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Design, microfabrication, and characterization of a moulded PDMS/SU-8 inkjet dispenser for a Lab-on-a-Printer platform technology with disposable microfluidic chip

机译:设计,微细加工和表征成型PDMS / SU-8喷墨分配器,用于带有一次性微流体芯片的打印机实验室平台技术

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摘要

In this paper, we present a disposable inkjet dispenser platform technology and demonstrate the Lab-on-a-Printer concept, an extension of the ubiquitous Lab-on-a-Chip concept, whereby microfluidic modules are directly integrated into the printhead. The concept is demonstrated here through the integration of an inkjet dispenser and a microfluidic mixer enabling control over droplet composition from a single nozzle in real-time during printing. The inkjet dispenser is based on a modular design platform that enables the low-cost microfluidic component and the more expensive actuation unit to be easily separated, allowing for the optional disposal of the former and reuse of the latter. To limit satellite droplet formation, a hydrophobic-coated and tapered micronozzle was microfabricated and integrated with the fluidics to realize the dispenser. The microfabricated devices generated droplets with diameters ranging from 150-220 mu m, depending mainly on the orifice diameter, with printing rates up to 8000 droplets per second. The inkjet dispenser is capable of dispensing materials with a viscosity up to similar to 19 mPa s. As a demonstration of the inkjet dispenser function and application, we have printed type I collagen seeded with human liver carcinoma cells (cell line HepG2), to form patterned biological structures.
机译:在本文中,我们介绍了一种一次性喷墨分配器平台技术,并演示了“打印机上实验室”的概念,这是无所不在的“芯片上实验室”概念的扩展,其中微流体模块直接集成到打印头中。此处通过集成喷墨分配器和微流体混合器来演示该概念,从而可以在打印过程中实时控制单个喷嘴中的墨滴成分。喷墨分配器基于模块化设计平台,该平台使低成本的微流控组件和较昂贵的致动单元易于分离,从而允许对前者进行可选处理并对其进行重复使用。为了限制卫星液滴的形成,对疏水涂层的锥形微喷嘴进行了微细加工,并与射流技术集成以实现分配器。微型设备产生的液滴直径主要在孔口直径范围内,在150-220微米之间,打印速度高达每秒8000个液滴。喷墨分配器能够分配粘度高达19 mPa s的材料。为了证明喷墨分配器的功能和应用,我们印制了接种人肝癌细胞(细胞系HepG2)的I型胶原蛋白,以形成图案化的生物结构。

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