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The Biochemical Journal|April 1, 1992
The NADPH-oxidase-associated H+ channel is opened by arachidonateL M Henderson, J B ChappellEuropean Journal of Biochemistry|November 1, 1993
Dihydrorhodamine 123: a fluorescent probe for superoxide generation?L M Henderson, J B ChappellThe Journal of Biological Chemistry|March 17, 1995
The arachidonate-activable, NADPH oxidase-associated H+ channel. Evidence that gp91-phox functions as an essential part of the channelL M Henderson, G Banting, J B ChappellThe Biochemical Journal|October 1, 1988
Superoxide generation by the electrogenic NADPH oxidase of human neutrophils is limited by the movement of a compensating chargeL M Henderson, J B Chappell, O T JonesEuropean Journal of Biochemistry|January 15, 1993
The immediate activator of the NADPH oxidase is arachidonate not phosphorylationL M Henderson, S K Moule, J B ChappellThe Biochemical Journal|November 15, 1989
Superoxide generation is inhibited by phospholipase A2 inhibitors. Role for phospholipase A2 in the activation of the NADPH oxidaseL M Henderson, J B Chappell, O T JonesThe Biochemical Journal|April 15, 1988
Internal pH changes associated with the activity of NADPH oxidase of human neutrophils. Further evidence for the presence of an H+ conducting channelL M Henderson, J B Chappell, O T JonesThe Biochemical Journal|September 1, 1987
The superoxide-generating NADPH oxidase of human neutrophils is electrogenic and associated with an H+ channelL M Henderson, J B Chappell, O T JonesThe Biochemical Journal|August 1, 1997
The arachidonate-activatable, NADPH oxidase-associated H+ channel is contained within the multi-membrane-spanning N-terminal region of gp91-phoxL M Henderson, S Thomas, G Banting, et al.The Biochemical Journal|January 1, 1973
Transport of glutamine and glutamate in kidney mitochondria in relation to glutamine deamidationM Crompton, J B ChappellPageof 10