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Ultra-rapid and low-cost fabrication of centrifugal microfluidic platforms with active mechanical valves

机译:具有主动机械阀的离心微流体平台的超快速和低成本制造

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摘要

Onsite fabrication of centrifugal microfluidic cartridges is one way to provide laboratory and diagnostics platforms for extreme point-of-care (EPOC) settings. This paper presents a rapid fabrication process of centrifugal microfluidic cartridges (discs) using only a cutter plotter that is as low-cost, portable and rapid as conventional printers. Moreover, we devised an active valving mechanism to enable the development of complex sequential fluidic processes. The valves are engraved during disc manufacture itself by the cutter plotter. These embedded valves prevent the need for additional fabrication equipment and materials for the inserts that are usually required for other active valves. The valves are actuated by an external mechanical force, and are called active mechanical valves (M-valve). The M-valve is robust over a wide range of spinning speeds (e.g. up to 7000 rpm or 2470 rcf) and can be actuated manually, or automatically by a robotic arm. To demonstrate our approach, we developed two fluidic systems for immunoassay and chromatography. The first microfluidic platform was developed to automate a fluidic protocol usually required for immunoassays from whole blood. In this microfluidic disc, non-biological liquids were used to demonstrate the application of M-valves for robust control over retention and release of reagents. The chromatography microfluidic cartridge is a miniaturized experimental system for testing the capability of a modified resin (Sepharose 6B-PEG5000) for the isolation of monoPEGylated ribonuclease (RNase). The fabrication of microfluidic discs and M-valves by a simple cutter plotter is the fastest and least expensive method for the onsite development and onsite manufacturing of diagnostic kits for research and actual use even in EPOC settings.
机译:在离心机微流体墨盒的现场制作是为极端护理点(EPOC)设置提供实验室和诊断平台的一种方式。本文仅使用刀具绘图器提供了一种快速制造的离心机微流体盒(盘),该刀具作为低成本,便携式快捷的传统打印机。此外,我们设计了一种主动阀门机构,以实现复杂的顺序流体过程的发展。阀门通过切割器绘图仪在盘制造过程中刻有阀门。这些嵌入式阀可防止需要额外的制造设备和用于其他有源阀所需的插入物的材料。阀门通过外部机械力致动,称为有源机械阀(M阀)。 M阀在宽范围的纺丝速度(例如高达7000rpm或2470 rcf)上具有稳健,并且可以手动致动,或由机器人臂自动致动。为了证明我们的方法,我们开发了两个用于免疫测定和色谱的流体系统。第一种微流体平台被开发为自动化流体方案,通常需要全血免疫测定。在该微流体盘中,使用非生物液体来证明M阀的施加在鲁棒控制过度保留和释放试剂中。色谱法微流体盒是用于测试改性树脂(Sepharose 6B-PEG5000)的含量用于分离单opegylated核糖核酸酶(RNase)的微型实验系统。通过简单的刀具绘图仪的微流体盘和M阀的制造是即使在EPOC设置中也是用于研究和实际使用的诊断套件的现场开发和现场制造的最快和最昂贵的方法。

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  • 来源
    《RSC Advances》 |2017年第87期|共8页
  • 作者单位

    Inst Tecnol &

    Estudios Super Monterrey Sch Engn &

    Sci Monterrey NL Mexico;

    Inst Tecnol &

    Estudios Super Monterrey Sch Engn &

    Sci Monterrey NL Mexico;

    Qazvin Islamic Azad Univ Qazvin Iran;

    Inst Tecnol &

    Estudios Super Monterrey Sch Engn &

    Sci Monterrey NL Mexico;

    Inst Tecnol &

    Estudios Super Monterrey Sch Engn &

    Sci Monterrey NL Mexico;

    Inst Tecnol &

    Estudios Super Monterrey Sch Engn &

    Sci Monterrey NL Mexico;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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