Department of Bioengineering, University of Washington, Seattle, WA, 98195, USA.
Sci Rep. 2022 Aug 26;12(1):14618. doi: 10.1038/s41598-022-18937-8.
The simplest point-of-care assays are usually paper and plastic devices that detect proteins or nucleic acids at low cost and minimal user steps, albeit with poor limits of detection. Digital assays improve limits of detection and analyte quantification by splitting a sample across many wells (or droplets), preventing diffusion, and performing analyte amplification and detection in multiple small wells. However, truly digital nucleic acid amplification tests (NAATs) require costly consumable cartridges that are precisely manufactured, aligned, and operated to enable low detection limits. In this study, we demonstrate how to implement near-digital NAATs in low-cost porous media while approaching the low limits of detection of digital assays. The near-digital NAAT was enabled by a paper membrane containing lyophilized amplification reagents that automatically, passively meters and distributes a sample over a wide area. Performing a NAAT in the paper membrane while allowing diffusion captures many of the benefits of digital NAATs if the pad is imaged at a high spatial resolution during amplification. We show that the near-digital NAAT is compatible with a low-cost paper and plastic disposable cartridge coupled to a 2-layer rigid printed circuit board heater (the MD NAAT platform). We also demonstrate compatibility with biplexing and imaging with mobile phones with different camera sensors. We show that the near-digital NAAT increased signal-to-noise ratios by ~ 10×, improved limits of detection from above 10 copies of methicillin-resistant Staphylococcus aureus genomic DNA to between 100 and 316 copies in a biplexed reaction containing 10 copies of co-amplifying internal amplification control DNA, and reduced time-to-result from 45 min of amplification to 15-20 min for the positive samples.
最简单的即时检测通常是纸和塑料设备,它们以低成本和最少的用户步骤检测蛋白质或核酸,尽管检测限较差。数字检测通过将样品分配到多个孔(或液滴)中,防止扩散,并在多个小池中进行分析物扩增和检测,从而提高检测限和分析物定量。然而,真正的数字核酸扩增检测(NAAT)需要昂贵的消耗品盒,这些盒需要精确制造、对齐和操作,以实现低检测限。在这项研究中,我们展示了如何在低成本多孔介质中实现近数字 NAAT,同时接近数字检测的低检测限。近数字 NAAT 通过包含冻干扩增试剂的纸膜实现,该纸膜自动、被动地计量并在较宽的区域内分配样品。如果在扩增过程中以高空间分辨率对纸膜进行成像,则在纸膜中进行 NAAT 可以捕获许多数字 NAAT 的优势。我们表明,近数字 NAAT 与低成本纸和塑料一次性墨盒兼容,该墨盒与双层刚性印刷电路板加热器(MD NAAT 平台)耦合。我们还证明了与双相和使用具有不同相机传感器的手机成像的兼容性。我们表明,近数字 NAAT 将信噪比提高了约 10 倍,将限制检测从耐甲氧西林金黄色葡萄球菌基因组 DNA 的 10 拷贝以上提高到包含 10 拷贝共扩增内部扩增对照 DNA 的双相反应中的 100 至 316 拷贝,并且将阳性样本的结果时间从 45 分钟的扩增缩短至 15-20 分钟。