GENLISA™ Mouse Anti-SARS-CoV-2 (Covid-19) to Spike RBD mutation K417N, E484K, N501Y (South African Variant) Quantitative TITRATION ELISA

SKU: KBVH015-32

ELISA for the quantitative determination of IgG Antibodies to SARS-CoV-2 Spike RBD protein of the Beta variant (South African) in mouse serum and plasma. Accurate, specific detection of antibodies with reproducible results.


Availability: 3 – 4 weeks | Pack Size: 1 x 96 wells

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Introduction: The GENLISA ELISA kits are used for assessing the specific biomarker in samples analytes which may be serum, plasma and cell culture supernatant as validated with the kit. The kit employs a sandwich ELISA technique which leads to a higher specificity and increased sensitivity compared to conventional competitive ELISA kits which employ only one antibody. Intended Use: The GENLISA Mouse Anti-SARS-CoV-2 IgG Antibody to spike RBD mutation K417N, E484K, N501Y of South Arican Variant B.1.351) Quantitative ELISA kit is used as an analytical tool for quantitative estimation of Anti-SARS-CoV-2 (2019-nCoV) Spike RBD IgG antibodies in mouse serum. Principle: The method employs indirect sandwich ELISA technique. SARS-CoV-2 Spike RBD (K417N, E484K, and N501Y)-His Recombinant protein is pre-coated onto microwells. Samples and standards are pipetted into microwells and Antibodies to Mouse Anti-SARS-CoV-2 (2019-nCoV) present in the sample are bound by the protein antigen. After incubation the wells are washed and followed by addition of HRP-conjugated Detection IgG Antibody into each well and incubated to form a complex. After washing microwells in order to remove any non-specific binding, the substrate solution (TMB) is added to microwells and color develops proportionally to the amount of Anti-Mouse Anti-SARS-CoV-2 (2019-nCoV) in the sample. Color development is then stopped by addition of stop solution. Absorbance is measured at 450 nm.

Additional information

Species

Mouse

Sample Type

Serum and Plasma

Detection Method

Colorimetric, 450nm

Regulatory Status

For Research Use Only

Research Area

COVID-19