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A rapidly new-typed detection of norovirus based on F sub(0)F sub(1)-ATPase molecular motor biosensor
A rapidly new-typed detection of norovirus based on F sub(0)F sub(1)-ATPase molecular motor biosensor
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A rapidly new-typed detection of norovirus based on F sub(0)F sub(1)-ATPase molecular motor biosensor
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A rapidly new-typed detection of norovirus based on F sub(0)F sub(1)-ATPase molecular motor biosensor
A rapidly new-typed detection of norovirus based on F sub(0)F sub(1)-ATPase molecular motor biosensor

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A rapidly new-typed detection of norovirus based on F sub(0)F sub(1)-ATPase molecular motor biosensor
A rapidly new-typed detection of norovirus based on F sub(0)F sub(1)-ATPase molecular motor biosensor
Journal Article

A rapidly new-typed detection of norovirus based on F sub(0)F sub(1)-ATPase molecular motor biosensor

2016
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Overview
In order to adapt port rapid detection of food borne norovirus, presently we developed a new typed detection method based on F sub(0)F sub(1)-ATPase molecular motor biosensor. A specific probe was encompassed the conservative region of norovirus and F sub(0)F sub(1)-ATPase within chromatophore was constructed as a molecular motor biosensor through the \" epsilon -subunit antibody-streptomycin-biotin-probe\" system. Norovirus was captured based on probe-RNA specific binding. Our results demonstrated that the Limit of Quantification (LOQ) is 0.005 ng/mL for NV RNA and also demonstrated that this method possesses specificity and none cross-reaction for food borne virus. What's more, the experiment used this method could be accomplished in 1 h. We detected 10 samples by using this method and the results were consistent with RT-PCR results. Overall, based on F sub(0)F sub(1)-ATPase molecular motors biosensor system we firstly established a new typed detection method for norovirus detection and demonstrated that this method is sensitive and specific and can be used in the rapid detection for food borne virus.
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