Bovine tuberculosis

(Barry) #1

Adaptive Immunity 167


Howard, C.J., Sopp, P. and Parsons, K.R. (1992) L-selectin expression differentiates T cells isolated from
different lymphoid tissues in cattle but does not correlate with memory. Immunology 77(2), 228–234.
Howard, C.J., Kwong, L.S., Villarreal-Ramos, B., Sopp, P. and Hope, J.C. (2002) Exposure to Mycobac-
terium avium primes the immune system of calves for vaccination with Mycobacterium bovis BCG.
Clinical and Experimental Immunology 130(2), 190–195.
Jurado, J.O., Pasquinelli, V., Alvarez, I.B., Pena, D., Rovetta, A., et al. (2012) IL-17 and IFN-γ expression in
lymphocytes from patients with active tuberculosis correlates with the severity of the disease. Journal
of Leukocyte Biology 91(6), 991–1002.
Jutila, M.A., Holderness, J., Graff, J.C., Hedges, J., Abrahamsen, M., et al. (2008) Antigen-independent
priming: a transitional response of bovine γd T-cells to infection. Animal Health Research Reviews
9(1), 47–57.
Kabelitz, D. (2011) γd T-cells: cross-talk between innate and adaptive immunity. Cellular and Molecular Life
Sciences 68(14), 2331–2333.
Kawashima, T., Norose, Y., Watanabe, Y., Enomoto, Y., Narazaki, H., et al. (2003) Cutting edge: major CD8
T cell response to live Bacillus Calmette-Guérin is mediated by CD1 molecules. Journal of Immunol-
ogy 170(11), 5345–5348.
Kennedy, H.E., Welsh, M.D., Bryson, D.G., Cassidy, J., Forster, F., et al. (2002) Modulation of immune
responses to Mycobacterium bovis in cattle depleted of WC1(+) gamma delta T cells. Infection and
Immunity 70(3), 1488–1500.
Khader, S.A. and Cooper, A.M. (2008) IL-23 and IL-17 in tuberculosis. Cytokine 41(2), 79–83.
Khader, S.A., Bell, G.K., Pearl, J.E., Fountain, J.J., Rangel-Moreno, J., et al. (2007) IL-23 and IL-17 in the
establishment of protective pulmonary CD4+ T cell responses after vaccination and during Mycobac-
terium tuberculosis challenge. Natural Immunity 8(4), 369–377.
Khader, S.A., Guglani, L., Rangel-Moreno, J., Gopal, R., Junecko, B.A., et al. (2011) IL-23 is required for
long-term control of Mycobacterium tuberculosis and B cell follicle formation in the infected lung.
Journal of Immunology 187(10), 5402–5407.
Koinig, H.C., Talker, S.C., Stadler, M., Ladinig, A., Graage, R., et al. (2015) PCV2 vaccination induces
IFN-γ/TNF-α co-producing T cells with a potential role in protection. Veterinary Research 46(1), 20.
Ladel, C.H., Hess, J., Daugelat, S., Mombaerts, P., Tonegawa, S. and Kaufmann, S.H.E. (1995) Contri-
bution of α/β and γ/d T lymphocytes to immunity against Mycobacterium bovis Bacillus Calmette
Guérin: studies with T cell receptor-deficient mutant mice. European Journal of Immunogenetics
25(3), 838–846.
Lahmers, K.K., Norimine, J., Abrahamsen, M.S., Palmer, G.H. and Brown, W.C. (2004) The CD4+ T cell
immunodominant anaplasma marginale major surface protein 2 stimulates T cell clones that express
unique T cell receptors. Journal of Leukocyte Biology 77(2), 199–208.
Le Bourhis, L., Martin, E., Péguillet, I., Guihot, A., Froux, N., et al. (2010) Antimicrobial activity of mucosal-
associated invariant T cells. Natural Immunity 11(8), 701–708.
Liebana, E., Aranaz, A., Aldwell, F.E., McNair, J., Neill, S., et al. (2000) Cellular interactions in bovine
tuberculosis: release of active mycobacteria from infected macrophages by antigen-stimulated T cells.
Immunology 99(1), 23–29.
Liebana, E., Marsh, S., Gough, J., Nunez, A., Vordermeier, H.M., et al. (2007) Distribution and activation
of T-lymphocyte subsets in tuberculous bovine lymph-node granulomas. Veterinary Pathology 44(3),
366–372.
Lindestam Arlehamn, C.S., Gerasimova, A., Mele, F., Henderson, R., Swann, J., et al. (2013) Memory T
cells in latent Mycobacterium tuberculosis infection are directed against three antigenic islands and
largely contained in a CXCR3+CCR6+ Th1 subset. PLoS Pathogen 9(1), e1003130.
Lockhart, E., Green, A.M. and Flynn, J.L. (2006) IL-17 production is dominated by γd T cells rather than
CD4 T cells during Mycobacterium tuberculosis infection. Journal of Immunology 177(7), 4662–4669.
Mackay, C.R. and Beya, M.-F. (1989) Matzinger P. γ/d T cells express a unique surface molecule appearing
late during thymic development. European Journal of Immunogenetics 19(8), 1477–1483.
Maggioli, M.F., Palmer, M.V., Thacker, T.C., Vordermeier, H.M. and Waters, W.R. (2015a) Characterization
of effector and memory T cell subsets in the immune response to bovine tuberculosis in cattle. PLoS
One 10(4), 1–20.
Maggioli, M.F., Palmer, M.V., Vordermeier, H.M., Whelan, A.O., Fosse, J.M., et al. (2015b) Application of
long-term cultured interferon-gamma; enzyme-linked immunospot assay for assessing effector and
memory T cell responses in cattle. Journal of Visualized Experiments 101, e52833.

Free download pdf