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Reviews of Infectious Diseases|November 1, 1988
Phagocytes, O2 reduction, and hydroxyl radicalM S Cohen, B E Britigan, D J Hassett, et al.The Journal of Biological Chemistry|August 10, 2000
Inducible resistance to oxidant stress in the protozoan Leishmania chagasiM A Miller, S E McGowan, K R Gantt, et al.Infection and Immunity|December 1, 1995
Pyocyanin from Pseudomonas aeruginosa inhibits prostacyclin release from endothelial cellsJ M Kamath, B E Britigan, C D Cox, et al.Free Radical Biology & Medicine|January 1, 1988
Do humans neutrophils form hydroxyl radical? Evaluation of an unresolved controversyM S Cohen, B E Britigan, D J Hassett, et al.The Journal of Biological Chemistry|November 11, 1994
Eosinophil peroxidase-dependent hydroxyl radical generation by human eosinophilsM L McCormick, T L Roeder, M A Railsback, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|February 1, 1995
Free radicals and phagocytic cellsG M Rosen, S Pou, C L Ramos, et al.The Journal of Biological Chemistry|October 15, 1990
Hydroxyl radical is not a product of the reaction of xanthine oxidase and xanthine. The confounding problem of adventitious iron bound to xanthine oxidaseB E Britigan, S Pou, G M Rosen, et al.Journal of Immunology (Baltimore, Md. : 1950)|December 1, 1996
Eosinophils from schistosome-induced hepatic granulomas produce superoxide and hydroxyl radicalM L McCormick, A Metwali, M A Railsback, et al.The Journal of Infectious Diseases|December 1, 1992
Interaction of lactoferrin and lipopolysaccharide (LPS): effects on the antioxidant property of lactoferrin and the ability of LPS to prime human neutrophils for enhanced superoxide formationM S Cohen, J Mao, G T Rasmussen, et al.Journal of Leukocyte Biology|February 1, 1988
Oxygen metabolism of the HL-60 cell line: comparison of the effects of monocytoid and neutrophilic differentiationB Y Thompson, G Sivam, B E Britigan, et al.Pageof 49