生物
DNA
微流控
核酸定量
生物传感器
数字聚合酶链反应
计算生物学
核酸
滚动圆复制
生物物理学
环介导等温扩增
DNA测序
寡核苷酸
生物系统
纳米技术
遗传学
聚合酶链反应
材料科学
生物化学
基因
DNA复制
作者
Malte Kühnemund,Iván Hernandez-Neuta,Mohd Istiaq Sharif,Matteo Cornaglia,Martin A. M. Gijs,Mats Nilsson
摘要
Single molecule quantification assays provide the ultimate sensitivity and precision for molecular analysis. However, most digital analysis techniques, i.e. droplet PCR, require sophisticated and expensive instrumentation for molecule compartmentalization, amplification and analysis. Rolling circle amplification (RCA) provides a simpler means for digital analysis. Nevertheless, the sensitivity of RCA assays has until now been limited by inefficient detection methods. We have developed a simple microfluidic strategy for enrichment of RCA products into a single field of view of a low magnification fluorescent sensor, enabling ultra-sensitive digital quantification of nucleic acids over a dynamic range from 1.2 aM to 190 fM. We prove the broad applicability of our analysis platform by demonstrating 5-plex detection of as little as ∼1 pg (∼300 genome copies) of pathogenic DNA with simultaneous antibiotic resistance marker detection, and the analysis of rare oncogene mutations. Our method is simpler, more cost-effective and faster than other digital analysis techniques and provides the means to implement digital analysis in any laboratory equipped with a standard fluorescent microscope.
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