Bovine tuberculosis

(Barry) #1

224 B.M. Buddle et al.


Waters, W.R., Maggioli, M.F., Palmer, M.V., Thacker, T.C., McGill, J.L., et al. (2015) Interleukin-17A as a
biomarker for bovine tuberculosis. Clinical and Vaccine Immunology 23, 168–180.
Wedlock, D.N., Vordermeier, H.M., Denis, M., Skinner, M.A., de Lisle, G.W., et al. (2005a) Vaccination of
cattle with a CpG oligodeoxynucleotide-formulated mycobacterial protein vaccine and Mycobacterium
bovis BCG induces levels of protection against bovine tuberculosis superior to those induced by vac-
cination with BCG alone. Infection and Immunity 73, 3540–3546.
Wedlock, D.N., Aldwell, F.E., Keen, D.L., Skinner, M.A. and Buddle, B.M. (2005b) Oral vaccination of brush-
tail possums (Trichosurus vulpecula) with BCG: immune responses, persistence of BCG in lymphoid
organs and excretion in faeces. New Zealand Veterinary Journal 53, 301–306.
Wedlock, D.N., Denis, M., Vordermeier, H.M., Hewinson, R.G. and Buddle, B.M. (2007) Vaccination of cattle
with Danish and Pasteur strains of Mycobacterium bovis BCG induce different levels of IFN-γ post-
vaccination, but induce similar levels of protection against bovine tuberculosis. Veterinary Immunol-
ogy and Immunopathology 118, 50–58.
Wedlock, D.N., Denis, M., Painter, G.F., Ainge, G.D., Vordermeier, H.M., et al. (2008) Enhanced protection
against bovine tuberculosis after coadministration of Mycobacterium bovis BCG with a mycobacterial
protein vaccine-adjuvant combination but not after coadministration of adjuvant alone. Clinical and
Vaccine Immunology 15, 765–772.
Wedlock, D.N., Aldwell, F.E., de Lisle, G.W., Vordermeier, H.M., Hewinson, R.G., et al. (2011) Protection
against bovine tuberculosis induced by oral vaccination of cattle with Mycobacterium bovis BCG is
not enhanced by co-administration of mycobacterial protein vaccines. Veterinary Immunology and
Immunopathology 144, 220–227.
Whelan, A.O., Clifford, D., Upadhyay, B., Breadon, E.L., McNair, J., et al. (2010) Development of a skin
test for bovine tuberculosis for differentiating infected from vaccinated animals. Journal of Clinical
Microbiology 48, 3176–3181.
Whelan, A.O., Villarreal-Ramos, B., Vordermeier, H.M. and Hogarth, P.J. (2011a) Development of an anti-
body to bovine IL-2 reveals multifunctional CD4 T(EM) cells in cattle naturally infected with bovine
tuberculosis. PLoS ONE 6, e29194.
Whelan, A.O., Coad, M., Upadhyay, B.L., Clifford, D.J., Hewinson, R.G., et al. (2011b) Lack of correlation
between BCG-induced tuberculin skin test sensitisation and protective immunity in cattle. Vaccine 29,
5453–5458.
Whelan, A., Court, P., Xing, Z., Clifford, D., Hogarth, P.J., et al. (2012) Immunogenicity comparison of the
intradermal or endobronchial boosting of BCG vaccinates with Ad5-85A. Vaccine 30, 6294–6300.
Wilkinson, D., Smith, G.C., Delahay, R.J., Rogers, L.M., Cheeseman, C.L., et al. (2000) The effects of
bovine tuberculosis (Mycobacterium bovis) on mortality in a badger (Meles meles) population in
England. Journal of Zoology 250, 389–395.

Free download pdf