吸光度
检出限
细菌生长
微流控
灵敏度(控制系统)
分析化学(期刊)
色谱法
卡那霉素
标准曲线
化学
材料科学
纳米技术
细菌
生物
生物化学
工程类
遗传学
电子工程
基因
作者
Wu Jingya,Maolin Zhang,Jianle Huang,Jingxin Guan,Chenxuan Hu,Mude Shi,Siyi Hu,Shurong Wang,Hanbin Ma
出处
期刊:Analyst
[Royal Society of Chemistry]
日期:2023-01-01
卷期号:148 (19): 4659-4667
被引量:1
摘要
We report a fully integrated digital microfluidic absorbance detection system with an enhanced sensitivity for online bacterial monitoring. Through a 100 μm gap in the chip, our optical detection system has a detection sensitivity for a BCA protein concentration of 0.1 mg mL-1. The absorbance detection limit of our system is 1.4 × 10-3 OD units, which is one order of magnitude better than that of the existing studies. The system's linear region is 0.1-7 mg mL-1, and the dynamic range is 0-25 mg mL-1. We measured the growth curves of wild-type and E. coli transformed with resistance plasmids and mixed at different ratios on chip. We sorted out the bacterial species including highly viable single cells based on the difference in absorbance data of growth curves. We explored the changes in the growth curves of E. coli under different concentrations of resistant media. In addition, we successfully screened for the optimal growth environment of the bacteria, in which the growth rate of PET30a-DH5α (in a medium with 33 μg mL-1 kanamycin resistance) was significantly higher than that of a 1 mg mL-1 resistance medium. In conclusion, the enhanced digital microfluidic absorbance detection system exhibits exceptional sensitivity, enabling precise bacterial monitoring and growth curve analysis, while also laying the foundation for DMF-based automated bioresearch platforms, thus advancing research in the life sciences.
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