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PUBMED FOR HANDHELDS

Journal Abstract Search


227 related items for PubMed ID: 34694919

  • 1. Identification of Leptospiral Protein Antigens Recognized by WC1+ γδ T Cell Subsets as Target for Development of Recombinant Vaccines.
    Teixeira AF, Gillespie A, Yirsaw A, Britton E, Telfer JC, Nascimento ALTO, Baldwin CL.
    Infect Immun; 2022 Jan 25; 90(1):e0049221. PubMed ID: 34694919
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  • 3. Gamma Delta TCR and the WC1 Co-Receptor Interactions in Response to Leptospira Using Imaging Flow Cytometry and STORM.
    Gillespie A, Gervasi MG, Sathiyaseelan T, Connelley T, Telfer JC, Baldwin CL.
    Front Immunol; 2021 Jan 25; 12():712123. PubMed ID: 34394114
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  • 5. The role of bovine γδ T cells and their WC1 co-receptor in response to bacterial pathogens and promoting vaccine efficacy: a model for cattle and humans.
    Baldwin CL, Hsu H, Chen C, Palmer M, McGill J, Waters WR, Telfer JC.
    Vet Immunol Immunopathol; 2014 Jun 15; 159(3-4):144-55. PubMed ID: 24726858
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  • 6. Differential TCR gene usage between WC1- and WC1+ ruminant gammadelta T cell subpopulations including those responding to bacterial antigen.
    Blumerman SL, Herzig CT, Rogers AN, Telfer JC, Baldwin CL.
    Immunogenetics; 2006 Aug 15; 58(8):680-92. PubMed ID: 16799810
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  • 7. Comparison of gene expression by co-cultured WC1+ gammadelta and CD4+ alphabeta T cells exhibiting a recall response to bacterial antigen.
    Blumerman SL, Herzig CT, Wang F, Coussens PM, Baldwin CL.
    Mol Immunol; 2007 Mar 15; 44(8):2023-35. PubMed ID: 17081609
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  • 8. Bovine Immune Response to Vaccination and Infection with Leptospira borgpetersenii Serovar Hardjo.
    Wilson-Welder JH, Alt DP, Nally JE, Olsen SC.
    mSphere; 2021 Mar 24; 6(2):. PubMed ID: 33762318
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  • 9. Scavenger receptor WC1 contributes to the γδ T cell response to Leptospira.
    Wang F, Herzig CT, Chen C, Hsu H, Baldwin CL, Telfer JC.
    Mol Immunol; 2011 Mar 24; 48(6-7):801-9. PubMed ID: 21227509
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  • 10. Responses of bovine WC1(+) gammadelta T cells to protein and nonprotein antigens of Mycobacterium bovis.
    Welsh MD, Kennedy HE, Smyth AJ, Girvin RM, Andersen P, Pollock JM.
    Infect Immun; 2002 Nov 24; 70(11):6114-20. PubMed ID: 12379688
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  • 14. The bovine model for elucidating the role of γδ T cells in controlling infectious diseases of importance to cattle and humans.
    Baldwin CL, Telfer JC.
    Mol Immunol; 2015 Jul 24; 66(1):35-47. PubMed ID: 25547715
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  • 15. γδ TCRs Function as Innate-like Receptors in the Bovine γδ T Cell Response against Leptospira.
    Gillespie AE, Loonie K, Lefevre L, Hope JC, Baldwin CL, Connelley TK.
    J Immunol; 2022 Nov 15; 209(10):1870-1879. PubMed ID: 36426936
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  • 16. Variegated Transcription of the WC1 Hybrid PRR/Co-Receptor Genes by Individual γδ T Cells and Correlation With Pathogen Responsiveness.
    Damani-Yokota P, Telfer JC, Baldwin CL.
    Front Immunol; 2018 Nov 15; 9():717. PubMed ID: 29867919
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  • 17. Antigenic basis of diversity in the gammadelta T cell co-receptor WC1 family.
    Chen C, Herzig CT, Telfer JC, Baldwin CL.
    Mol Immunol; 2009 Aug 15; 46(13):2565-75. PubMed ID: 19539374
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  • 18. Evaluation of type 1 immune response in naïve and vaccinated animals following challenge with Leptospira borgpetersenii serovar Hardjo: involvement of WC1(+) gammadelta and CD4 T cells.
    Naiman BM, Blumerman S, Alt D, Bolin CA, Brown R, Zuerner R, Baldwin CL.
    Infect Immun; 2002 Nov 15; 70(11):6147-57. PubMed ID: 12379692
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  • 19. WC1+ γδ T cells from cattle naturally infected with Mycobacterium avium subsp. paratuberculosis respond differentially to stimulation with PPD-J.
    Albarrak SM, Waters WR, Stabel JR, Hostetter JM.
    Vet Immunol Immunopathol; 2017 Aug 15; 190():57-64. PubMed ID: 28778324
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