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Changing Cross-Reactivity for Different Immunoassays Using the Same Antibodies: Theoretical Description and Experimental Confirmation
Many applications of immunoassays involve the possible presence of structurally similar compounds that bind with antibodies, but with different affinities. In this regard, an important characteristic of an immunoassay is its cross-reactivity: the possibility of detecting various compounds in compari...
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Published in: | Applied sciences 2021-07, Vol.11 (14), p.6581 |
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description | Many applications of immunoassays involve the possible presence of structurally similar compounds that bind with antibodies, but with different affinities. In this regard, an important characteristic of an immunoassay is its cross-reactivity: the possibility of detecting various compounds in comparison with a certain standard. Based on cross-reactivity, analytical systems are assessed as either high-selective (responding strictly to a specific compound) or low-selective (responding to a number of similar compounds). The present study demonstrates that cross-reactivity is not an intrinsic characteristic of antibodies but can vary for different formats of competitive immunoassays using the same antibodies. Assays with sensitive detection of markers and, accordingly, implementation at low concentrations of antibodies and modified (competing) antigens are characterized by lower cross-reactivities and are, thus, more specific than assays requiring high concentrations of markers and interacting reagents. This effect was confirmed by both mathematical modeling and experimental comparison of an enzyme immunoassay and a fluorescence polarization immunoassay of sulfonamides and fluoroquinolones. Thus, shifting to lower concentrations of reagents decreases cross-reactivities by up to five-fold. Moreover, the cross-reactivities are changed even in the same assay format by varying the ratio of immunoreactants’ concentrations and shifting from the kinetic or equilibrium mode of the antigen-antibody reaction. The described patterns demonstrate the possibility of modulating immunodetection selectivity without searching for new binding reactants. |
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In this regard, an important characteristic of an immunoassay is its cross-reactivity: the possibility of detecting various compounds in comparison with a certain standard. Based on cross-reactivity, analytical systems are assessed as either high-selective (responding strictly to a specific compound) or low-selective (responding to a number of similar compounds). The present study demonstrates that cross-reactivity is not an intrinsic characteristic of antibodies but can vary for different formats of competitive immunoassays using the same antibodies. Assays with sensitive detection of markers and, accordingly, implementation at low concentrations of antibodies and modified (competing) antigens are characterized by lower cross-reactivities and are, thus, more specific than assays requiring high concentrations of markers and interacting reagents. This effect was confirmed by both mathematical modeling and experimental comparison of an enzyme immunoassay and a fluorescence polarization immunoassay of sulfonamides and fluoroquinolones. Thus, shifting to lower concentrations of reagents decreases cross-reactivities by up to five-fold. Moreover, the cross-reactivities are changed even in the same assay format by varying the ratio of immunoreactants’ concentrations and shifting from the kinetic or equilibrium mode of the antigen-antibody reaction. 