Literature DB >> 27216297

A centrifugal direct recombinase polymerase amplification (direct-RPA) microdevice for multiplex and real-time identification of food poisoning bacteria.

Goro Choi1, Jae Hwan Jung, Byung Hyun Park, Seung Jun Oh, Ji Hyun Seo, Jong Seob Choi, Do Hyun Kim, Tae Seok Seo.   

Abstract

In this study, we developed a centrifugal direct recombinase polymerase amplification (direct-RPA) microdevice for multiplex and real-time identification of food poisoning bacteria contaminated milk samples. The microdevice was designed to contain identical triplicate functional units and each unit has four reaction chambers, thereby making it possible to perform twelve direct-RPA reactions simultaneously. The integrated microdevice consisted of two layers: RPA reagents were injected in the top layer, while spiked milk samples with food poisoning bacteria were loaded into sample reservoirs in the bottom layer. For multiplex bacterial detection, the target gene-specific primers and probes were dried in each reaction chamber. The introduced samples and reagents could be equally aliquoted and dispensed into each reaction chamber by centrifugal force, and then the multiplex direct-RPA reaction was executed. The target genes of bacteria spiked in milk could be amplified at 39 °C without a DNA extraction step by using the direct-RPA cocktails, which were a combination of a direct PCR buffer and RPA enzymes. As the target gene amplification proceeded, the increased fluorescence signals coming from the reaction chambers were recorded in real-time at an interval of 2 min. The entire process, including the sample distribution, the direct-RPA reaction, and the real-time analysis, was accomplished with a custom-made portable genetic analyzer and a miniaturized optical detector. Monoplex, duplex, and triplex food poisoning bacteria (Salmonella enterica, Escherichia coli O157:H7, and Vibrio parahaemolyticus) detection was successfully performed with a detection sensitivity of 4 cells per 3.2 μL of milk samples within 30 min. By implementing the direct-PRA on the miniaturized centrifugal microsystem, the on-site food poisoning bacteria analysis would be feasible with high speed, sensitivity, and multiplicity.

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Year:  2016        PMID: 27216297     DOI: 10.1039/c6lc00329j

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  13 in total

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Review 2.  Towards Multiplex Molecular Diagnosis-A Review of Microfluidic Genomics Technologies.

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Journal:  Biosens Bioelectron       Date:  2021-11-06       Impact factor: 10.618

Review 6.  Micro/nano biomedical devices for point-of-care diagnosis of infectious respiratory diseases.

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Review 7.  Recent Developments in Isothermal Amplification Methods for the Detection of Foodborne Viruses.

Authors:  Cassandra Suther; Sloane Stoufer; Yanjiao Zhou; Matthew D Moore
Journal:  Front Microbiol       Date:  2022-03-03       Impact factor: 5.640

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Authors:  Jingyu Zhou; Qiujing Wang; Lijun Zhu; Shibo Li; Wei Li; Yongfeng Fu; Xunjia Cheng
Journal:  Mol Cell Probes       Date:  2020-04-21       Impact factor: 2.365

9.  Recombinase Polymerase Amplification (RPA) Combined with Lateral Flow Immunoassay for Rapid Detection of Salmonella in Food.

Authors:  Jiali Li; Biao Ma; Jiehong Fang; Antong Zhi; Erjing Chen; Ying Xu; Xiaoping Yu; Chuanxin Sun; Mingzhou Zhang
Journal:  Foods       Date:  2019-12-26

10.  An Integrated Smartphone-Based Genetic Analyzer for Qualitative and Quantitative Pathogen Detection.

Authors:  Hau Van Nguyen; Van Dan Nguyen; Fei Liu; Tae Seok Seo
Journal:  ACS Omega       Date:  2020-07-27
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