4.3 Article

Development and evaluation of a real-time fluorogenic loop-mediated isothermal amplification assay integrated on a microfluidic disc chip (on-chip LAMP) for rapid and simultaneous detection of ten pathogenic bacteria in aquatic animals

期刊

JOURNAL OF MICROBIOLOGICAL METHODS
卷 104, 期 -, 页码 26-35

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.mimet.2014.06.008

关键词

Aquaculture; Loop-mediated isothermal amplification; Microfluidic chip; Multiplex detection; Pathogenic bacteria; Real-time detection

资金

  1. National 863 Project [2012AA020101, 2012AA092001]
  2. Program for the Natural Science Foundation of China [31372555]
  3. Zhejiang Provincial Natural Science Foundation of China [LZ13C190001]
  4. Donghai Sea Collaborative Innovation Center for Industrial Upgrading Mariculture
  5. KC Wong Magna Fund in Ningbo University

向作者/读者索取更多资源

Rapid, low-cost, and user-friendly strategies are urgently needed for early disease diagnosis and timely treatment, particularly for on-site screening of pathogens in aquaculture. In this study, we successfully developed a real-time fluorogenic loop-mediated isothermal amplification assay integrated on a microfluidic disc chip (on-chip LAMP), which was capable of simultaneously detecting 10 pathogenic bacteria in aquatic animals, i.e., Nocardia seriolae, Pseudomonas putida, Streptococcus iniae, Vibrio alginolyticus, Vibrio anguillarum, Vibrio fluvialis, Vibrio harveyi, Vibrio parahaemolyticus, Vibrio rotiferianus, and Vibrio vulnificus. The assay provided a nearly-automated approach, with only a single pipetting step per chip for sample dispensing. This technique could achieve limits of detection (LOD) ranging from 0.40 to 6.42 pg per 1.414 mu l. reaction in less than 30 min. The robust reproducibility was demonstrated by a little variation among duplications for each bacterium with the coefficient of variation (CV) for time to positive (Tp) value less than 0.10. The clinical sensitivity and specificity of this on-chip LAMP assay in detecting field samples were 96.2% and 93.8% by comparison with conventional microbiological methods. Compared with other well-known techniques, on-chip LAMP assay provides low sample and reagent consumption, ease-of-use, accelerated analysis, multiple bacteria and on-site detection, and high reproducibility, indicating that such a technique would be applicable for on-site detection and routine monitoring of multiple pathogens in aquaculture. (C) 2014 Elsevier B.V. All rights reserved.

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