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Development of a single-use, disposable, electricity-free, nucleic acid amplification platform

机译:一次性使用,一次性,无电的核酸扩增平台的开发

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Accurate diagnostic tools are essential for effective diagnosis, treatment, and tracking of individuals with infectious diseases. Diagnosis can be especially difficult in low-resource settings with limited infrastructure or unreliable access to electricity. Our previous work has demonstrated feasibility of a reusable configuration of an electricity-free, non-instrumented nucleic acid amplification platform (NINA) that complements isothermal assays for precise detection of a variety of pathogens. To maximize the potential impact of the NINA technology, we redesigned the technology in a disposable configuration to meet challenging cost, size, and ease of use requirements. This paper discusses the development of the single-use, disposable NINA platform. Key challenges included meeting repeatability, temperature stability, and precision targets. Through an iterative design process, we met these challenges using a novel design strategy including re-engineering of phase change materials (PCMs), addition of thermal enhancement additives to the PCM, and metered introduction of reactants using porous media. Manufacturing, performance, and reproducibility challenges were addressed, and the resultant design was rigorously tested in preparation for the production of a pilot batch of 150 disposable NINA devices that will be used for device and assay performance testing.
机译:准确的诊断工具对于有效诊断,治疗和跟踪感染性疾病的个体至关重要。在资源匮乏,基础设施有限或用电不可靠的情况下,诊断可能尤其困难。我们以前的工作证明了可重复使用的无电,非仪器核酸扩增平台(NINA)的配置的可行性,该平台可补充等温分析以精确检测各种病原体。为了最大程度地发挥NINA技术的潜在影响,我们以一次性配置重新设计了该技术,以满足具有挑战性的成本,尺寸和易用性要求。本文讨论了一次性NINA一次性平台的开发。关键挑战包括满足可重复性,温度稳定性和精确度目标。通过反复的设计过程,我们采用了新颖的设计策略来应对这些挑战,包括重新设计相变材料(PCM),向PCM中添加热增强添加剂以及使用多孔介质计量引入反应物。解决了制造,性能和可重复性方面的挑战,并对最终设计进行了严格的测试,以准备生产150个一次性NINA设备的中试批次,该设备将用于设备和分析性能测试。

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