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Implementation of tetra-poly(ethylene glycol) hydrogel with high mechanical strength into microfluidic device technology

机译:机械强度高的四聚乙二醇水凝胶在微流控装置技术中的实现

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摘要

Hydrogels have several excellent characteristics suitable for biomedical use such as softness, biological inertness and solute permeability. Hence, integrating hydrogels into microfluidic devices is a promising approach for providing additional functions such as biocompatibility and porosity, to microfluidic devices. However, the poor mechanical strength of hydrogels has severely limited device design and fabrication. A tetra-poly(ethylene glycol) (tetra-PEG) hydrogel synthesized recently has high mechanical strength and is expected to overcome such a limitation. In this research, we have comprehensively studied the implementation of tetra-PEG gel into microfluidic device technology. First, the fabrication of tetra-PEG gel/PDMS hybrid microchannels was established by developing a simple and robust bonding technique. Second, some fundamental features of tetra-PEG gel/PDMS hybrid microchannels, particularly fluid flow and mass transfer, were studied. Finally, to demonstrate the unique application of tetra-PEG-gel-integrated microfluidic devices, the generation of patterned chemical modulation with the maximum concentration gradient: 10% per 20 μm in a hydrogel was performed. The techniques developed in this study are expected to provide fundamental and beneficial methods of developing various microfluidic devices for life science and biomedical applications.
机译:水凝胶具有适合生物医学用途的几种优异特性,例如柔软性,生物惰性和溶质渗透性。因此,将水凝胶整合到微流体装置中是为微流体装置提供附加功能如生物相容性和孔隙度的有前途的方法。然而,水凝胶的较差的机械强度严重限制了装置的设计和制造。最近合成的四聚(乙二醇)(四-PEG)水凝胶具有高机械强度,并有望克服这种限制。在这项研究中,我们已经全面研究了四聚乙二醇凝胶在微流体装置技术中的实施。首先,通过开发一种简单而强大的键合技术,建立了四聚乙二醇凝胶/ PDMS杂化微通道的制造方法。其次,研究了四-PEG凝胶/ PDMS杂化微通道的一些基本特征,特别是流体流动和传质。最后,为了证明四聚乙二醇凝胶集成微流体装置的独特应用,在最大浓度梯度下,在水凝胶中每20μm进行10%的图案化化学调制。预期该研究中开发的技术将为开发用于生命科学和生物医学应用的各种微流控设备提供基础和有益的方法。

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