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Fluorescent and Opt-Electric Recording Bacterial Identification Device for Ultrasensitive and Specific Detection of Microbials.

Jiaomei HuangYongjie ZhongWenxing LiWenxia WangChaoyang LiAimin WangHong YanYi WanJinghong Li
Published in: ACS sensors (2020)
Since microbial detection is an important aspect for the prevention and control of foodborne diseases, an ideal detection system with high sensitivity, strong specificity, and timeliness is needed. Here, we proposed a fluorescent and opt-electric recording bacterial identification device (FORBID) for fully automatic real-time photoelectric sensing analysis of microbials by integrating the metabolic characteristics of microbial and selective substrate catalysis. It simplifies the testing process (one-step) and decreases the need of professional technicians. Besides, the system exhibits ultrasensitive (1 CFU/mL) and specific detection (99%) in both microbials, Escherichia coli and Pseudomonas aeruginosa. More importantly, the timeliness of this system is even better than that of the traditional culture methods. It is believed that this system can be extended to the detection of other microorganisms and provide a potential alternative for the detection of pathogens.
Keyphrases
  • label free
  • loop mediated isothermal amplification
  • escherichia coli
  • pseudomonas aeruginosa
  • quantum dots
  • microbial community
  • cystic fibrosis
  • machine learning
  • risk assessment
  • multidrug resistant