Predicting Viruses Accurately by a Multiplex Microfluidic Loop-Mediated Isothermal Amplification Chip
Author(s) -
Xueen Fang,
Hui Chen,
Shaoning Yu,
Xingyu Jiang,
Jilie Kong
Publication year - 2010
Publication title -
analytical chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.117
H-Index - 332
eISSN - 1520-6882
pISSN - 0003-2700
DOI - 10.1021/ac102858j
Subject(s) - loop mediated isothermal amplification , multiplex , microfluidics , computational biology , dna microarray , multiplex polymerase chain reaction , chemistry , molecular diagnostics , microbiology and biotechnology , detection limit , chip , gene , dna , nanotechnology , polymerase chain reaction , chromatography , biology , genetics , computer science , gene expression , materials science , biochemistry , telecommunications
Multiplex gene assay is a valuable molecular tool not only in academic science but also in clinical diagnostics. Multiplex PCR assays, DNA microarrays, and various nanotechnology-based methods are examples of major techniques developed for analyzing multiple genes; none of these, however, are suitable for point-of-care diagnostics, especially in resource-limited settings. In this report, we describe an octopus-like multiplex microfluidic loop-mediated isothermal amplification (mμLAMP) assay for the rapid analysis of multiple genes in the point-of-care format and provide a robust approach for predicting viruses. This assay with the ability of analyzing multiple genes qualitatively and quantitatively is highly specific, operationally simple, and cost/time-effective with the detection limit of less than 10 copies/μL in 2 μL quantities of sample within 0.5 h. We successfully developed a mμLAMP chip for differentiating three human influenza A substrains and identifying eight important swine viruses.
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