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Volumn 40, Issue 1, 2001, Pages 37-45
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C60-Fullerene monomalonate adducts selectively inactivate neuronal nitric oxide synthase by uncoupling the formation of reactive oxygen intermediates from nitric oxide production
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Author keywords
[No Author keywords available]
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Indexed keywords
ARGININE;
CALMODULIN;
CATALASE;
FULLERENE DERIVATIVE;
HYDROGEN PEROXIDE;
MALONIC ACID DERIVATIVE;
NITRIC OXIDE;
NITRIC OXIDE SYNTHASE;
OXYGEN;
REACTIVE OXYGEN METABOLITE;
REDUCED NICOTINAMIDE ADENINE DINUCLEOTIDE PHOSPHATE;
SUPEROXIDE DISMUTASE;
TETRAHYDROBIOPTERIN;
CARBON;
CITRULLINE;
FULLERENE C60;
ISOENZYME;
MONOMALONIC ACID C(60);
NEURONAL NITRIC OXIDE SYNTHASE;
NOS1 PROTEIN, MOUSE;
NOS1 PROTEIN, RAT;
ARTICLE;
CHEMICAL COMPOSITION;
CONTROLLED STUDY;
DILUTION;
ELECTRON TRANSPORT;
ENZYME INACTIVATION;
ENZYME KINETICS;
ENZYME METABOLISM;
MOLECULAR DYNAMICS;
PRIORITY JOURNAL;
TIME;
ANIMAL;
BIOSYNTHESIS;
CATALYSIS;
CATTLE;
CELL LINE;
DRUG ANTAGONISM;
DRUG EFFECT;
KINETICS;
METABOLISM;
MOUSE;
RAT;
ANIMALS;
ARGININE;
CARBON;
CATALYSIS;
CATTLE;
CELL LINE;
CITRULLINE;
FULLERENES;
HYDROGEN PEROXIDE;
ISOENZYMES;
KINETICS;
MALONATES;
MICE;
NITRIC OXIDE;
NITRIC OXIDE SYNTHASE;
NITRIC OXIDE SYNTHASE TYPE I;
RATS;
REACTIVE OXYGEN SPECIES;
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EID: 0035830319
PISSN: 00062960
EISSN: None
Source Type: Journal
DOI: 10.1021/bi0019444 Document Type: Article |
Times cited : (44)
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References (57)
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