化学
多路复用
微流控
数字微流体
数字聚合酶链反应
核酸
纳米技术
分子诊断学
多路复用
生物系统
计算生物学
分子成像
分子探针
焦磷酸盐
多重连接依赖探针扩增
环介导等温扩增
限制
混乱
可扩展性
荧光
分子生物物理学
计算机科学
核酸检测
核酸定量
作者
Jiazhao Chen,Jingyi Ding,Rui Deng,Yi Wang,Zida Li
标识
DOI:10.1021/acs.analchem.5c04408
摘要
Accurate and accessible molecular diagnostics are critical for early disease detection, infection control, and personalized medicine. Digital nucleic acid testing offers absolute quantification by isolating individual amplification events into discrete compartments. However, most current approaches require microfluidics to generate monodisperse droplets and fluorescence for multiplex detection, limiting scalability and accessibility. Here, we present StratoLAMP-2, a microfluidics-free, label-free digital nucleic acid quantification platform for multiplex digital molecular diagnostics, using vortex-generated polydisperse droplets and magnesium pyrophosphate precipitate as the visual readout. Target identity is encoded through primer concentration-driven stratification of precipitate levels, distinguishing droplets containing Target 1, Target 2, or both. To address the analytical challenges posed by droplet size variability and precipitate heterogeneity, we first developed a rule-based classification method using an optical density-droplet diameter phase diagram, followed by a deep learning approach for droplet segmentation, tracking, and classification, which achieved superior accuracy and robustness. Combined with volume-aware Poisson modeling, StratoLAMP-2 enables multiplexed absolute quantification of nucleic acids over a broad dynamic range. This approach offers a clinically relevant, low-cost, and scalable alternative to conventional digital assays, paving the way for point-of-care molecular diagnostics in decentralized and underserved environments.
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