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European Journal of Immunology|March 1, 1996
Nitric oxide-mediated suppression of T cell responses during Trypanosoma brucei infection: soluble trypanosome products and interferon-gamma are synergistic inducers of nitric oxide synthaseM J Sternberg, N A MabbottParasite Immunology|March 1, 1995
Suppressor macrophages in Trypanosoma brucei infection: nitric oxide is related to both suppressive activity and lifespan in vivoN A Mabbott, I A Sutherland, J M SternbergParasitology Research|January 1, 1994
Trypanosoma brucei is protected from the cytostatic effects of nitric oxide under in vivo conditionsN A Mabbott, I A Sutherland, J M SternbergImmunology|January 1, 1998
T-lymphocyte activation and the cellular form of the prion proteinN A Mabbott, K L Brown, J Manson, et al.Mucosal Immunology|September 25, 2014
Reciprocal regulation of lymphoid tissue development in the large intestine by IL-25 and IL-23D S Donaldson, B M Bradford, D Artis, et al.Mucosal Immunology|May 23, 2013
Microfold (M) cells: important immunosurveillance posts in the intestinal epitheliumN A Mabbott, D S Donaldson, H Ohno, et al.Immunology Today|August 23, 2000
Follicular dendritic cells in TSE pathogenesisM E Bruce, K L Brown, N A Mabbott, et al.Nature Medicine|April 3, 2001
Temporary depletion of complement component C3 or genetic deficiency of C1q significantly delays onset of scrapieN A Mabbott, M E Bruce, M Botto, et al.Immunology|October 10, 1998
African trypanosome infections in mice that lack the interferon-gamma receptor gene: nitric oxide-dependent and -independent suppression of T-cell proliferative responses and the development of anaemiaN A Mabbott, P S Coulson, L E Smythies, et al.Journal of Virology|March 9, 2000
Tumor necrosis factor alpha-deficient, but not interleukin-6-deficient, mice resist peripheral infection with scrapieN A Mabbott, A Williams, C F Farquhar, et al.Pageof 2