术和材料在微流控芯片高分辨率 3D 打印中的应用。

Emerging Technologies and Materials for High-Resolution 3D Printing of Microfluidic Chips.

机构信息

Laboratory of Process Technology, NeptunLab, Department of Microsystems Engineering (IMTEK), University Freiburg, Freiburg, Germany.

Freiburg Materials Research Center (FMF), University Freiburg, Freiburg, Germany.

出版信息

Adv Biochem Eng Biotechnol. 2022;179:37-66. doi: 10.1007/10_2020_141.

Abstract

In recent years, 3D printing has had a huge impact on the field of biotechnology: from 3D-printed pharmaceuticals to tissue engineering and microfluidic chips. Microfluidic chips are of particular interest and importance for the field of biotechnology, since they allow for the analysis and screening of a wide range of biomolecules - including single cells, proteins, and DNA. The fabrication of microfluidic chips has historically been time-consuming, however, and is typically limited to 2.5 dimensional structures and a restricted palette of well-known materials. Due to the high surface-to-volume ratios in microfluidic chips, the nature of the chip material is of paramount importance to the final system behavior. With the emergence of 3D printing, however, a wide range of microfluidic systems are now being printed for the first time in a manner that facilitates flexibility while minimizing time and cost. Nevertheless, resolution and material choices still remain challenges and in the focus of current research, aiming for (1) 3D printing with high resolutions in the range of tens of micrometers and (2) a wider range of available materials for these high-resolution prints. The first part of this chapter highlights recent emerging technologies in the field of high-resolution printing via stereolithography (SL) and 2-photon polymerization (2PP) and seeks to identify particularly interesting emerging technologies which could have a major impact on the field in the near future. The second part of this chapter highlights current developments in the field of materials that are used for these high-resolution 3D printing technologies.

摘要

近年来,3D 打印技术在生物技术领域产生了巨大的影响:从 3D 打印药物到组织工程和微流控芯片。微流控芯片在生物技术领域具有特别的兴趣和重要性,因为它们允许对广泛的生物分子进行分析和筛选,包括单细胞、蛋白质和 DNA。然而,微流控芯片的制造历来是耗时的,并且通常限于 2.5 维结构和有限的知名材料调色板。由于微流控芯片的高表面积与体积比,芯片材料的性质对最终系统行为至关重要。然而,随着 3D 打印技术的出现,现在可以首次以一种灵活的方式打印各种微流控系统,同时最大限度地减少时间和成本。尽管如此,分辨率和材料选择仍然是挑战,并成为当前研究的重点,旨在实现以下两个目标:(1)以几十微米的范围内的高分辨率进行 3D 打印,以及(2)为这些高分辨率打印提供更广泛的可用材料。本章的第一部分重点介绍了立体光刻(SL)和双光子聚合(2PP)领域中高分辨率打印的最新新兴技术,并试图确定在不久的将来可能对该领域产生重大影响的特别有趣的新兴技术。本章的第二部分重点介绍了用于这些高分辨率 3D 打印技术的材料的当前发展。

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