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3D Printed Reconfigurable Modular Microfluidic System for Generating Gel Microspheres

机译:用于生成凝胶微球的3D打印可重配置模块化微流体系统

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摘要

Integrated microfluidic systems afford extensive benefits for chemical and biological fields, yet traditional, monolithic methods of microfabrication restrict the design and assembly of truly complex systems. Here, a simple, reconfigurable and high fluid pressure modular microfluidic system is presented. The screw interconnects reversibly assemble each individual microfluidic module together. Screw connector provided leak-free fluidic communication, which could withstand fluid resistances up to 500 kPa between two interconnected microfluidic modules. A sample library of standardized components and connectors manufactured using 3D printing was developed. The capability for modular microfluidic system was demonstrated by generating sodium alginate gel microspheres. This 3D printed modular microfluidic system makes it possible to meet the needs of the end-user, and can be applied to bioassays, material synthesis, and other applications.
机译:集成的微流体系统为化学和生物领域带来了广泛的好处,但是传统的整体式微制造方法限制了真正复杂系统的设计和组装。这里,提出了一种简单的,可重构的且高流体压力的模块化微流体系统。螺钉互连可逆地将每个单独的微流体模块组装在一起。螺旋连接器提供了无泄漏的流体连通,可以在两个互连的微流体模块之间承受高达500 kPa的流体阻力。开发了使用3D打印制造的标准化组件和连接器的样本库。通过产生藻酸钠凝胶微球证明了模块化微流体系统的能力。这种3D打印的模块化微流控系统可以满足最终用户的需求,并且可以应用于生物测定,材料合成和其他应用。

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