微通道
材料科学
微流控
数字聚合酶链反应
造型(装饰)
模具
纳米技术
色谱法
化学
聚合酶链反应
基因
复合材料
生物化学
作者
Daae Jo,So Young Kim,Hyeon Woo Kang,Sung Han Pyo,Nam Kyu Jeong,Nam Ho Bae,Seok Jae Lee,Yong Tae Kim,Kyoung G. Lee
出处
期刊:Biochip Journal
[Springer Nature]
日期:2022-09-06
卷期号:16 (4): 433-440
被引量:3
标识
DOI:10.1007/s13206-022-00079-8
摘要
Sensitive, effective, and quantitative analysis of infectious pathogens is an important task for the prevention of human health threats. Herein, we present an advanced approach to producing gene-encapsulated microdroplets for quantitative analysis using a micropatterned metal mold and injection molding technique with an automatically operated system. An injection molded microdroplet generation device was successfully fabricated with a minimum channel width of 30 μm and optimized to produce 100 μm diameter droplets. The optimized microchannel design and flow rate also enable the production of stable numbers of microdroplets (~ 16,000 droplets). To verify the applicability of our device and system to droplet-based digital PCR analysis, Escherichia coli (E. coli) O157:H7 was selected as a model bacterial pathogen, and the stx2 gene was amplified in the microdroplets. The generated microdroplets exhibit both chemical and mechanical stability, and our results are similar to those obtained by a commercially available method. Accordingly, the usefulness of the microdroplet generative device and system is confirmed as a simple, fast, and reliable tool for the quantitative molecular analysis of infectious diseases.
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