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Novel application of Ki67 to quantify antigen-specific in vitro lymphoproliferation

Antigen-specific proliferation is a critical function of memory T cells that is often utilised to measure vaccine immunogenicity and T cell function. We proposed that measurement of intracellular expression of the nuclear protein, Ki67, could reliably assess specific T cell proliferation in vitro. K...

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Autores principales: Soares, Andreia, Govender, Lerisa, Hughes, Jane, Mavakla, Wendy, de Kock, Marwou, Barnard, Charlene, Pienaar, Bernadette, Janse van Rensburg, Esme, Jacobs, Gail, Khomba, Gloria, Stone, Lynnette, Abel, Brian, Scriba, Thomas J., Hanekom, Willem A.
Formato: Texto
Lenguaje:English
Publicado: Elsevier 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2989440/
https://www.ncbi.nlm.nih.gov/pubmed/20800066
http://dx.doi.org/10.1016/j.jim.2010.08.007
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author Soares, Andreia
Govender, Lerisa
Hughes, Jane
Mavakla, Wendy
de Kock, Marwou
Barnard, Charlene
Pienaar, Bernadette
Janse van Rensburg, Esme
Jacobs, Gail
Khomba, Gloria
Stone, Lynnette
Abel, Brian
Scriba, Thomas J.
Hanekom, Willem A.
author_facet Soares, Andreia
Govender, Lerisa
Hughes, Jane
Mavakla, Wendy
de Kock, Marwou
Barnard, Charlene
Pienaar, Bernadette
Janse van Rensburg, Esme
Jacobs, Gail
Khomba, Gloria
Stone, Lynnette
Abel, Brian
Scriba, Thomas J.
Hanekom, Willem A.
author_sort Soares, Andreia
collection PubMed
description Antigen-specific proliferation is a critical function of memory T cells that is often utilised to measure vaccine immunogenicity and T cell function. We proposed that measurement of intracellular expression of the nuclear protein, Ki67, could reliably assess specific T cell proliferation in vitro. Ki67 was expressed in CD4+ and CD8+ T cells that had undergone in vitro proliferation after 6-day culture of human whole blood or PBMC with antigens. T cells cultured with no antigen did not express Ki67. When compared to current flow cytometry based proliferation assays, Ki67 detected proliferating cells with greater sensitivity than BrdU incorporation, whereas its sensitivity was similar to dye dilution of Oregon Green (OG), a CFSE derivative. Overall, the magnitude and cytokine expression profile of proliferating T cells detected by Ki67 expression correlated strongly with T cells detected with BrdU or OG. The intra-assay variability of Ki67 proliferation was 2–3% for CD4+ T cells, and 10–16% for CD8+ T cells. Finally, we demonstrate that the Ki67 assay detects tetanus toxoid-specific CD4+ T cell proliferation after infant vaccination with tetanus toxoid (TT). Overall our data suggest that intracellular Ki67 expression provides a specific, quantitative and reproducible measure of antigen-specific T cell proliferation in vitro.
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spelling pubmed-29894402010-12-07 Novel application of Ki67 to quantify antigen-specific in vitro lymphoproliferation Soares, Andreia Govender, Lerisa Hughes, Jane Mavakla, Wendy de Kock, Marwou Barnard, Charlene Pienaar, Bernadette Janse van Rensburg, Esme Jacobs, Gail Khomba, Gloria Stone, Lynnette Abel, Brian Scriba, Thomas J. Hanekom, Willem A. J Immunol Methods Research Paper Antigen-specific proliferation is a critical function of memory T cells that is often utilised to measure vaccine immunogenicity and T cell function. We proposed that measurement of intracellular expression of the nuclear protein, Ki67, could reliably assess specific T cell proliferation in vitro. Ki67 was expressed in CD4+ and CD8+ T cells that had undergone in vitro proliferation after 6-day culture of human whole blood or PBMC with antigens. T cells cultured with no antigen did not express Ki67. When compared to current flow cytometry based proliferation assays, Ki67 detected proliferating cells with greater sensitivity than BrdU incorporation, whereas its sensitivity was similar to dye dilution of Oregon Green (OG), a CFSE derivative. Overall, the magnitude and cytokine expression profile of proliferating T cells detected by Ki67 expression correlated strongly with T cells detected with BrdU or OG. The intra-assay variability of Ki67 proliferation was 2–3% for CD4+ T cells, and 10–16% for CD8+ T cells. Finally, we demonstrate that the Ki67 assay detects tetanus toxoid-specific CD4+ T cell proliferation after infant vaccination with tetanus toxoid (TT). Overall our data suggest that intracellular Ki67 expression provides a specific, quantitative and reproducible measure of antigen-specific T cell proliferation in vitro. Elsevier 2010-10-31 /pmc/articles/PMC2989440/ /pubmed/20800066 http://dx.doi.org/10.1016/j.jim.2010.08.007 Text en © 2010 Elsevier B.V. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Research Paper
Soares, Andreia
Govender, Lerisa
Hughes, Jane
Mavakla, Wendy
de Kock, Marwou
Barnard, Charlene
Pienaar, Bernadette
Janse van Rensburg, Esme
Jacobs, Gail
Khomba, Gloria
Stone, Lynnette
Abel, Brian
Scriba, Thomas J.
Hanekom, Willem A.
Novel application of Ki67 to quantify antigen-specific in vitro lymphoproliferation
title Novel application of Ki67 to quantify antigen-specific in vitro lymphoproliferation
title_full Novel application of Ki67 to quantify antigen-specific in vitro lymphoproliferation
title_fullStr Novel application of Ki67 to quantify antigen-specific in vitro lymphoproliferation
title_full_unstemmed Novel application of Ki67 to quantify antigen-specific in vitro lymphoproliferation
title_short Novel application of Ki67 to quantify antigen-specific in vitro lymphoproliferation
title_sort novel application of ki67 to quantify antigen-specific in vitro lymphoproliferation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2989440/
https://www.ncbi.nlm.nih.gov/pubmed/20800066
http://dx.doi.org/10.1016/j.jim.2010.08.007
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