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基于丝素蛋白的三维微流控器件的构建——一种带掩模辅助的多步刻蚀技术。

Constructing Silk Fibroin-Based Three-Dimensional Microfluidic Devices a Tape Mask-Assisted Multiple-Step Etching Technique.

机构信息

Institute for Clean Energy & Advanced Materials, School of Materials & Energy, Southwest University, 2 Tiansheng Road, Chongqing 400715, P. R. China.

Sannuo Biosensing Company Limited, 265 Guyuan Road, Changsha, Hunan 410221, P. R. China.

出版信息

ACS Appl Bio Mater. 2021 Nov 15;4(11):8039-8048. doi: 10.1021/acsabm.1c00948. Epub 2021 Oct 26.

DOI:10.1021/acsabm.1c00948
PMID:35006785
Abstract

Regenerated silk fibroin (RSF) has been regarded as a very promising biomaterial for the preparation of microfluidic devices. However, the facile and low-cost fabrication of three-dimensional (3D) RSF microfluidic devices is still a great challenge. Herein, we developed a tape-mask-assisted multiple-step etching technique to fabricate 3D microfluidic devices based on water-annealed RSF films. Several rounds of tape adhesion- or peeling-etching cycles need to be conducted to produce 3D features on the RSF films with the LiBr aqueous solution as the etchant. The water-annealed RSF films could be effectively etched with 1.0 g·mL LiBr solution at 60 °C. The shape, width, and height of the 3D structures could be precisely tailored by controlling the mask pattern, etching conditions, and the number of etchings. Using the tape adhesion- and peeling-assisted multiple-etching techniques, the convex-pyramid-shaped and the concave-step-shaped structures could be successfully prepared on the RSF films, respectively. The RSF-film-based 3D micromixers and microfluidic separator were also manufactured with the proposed approach, exhibiting excellent liquid mixing and size-dependent particle sorting capabilities, respectively. The enzymatic degradation of RSF-film-based devices was also investigated to show their environmental friendliness. This work may not only provide a facile and low-cost method for the fabrication of RSF-based 3D microfluidic devices but also extend the applications of RSF in the fields of biomedical and chemical analysis.

摘要

再生丝素蛋白 (RSF) 已被视为制备微流控器件非常有前途的生物材料。然而,制备三维 (3D) RSF 微流控器件的简便和低成本制造仍然是一个巨大的挑战。在此,我们开发了一种基于水退火 RSF 薄膜的带掩模辅助多步刻蚀技术来制备 3D 微流控器件。需要进行几轮带粘附或剥落刻蚀循环,以使用 LiBr 水溶液作为蚀刻剂在 RSF 薄膜上产生 3D 特征。水退火的 RSF 薄膜可以在 60°C 下用 1.0 g·mL LiBr 溶液有效蚀刻。通过控制掩模图案、蚀刻条件和蚀刻次数,可以精确调整 3D 结构的形状、宽度和高度。使用带粘附和剥落辅助多次蚀刻技术,可以分别在 RSF 薄膜上成功制备出凸金字塔形和凹阶形结构。还使用提出的方法制造了基于 RSF 薄膜的 3D 微混合器和微流控分离器,分别表现出出色的液体混合和尺寸相关的颗粒分选能力。还研究了基于 RSF 薄膜的器件的酶降解,以展示其环境友好性。这项工作不仅可以为基于 RSF 的 3D 微流控器件的制造提供一种简便且低成本的方法,还可以扩展 RSF 在生物医学和化学分析领域的应用。

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Constructing Silk Fibroin-Based Three-Dimensional Microfluidic Devices a Tape Mask-Assisted Multiple-Step Etching Technique.基于丝素蛋白的三维微流控器件的构建——一种带掩模辅助的多步刻蚀技术。
ACS Appl Bio Mater. 2021 Nov 15;4(11):8039-8048. doi: 10.1021/acsabm.1c00948. Epub 2021 Oct 26.
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