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Rapid detection of severe fever with thrombocytopenia syndrome virus (SFTSV) total antibodies by up‐converting phosphor technology‐based lateral‐flow assay
Author(s) -
Huang Chao,
Wei Qiaozhen,
Hu Qiushi,
Wen Tian,
Xue Lei,
Li Shuang,
Zeng Xiaoyan,
Shi Fengjuan,
Jiao Yongjun,
Zhou Lei
Publication year - 2019
Publication title -
luminescence
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.428
H-Index - 45
eISSN - 1522-7243
pISSN - 1522-7235
DOI - 10.1002/bio.3588
Subject(s) - antibody , detection limit , virology , blot , virus , microbiology and biotechnology , chemistry , biology , chromatography , immunology , biochemistry , gene
Abstract In this study, an up‐converting phosphor technology‐based lateral‐flow (UPT‐LF) assay was developed to detect severe fever with thrombocytopenia syndrome virus (SFTSV) total antibodies rapidly and specifically. SFTSV recombinant N protein (SFTSV‐rNP) was coated on analytical membrane for sample capture, up‐converting phosphor (UCP) particles were used as the reporter, the luminescence emitted by UCP particles was converted to a measurable signal by a biosensor. The performance of UPT‐LF assay was evaluated by testing 302 field serum samples by ELISA (enzyme‐linked immunosorbent assay), Western blotting and UPT‐LF assay. UPT‐LF assay exhibited a lower detection limit than ELISA, and a satisfied level of agreement was exhibited by Kappa statistics (Kappa coefficient = 0.938). Considering Western blotting as the reference for comparison, the sensitivity and specificity of UPT‐LF assay could reach 98.31% and 100%. UPT‐LF assay showed no specific reaction with hantavirus total serum antibodies, which avoids the misdiagnosis of SFTSV from hantavirus that could cause similar clinical symptoms. UPT‐LF assay was able to achieve acceptable results within 15 min and needed only 10 μL sample for each test. As a whole, UPT‐LF assay is a candidate method for on‐site surveillance of SFTSV total antibodies owing to its excellent sensitivity, specificity, stability, easy operation and for being less time consuming.

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