数字聚合酶链反应
炸薯条
核酸
微流控
多路复用
数字微流体
纳米技术
计算机科学
材料科学
化学
聚合酶链反应
光电子学
基因
电润湿
电介质
电信
生物化学
作者
Wenqi Hu,Yidan Zhu,Qu Tang,Xiaolei Ji,Lei Wang,Weijun Ou,Li Guo,Li Wu,Hui Cong,Yuling Qin
标识
DOI:10.1002/biot.202300273
摘要
The chip-based digital polymerase chain reaction (PCR) is an indispensable technique for amplifying and quantifying nucleic acids, which has been widely employed in molecular diagnostics at both fundamental and clinical levels. However, the previous designs have yet to achieve widespread application due to limitations in complex chip fabrication, pretreatment procedures, special surface properties, and low throughput. This study presents a facile digital microfluidic chip driven by centrifugal force for digital PCR analysis. Interestingly, regardless of the hydrophilicity or hydrophobicity of the inner chip surface, an efficient digitization process can be achieved. PCR reagents introduced into the inlet can be allocated to 9600 microchambers and subsequently isolated by the immiscible phase (silicone oil). The centrifugal priming approach offers a facile means to achieve high-throughput analysis. The design was further employed for the quantification of nucleic acids using digital PCR. The calculated result exhibited a strong correlation with the measured value at the concentrations from 1 copy/μL to 1000 copies/μL (R
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