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Flow-through Capture and in Situ Amplification Can Enable Rapid Detection of a Few Single Molecules of Nucleic Acids from Several Milliliters of Solution

机译:流通捕获和原位扩增可以从几毫升溶液中快速检测出几个单分子核酸

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Detecting nucleic acids (NAs) at zeptomolar concentrations (few molecules per milliliter) currently requires expensive equipment and lengthy processing times to isolate and concentrate the NAs into a volume that is amenable to amplification processes, such as PCR or LAMP. Shortening the time required to concentrate NAs and integrating this procedure with amplification on-device would be invaluable to a number of analytical fields, including environmental monitoring and clinical diagnostics. Microfluidic point-of-care (POC) devices have been designed to address these needs, but they are not able to detect NAs present in zeptomolar concentrations in short time frames because they require slow flow rates and/or they are unable to handle milliliter-scale volumes. In this paper, we theoretically and experimentally investigate a flow-through capture membrane that solves this problem by capturing NAs with high sensitivity in a short time period, followed by direct detection via amplification. Theoretical predictions guided the choice of physical parameters for a chitosan-coated nylon membrane; these predictions can also be applied generally to other capture situations with different requirements. The membrane is also compatible with in situ amplification, which, by eliminating an elution step enables high sensitivity and will facilitate integration of this method into sample-to-answer detection devices. We tested a wide range of combinations of sample volumes and concentrations of DNA molecules using a capture membrane with a 2 mm radius. We show that for nucleic acid detection, this approach can concentrate and detect as few as similar to 10 molecules of DNA with flow rates as high as 1 mL/min, handling samples as large as 50 mL. In a specific example, this method reliably concentrated and detected similar to 25 molecules of DNA from 50 mL of sample.
机译:目前,要检测处于分子浓度(几分子每毫升)的核酸(NAs),需要昂贵的设备和漫长的处理时间,才能将NAs分离并浓缩到适合扩增过程的体积,例如PCR或LAMP。缩短浓缩NA所需的时间,并将此程序与设备内扩增整合在一起,对于许多分析领域(包括环境监测和临床诊断)将是无价的。设计了微流控点(POC)设备可满足这些需求,但是由于它们需要缓慢的流速和/或无法处理毫升级的负离子,因此它们无法在短时间内检测到分子浓度中存在的NA。规模卷。在本文中,我们在理论上和实验上研究了一种流通型捕获膜,该解决方案通过在短时间内以高灵敏度捕获NA并通过扩增直接检测来解决此问题。理论预测指导了壳聚糖涂层尼龙膜物理参数的选择。这些预测也可以普遍应用于具有不同要求的其他捕获情况。该膜还与原位扩增兼容,该原位扩增通过消除洗脱步骤而实现了高灵敏度,并将有助于将该方法集成到样品到答案的检测设备中。我们使用半径为2 mm的捕获膜测试了样品体积和DNA分子浓度的各种组合。我们证明,对于核酸检测,这种方法可以浓缩和检测多达10个DNA分子的相似分子,流速高达1 mL / min,处理的样品量高达50 mL。在一个特定的示例中,该方法可靠地浓缩并从50毫升样品中检测到与25个分子类似的DNA。

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