vibrio parahaemolyticus  (ATCC)


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    ATCC vibrio parahaemolyticus
    Detection of V. <t>parahaemolyticus</t> (Vp) by BMP-A-Ab in comparison with commercial immunomagnetic bead/Ab complex (MB-A-Ab). a Detection of Vp using ∆F-BMP-FA (schematic). Step I: ∆F-BMP-FA is coupled to anti-Vp Ab to construct BMP-A-Ab. Step II: BMP-A-Ab captures Vp. Step III: capture by magnetic rack. Step IV: captured Vp is resuspended and spread on plate. b Comparison of Vp capture rates for BMP-A-Ab vs. MB-A-Ab with three concentrations of Vp. Capture rate was consistently greater for BMP-A-Ab. Maximal capture rate was 93%, for Vp number 630 ± 25 per mL
    Vibrio Parahaemolyticus, supplied by ATCC, used in various techniques. Bioz Stars score: 94/100, based on 6 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/vibrio parahaemolyticus/product/ATCC
    Average 94 stars, based on 6 article reviews
    Price from $9.99 to $1999.99
    vibrio parahaemolyticus - by Bioz Stars, 2022-12
    94/100 stars

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    1) Product Images from "Engineered magnetosomes fused to functional molecule (protein A) provide a highly effective alternative to commercial immunomagnetic beads"

    Article Title: Engineered magnetosomes fused to functional molecule (protein A) provide a highly effective alternative to commercial immunomagnetic beads

    Journal: Journal of Nanobiotechnology

    doi: 10.1186/s12951-019-0469-z

    Detection of V. parahaemolyticus (Vp) by BMP-A-Ab in comparison with commercial immunomagnetic bead/Ab complex (MB-A-Ab). a Detection of Vp using ∆F-BMP-FA (schematic). Step I: ∆F-BMP-FA is coupled to anti-Vp Ab to construct BMP-A-Ab. Step II: BMP-A-Ab captures Vp. Step III: capture by magnetic rack. Step IV: captured Vp is resuspended and spread on plate. b Comparison of Vp capture rates for BMP-A-Ab vs. MB-A-Ab with three concentrations of Vp. Capture rate was consistently greater for BMP-A-Ab. Maximal capture rate was 93%, for Vp number 630 ± 25 per mL
    Figure Legend Snippet: Detection of V. parahaemolyticus (Vp) by BMP-A-Ab in comparison with commercial immunomagnetic bead/Ab complex (MB-A-Ab). a Detection of Vp using ∆F-BMP-FA (schematic). Step I: ∆F-BMP-FA is coupled to anti-Vp Ab to construct BMP-A-Ab. Step II: BMP-A-Ab captures Vp. Step III: capture by magnetic rack. Step IV: captured Vp is resuspended and spread on plate. b Comparison of Vp capture rates for BMP-A-Ab vs. MB-A-Ab with three concentrations of Vp. Capture rate was consistently greater for BMP-A-Ab. Maximal capture rate was 93%, for Vp number 630 ± 25 per mL

    Techniques Used: Construct

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  • 94
    ATCC vibrio parahaemolyticus
    Detection of V. <t>parahaemolyticus</t> (Vp) by BMP-A-Ab in comparison with commercial immunomagnetic bead/Ab complex (MB-A-Ab). a Detection of Vp using ∆F-BMP-FA (schematic). Step I: ∆F-BMP-FA is coupled to anti-Vp Ab to construct BMP-A-Ab. Step II: BMP-A-Ab captures Vp. Step III: capture by magnetic rack. Step IV: captured Vp is resuspended and spread on plate. b Comparison of Vp capture rates for BMP-A-Ab vs. MB-A-Ab with three concentrations of Vp. Capture rate was consistently greater for BMP-A-Ab. Maximal capture rate was 93%, for Vp number 630 ± 25 per mL
    Vibrio Parahaemolyticus, supplied by ATCC, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/vibrio parahaemolyticus/product/ATCC
    Average 94 stars, based on 1 article reviews
    Price from $9.99 to $1999.99
    vibrio parahaemolyticus - by Bioz Stars, 2022-12
    94/100 stars
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    Detection of V. parahaemolyticus (Vp) by BMP-A-Ab in comparison with commercial immunomagnetic bead/Ab complex (MB-A-Ab). a Detection of Vp using ∆F-BMP-FA (schematic). Step I: ∆F-BMP-FA is coupled to anti-Vp Ab to construct BMP-A-Ab. Step II: BMP-A-Ab captures Vp. Step III: capture by magnetic rack. Step IV: captured Vp is resuspended and spread on plate. b Comparison of Vp capture rates for BMP-A-Ab vs. MB-A-Ab with three concentrations of Vp. Capture rate was consistently greater for BMP-A-Ab. Maximal capture rate was 93%, for Vp number 630 ± 25 per mL

    Journal: Journal of Nanobiotechnology

    Article Title: Engineered magnetosomes fused to functional molecule (protein A) provide a highly effective alternative to commercial immunomagnetic beads

    doi: 10.1186/s12951-019-0469-z

    Figure Lengend Snippet: Detection of V. parahaemolyticus (Vp) by BMP-A-Ab in comparison with commercial immunomagnetic bead/Ab complex (MB-A-Ab). a Detection of Vp using ∆F-BMP-FA (schematic). Step I: ∆F-BMP-FA is coupled to anti-Vp Ab to construct BMP-A-Ab. Step II: BMP-A-Ab captures Vp. Step III: capture by magnetic rack. Step IV: captured Vp is resuspended and spread on plate. b Comparison of Vp capture rates for BMP-A-Ab vs. MB-A-Ab with three concentrations of Vp. Capture rate was consistently greater for BMP-A-Ab. Maximal capture rate was 93%, for Vp number 630 ± 25 per mL

    Article Snippet: Detection of Vibrio parahaemolyticus using engineered BMP/Ab complex ∆F-BMP-FA coupled with mouse anti-Vibrio parahaemolyticus Ab was used for detection of V. parahaemolyticus (ATCC 33847) (Vp), and detection rate was compared with that of MB-A.

    Techniques: Construct