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Magnetic-adhesive based valves for microfluidic devices used in low-resource settings

机译:用于低资源环境中的微流控设备的电磁胶阀

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Since the introduction of micro total analytical systems (mu TASs), significant advances have been made toward development of lab-on-a-chip platforms capable of performing complex biological assays that can revolutionize public health, among other applications. However, use of these platforms in low-resource environments (e.g. developing countries) has yet to be realized as the majority of technologies used to control microfluidic flow rely on off-device hardware with non-negligible size, cost, power requirements and skill/training to operate. In this paper we describe a magnetic-adhesive based valve that is simple to construct and operate, and can be used to control fluid flow and store reagents within a microfluidic device. The design consists of a port connecting two chambers on different planes in the device that is closed by a neodymium disk magnet seated on a thin ring of adhesive. Bringing an external magnet into contact with the outer surface of the device unseats and displaces the valve magnet from the adhesive ring, exposing the port. Using this configuration, we demonstrate on-device reagent storage and on-demand transport and reaction of contents between chambers. This design requires no power or external instrumentation to operate, is extremely low cost ($0.20 materials cost per valve), can be used by individuals with no technical training, and requires only a hand-held magnet to actuate. Additionally, valve actuation does not compromise the integrity of the completely sealed microfluidic device, increasing safety for the operator when toxic or harmful substances are contained within. This valve concept has the potential to simplify design of mu TASs, facilitating development of lab-on-a-chip systems that may be practical for use in point-of-care and low-resource settings.
机译:自从引入微量总分析系统(mu TAS)以来,在芯片实验室平台的开发方面取得了重大进展,该平台能够执行能够彻底改变公共卫生的复杂生物测定法,以及其他应用。但是,这些平台在资源匮乏的环境(例如发展中国家)中的使用尚待实现,因为用于控制微流的大多数技术都依赖于设备外的硬件,这些硬件的尺寸,成本,功耗要求和技能/培训操作。在本文中,我们描述了一种基于电磁胶粘剂的阀,该阀易于构造和操作,可用于控制流体流动并在微流控设备中存储试剂。该设计包括一个端口,该端口连接设备中不同平面上的两个腔室,该端口由置于薄粘合剂环上的钕磁盘磁铁封闭。使外部磁铁与设备的外表面接触会使其脱离固定环并使阀磁铁从粘合环上移位,从而露出端口。使用此配置,我们演示了设备间试剂的存储以及腔室之间内容物的按需传输和反应。这种设计无需电源或外部仪器即可操作,成本极低(每个阀门的材料成本为0.20美元),无需经过技术培训即可供个人使用,并且仅需手持磁铁即可致动。另外,阀门致动不会损害完全密封的微流体装置的完整性,当其中包含有毒或有害物质时,增加了操作者的安全性。该阀的概念具有简化mu TAS的设计的潜力,从而有助于开发芯片上实验室系统,该系统可能适用于即时医疗服务和低资源设置。

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