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System for portable nucleic acid testing in low resource settings

机译:用于低资源设置中的便携式核酸测试的系统

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Our overall goal is to enable timely diagnosis of infectious diseases through nucleic acid testing at the point-of-care and in low resource settings, via a compact system that integrates nucleic acid sample preparation, isothermal DNA amplification, and nucleic acid lateral flow (NALF) detection. We herein present an interim milestone, the design of the amplification and detection subsystem, and the characterization of thermal and fluidic control and assay execution within this system. Using an earlier prototype of the amplification and detection unit, comprised of a disposable cartridge containing flexible pouches, passive valves, and electrolysis-driven pumps, in conjunction with a small heater, we have demonstrated successful execution of an established and clinically validated isothermal loop-mediated amplification (LAMP) reaction targeting Mycobacterium tuberculosis (M.tb) DNA, coupled to NALF detection. The refined design presented herein incorporates miniaturized and integrated electrolytic pumps, novel passive valves, overall design changes to facilitate integration with an upstream sample preparation unit, and a refined instrument design that automates pumping, heating, and timing. Nucleic acid amplification occurs in a two–layer pouch that facilitates fluid handling and appropriate thermal control. The disposable cartridge is manufactured using low-cost and scalable techniques and forms a closed system to prevent workplace contamination by amplicons. In a parallel effort, we are developing a sample preparation unit based on similar design principles, which performs mechanical lysis of mycobacteria and DNA extraction from liquefied and disinfected sputum. Our next step is to combine sample preparation, amplification, and detection in a final integrated cartridge and device, to enable fully automated sample-in to answer-out diagnosis of active tuberculosis in primary care facilities of low-resource and high-burden countries.
机译:我们的总目标是通过在低资源设置的点的护理和核酸检测,以使感染性疾病的及时诊断,通过一个紧凑的系统,整合核酸样品制备,等温DNA扩增,以及核酸的横向流动(NALF )检测。本文提出了一种临时里程碑,扩增和检测子系统的设计,以及热和流体控制的表征和该系统内的测定法执行。使用扩增和检测单元,包括含有柔性袋,被动阀,和电解驱动泵,在具有小的加热器相结合的一次性盒的早期原型,我们已经证明的确立和临床验证的等温环 - 成功执行介导的扩增(LAMP)反应靶向结核分枝杆菌(结核分枝杆菌)的DNA,其耦合到NALF检测。精制设计本文呈现的结合小型化且集成电解泵,新颖被动阀,整体设计变化,以方便与一个上游样品制备单元集成,以及一个精仪器设计,可以自动泵送,加热和定时。核酸扩增发生在双层袋便于流体处理和适当的热控制。一次性盒是使用低成本的和可扩展的技术和形式的一个封闭的系统由扩增子,以防止工作场所污染制造。在平行的努力中,我们基于类似的设计原则,显影样品制备单元,其进行机械从液化和消毒痰分枝杆菌和DNA提取的裂解。我们的下一个步骤是样品制备,放大,检测最终的整合盒和设备相结合,能够实现完全自动化的样本中低资源和高负担国家的初级保健设施的活动性肺结核的回答出诊断。

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