纳米孔测序
仆从
计算生物学
纳米孔
分子诊断学
分析物
周转时间
计算机科学
DNA测序
生物标志物
纳米技术
DNA
生物
生物信息学
化学
材料科学
色谱法
遗传学
操作系统
作者
Caroline Koch,Benedict Reilly-O’Donnell,Richard Gutierrez,Carla Lucarelli,Fu Siong Ng,Julia Gorelik,Aleksandar P. Ivanov,Joshua B. Edel
标识
DOI:10.1038/s41565-023-01479-z
摘要
Abstract There is an unmet need to develop low-cost, rapid and highly multiplexed diagnostic technology platforms for quantitatively detecting blood biomarkers to advance clinical diagnostics beyond the single biomarker model. Here we perform nanopore sequencing of DNA-barcoded molecular probes engineered to recognize a panel of analytes. This allows for highly multiplexed and simultaneous quantitative detection of at least 40 targets, such as microRNAs, proteins and neurotransmitters, on the basis of the translocation dynamics of each probe as it passes through a nanopore. Our workflow is built around a commercially available MinION sequencing device, offering a one-hour turnaround time from sample preparation to results. We also demonstrate that the strategy can directly detect cardiovascular disease-associated microRNA from human serum without extraction or amplification. Due to the modularity of barcoded probes, the number and type of targets detected can be significantly expanded.
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