Beard Jeffrey W, Hunt Samuel L, Evans Alexander, Goenner Coleman, Miller Benjamin L
Department of Dermatology, University of Rochester, Rochester, NY 14627, USA.
Department of Biomedical Engineering, University of Rochester, Rochester, NY 14627, USA.
bioRxiv. 2024 Feb 29:2024.02.27.582375. doi: 10.1101/2024.02.27.582375.
Point of care (PoC) nucleic acid amplification tests (NAATs) are a cornerstone of public health, providing the earliest and most accurate diagnostic method for many communicable diseases, such as HIV, in the same location the patient receives treatment. Communicable diseases disproportionately impact low-resource communities where NAATs are often unobtainable due to the resource intensive enzymes that drive the tests. Enzyme-free nucleic acid detection methods, such as hybridization chain reaction (HCR), use DNA secondary structures for self-driven amplification schemes producing large DNA nanostructures and capable of single molecule detection . These thermodynamically driven DNA-based tests have struggled to penetrate the PoC diagnostic field due to their inadequate limits of detection or complex workflows. Here we present a proof-of-concept NAAT that combines HCR-based amplification of a target nucleic acid sequence with paper-based nucleic acid filtration and enrichment capable of detecting sub pM levels of synthetic DNA. We reconstruct the favorable hybridization conditions of an reaction by incubating HCR in an evaporating, microvolume environment containing poly(ethylene glycol) as a crowding agent. We demonstrate that the kinetics and thermodynamics of DNA-DNA and DNA-RNA hybridization is enhanced by the dynamic evaporating environment and inclusion of crowding agents, bringing HCR closer to meeting PoC NAAT needs.
即时检测(PoC)核酸扩增测试(NAATs)是公共卫生的基石,在患者接受治疗的同一地点,为许多传染病(如艾滋病毒)提供了最早且最准确的诊断方法。传染病对资源匮乏社区的影响尤为严重,在这些社区,由于驱动检测的资源密集型酶,NAATs往往无法获得。无酶核酸检测方法,如杂交链式反应(HCR),利用DNA二级结构进行自驱动扩增方案,产生大型DNA纳米结构并能够进行单分子检测。这些基于热力学驱动的DNA检测方法,由于其检测限不足或工作流程复杂,一直难以进入即时检测诊断领域。在此,我们展示了一种概念验证的NAAT,它将基于HCR的目标核酸序列扩增与基于纸的核酸过滤和富集相结合,能够检测亚皮摩尔水平的合成DNA。我们通过在含有聚乙二醇作为拥挤剂的蒸发微体积环境中孵育HCR,重建了反应的有利杂交条件。我们证明,动态蒸发环境和拥挤剂的加入增强了DNA-DNA和DNA-RNA杂交的动力学和热力学,使HCR更接近满足即时检测NAAT的需求。