Glycolytic Inhibitor Failed to Inhibit Superoxide Generation in Mouse Macrophages: An Investigation Using a Chemiluminescence Probe Specific for Superoxide Anion

Glucose is widely known to be required during superoxide generation in phagocytic cells. However, when an specific chemiluminescence probe with the Cypridina luciferin analog 2-methyl-6-(p-methoxyphenyl)-3, 7 -dihydroimidazo[ 1,2-a]pyrazin-3-one (MCLA) was used, about 60% of the chemiluminescence re...

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Veröffentlicht in:Agricultural and biological chemistry 1989-04, Vol.53 (4), p.1189-1191
Hauptverfasser: Hishinuma, Kohya, Hosono, Akira, Mashko, Shinroh, Inaba, Humio, Kimura, Shuichi
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Sprache:eng
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Zusammenfassung:Glucose is widely known to be required during superoxide generation in phagocytic cells. However, when an specific chemiluminescence probe with the Cypridina luciferin analog 2-methyl-6-(p-methoxyphenyl)-3, 7 -dihydroimidazo[ 1,2-a]pyrazin-3-one (MCLA) was used, about 60% of the chemiluminescence remained in stimulated macrophages in the presence of the glycolytic inhibitor 2-deoxyglucose. -nonspecific luminol-dependent chemiluminescence disappeared when the same drug was added. These results clearly demonstrate that the generation of by macrophages is not completely glucose-dependent, and strongly suggest that macrophages have both glucoseindependent NADPH-supplying pathway(s) and glucose dependent pathway(s) which generate reactive oxygen species other than .
ISSN:0002-1369
DOI:10.1080/00021369.1989.10869415