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In this regard, an important characteristic of an immunoassay is its cross-reactivity: the possibility of detecting various compounds in comparison with a certain standard. Based on cross-reactivity, analytical systems are assessed as either high-selective (responding strictly to a specific compound) or low-selective (responding to a number of similar compounds). The present study demonstrates that cross-reactivity is not an intrinsic characteristic of antibodies but can vary for different formats of competitive immunoassays using the same antibodies. Assays with sensitive detection of markers and, accordingly, implementation at low concentrations of antibodies and modified (competing) antigens are characterized by lower cross-reactivities and are, thus, more specific than assays requiring high concentrations of markers and interacting reagents. This effect was confirmed by both mathematical modeling and experimental comparison of an enzyme immunoassay and a fluorescence polarization immunoassay of sulfonamides and fluoroquinolones. Thus, shifting to lower concentrations of reagents decreases cross-reactivities by up to five-fold. Moreover, the cross-reactivities are changed even in the same assay format by varying the ratio of immunoreactants’ concentrations and shifting from the kinetic or equilibrium mode of the antigen-antibody reaction. The described patterns demonstrate the possibility of modulating immunodetection selectivity without searching for new binding reactants.</description><subject>Antibodies</subject><subject>Antigens</subject><subject>Binding sites</subject><subject>Competition</subject><subject>competitive interactions</subject><subject>Cross-reactivity</subject><subject>Enzyme immunoassay</subject><subject>Enzymes</subject><subject>Fluorescence</subject><subject>Fluorescence polarization</subject><subject>Fluoroquinolones</subject><subject>Immunoassay</subject><subject>Immunoassays</subject><subject>immunodetection</subject><subject>Low concentrations</subject><subject>Markers</subject><subject>mathematical modeling</subject><subject>Mathematical models</subject><subject>Molecular weight</subject><subject>Reactivity</subject><subject>Reagents</subject><subject>Selectivity</subject><subject>specificity of antibodies</subject><subject>Sulfonamides</subject><issn>2076-3417</issn><issn>2076-3417</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2021</creationdate><recordtype>article</recordtype><sourceid>PIMPY</sourceid><sourceid>DOA</sourceid><recordid>eNpNkcFu3CAQhq2okRIlOeUFkHqs3IIxtuktctJ2pUiV2uSMBjzsslqDC2yVfYC-d9lsVWUujJjhm_9nquqW0Y-cS_oJloUx1nZiYGfVZUP7ruYt69-9yS-qm5S2tIRkfGD0svozbsCvnV-TMYaU6h8IJrvfLh-IDZHcO2sxos9kNc97HyAlOCTynI4v8gbJT5iR3PnsdJgcps_kaYMhYnYGduQek4luyS54An4iDy8LRjcXXCmOwVsXZzhWr6tzC7uEN__Oq-r5y8PT-K1-_P51Nd491oZ3ba6bpmG9nBqju44WA1OxqiVwADPQqUfgckCrtbCTlRP0XEjbac4b0BSQUn5VrU7cKcBWLUULxIMK4NTrRYhrBbFo36HSphVGWEP5wFsQTLeMCiGxG7oCRV5Y70-sJYZfe0xZbcM--iJfNUK0LeNUNqXrw6nLHL83ov0_lVF1XJt6szb-Fz2FjFQ</recordid><startdate>20210701</startdate><enddate>20210701</enddate><creator>Sotnikov, Dmitriy V.</creator><creator>Zherdev, Anatoly V.</creator><creator>Zvereva, Elena A.</creator><creator>Eremin, Sergei A.</creator><creator>Dzantiev, Boris B.</creator><general>MDPI AG</general><scope>AAYXX</scope><scope>CITATION</scope><scope>ABUWG</scope><scope>AFKRA</scope><scope>AZQEC</scope><scope>BENPR</scope><scope>CCPQU</scope><scope>DWQXO</scope><scope>PIMPY</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>PRINS</scope><scope>DOA</scope><orcidid>https://orcid.org/0000-0002-6936-0720</orcidid><orcidid>https://orcid.org/0000-0003-3008-2839</orcidid><orcidid>https://orcid.org/0000-0003-4008-4918</orcidid></search><sort><creationdate>20210701</creationdate><title>Changing Cross-Reactivity for Different Immunoassays Using the Same Antibodies: Theoretical Description and Experimental Confirmation</title><author>Sotnikov, Dmitriy V. ; 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subjects | Antibodies Antigens Binding sites Competition competitive interactions Cross-reactivity Enzyme immunoassay Enzymes Fluorescence Fluorescence polarization Fluoroquinolones Immunoassay Immunoassays immunodetection Low concentrations Markers mathematical modeling Mathematical models Molecular weight Reactivity Reagents Selectivity specificity of antibodies Sulfonamides |
title | Changing Cross-Reactivity for Different Immunoassays Using the Same Antibodies: Theoretical Description and Experimental Confirmation |
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