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Id Subject Object Predicate Lexical cue tao:has_database_id
2 28-33 ChemicalEntity denotes metal MESH:D008670
3 46-62 ChemicalEntity denotes hydroxyl radical MESH:D017665
19 160-176 ChemicalEntity denotes hydroxyl radical MESH:D017665
20 203-235 ChemicalEntity denotes 5,5-dimethyl-1-pyrroline N-oxide MESH:C017245
21 237-241 ChemicalEntity denotes DMPO MESH:C017245
22 250-258 ChemicalEntity denotes xanthine MESH:D019820
23 286-303 ChemicalEntity denotes hydrogen peroxide MESH:D006861
24 335-356 ChemicalEntity denotes DMPO-hydroxyl radical
25 451-468 ChemicalEntity denotes Hydroxyl radicals MESH:D017665
26 521-544 ChemicalEntity denotes DMPO-superoxide radical
27 608-612 ChemicalEntity denotes iron MESH:D007501
28 799-815 ChemicalEntity denotes hydroxyl radical MESH:D017665
29 851-868 ChemicalEntity denotes hydroxyl radicals MESH:D017665
30 907-924 ChemicalEntity denotes hydrogen peroxide MESH:D006861
31 988-997 ChemicalEntity denotes phosphate MESH:D010710
32 1023-1044 ChemicalEntity denotes deferoxamine mesylate MESH:D003676
33 1126-1131 ChemicalEntity denotes metal MESH:D008670

sentences

Id Subject Object Predicate Lexical cue
T1 0-94 Sentence denotes Evidence against transition metal-independent hydroxyl radical generation by xanthine oxidase.
T2 95-316 Sentence denotes It is shown by the use of EPR spectroscopy that formation of the hydroxyl radical adduct with the spin trap 5,5-dimethyl-1-pyrroline N-oxide (DMPO) in the xanthine-xanthine oxidase system is hydrogen peroxide-independent.
T3 317-450 Sentence denotes Production of the DMPO-hydroxyl radical adduct is inhibited by superoxide dismutase but is unaffected by purified grades of catalase.
T4 451-635 Sentence denotes Hydroxyl radicals are a secondary product of the decomposition of the DMPO-superoxide radical adduct and are also formed as a result of trace metals such as iron present in the buffer.
T5 636-717 Sentence denotes These results are in contrast with a recent report (Kuppusamy, P., and Zweier, J.
T6 718-730 Sentence denotes W. (1989) J.
T7 731-736 Sentence denotes Biol.
T8 737-742 Sentence denotes Chem.
T9 743-945 Sentence denotes 264, 9880-9884) in which the assertion is made that the hydroxyl radical adduct arises from the trapping of hydroxyl radicals generated via the direct reduction of hydrogen peroxide by xanthine oxidase.
T10 946-1178 Sentence denotes It is demonstrated here that treatment of phosphate buffer with the chelator deferoxamine mesylate is not in itself sufficient to suppress the effect of contaminating adventitious metal ions in xanthine-xanthine oxidase incubations.
T1 0-94 Sentence denotes Evidence against transition metal-independent hydroxyl radical generation by xanthine oxidase.
T2 95-316 Sentence denotes It is shown by the use of EPR spectroscopy that formation of the hydroxyl radical adduct with the spin trap 5,5-dimethyl-1-pyrroline N-oxide (DMPO) in the xanthine-xanthine oxidase system is hydrogen peroxide-independent.
T3 317-450 Sentence denotes Production of the DMPO-hydroxyl radical adduct is inhibited by superoxide dismutase but is unaffected by purified grades of catalase.
T4 451-635 Sentence denotes Hydroxyl radicals are a secondary product of the decomposition of the DMPO-superoxide radical adduct and are also formed as a result of trace metals such as iron present in the buffer.
T5 636-717 Sentence denotes These results are in contrast with a recent report (Kuppusamy, P., and Zweier, J.
T6 718-730 Sentence denotes W. (1989) J.
T7 731-736 Sentence denotes Biol.
T8 737-742 Sentence denotes Chem.
T9 743-945 Sentence denotes 264, 9880-9884) in which the assertion is made that the hydroxyl radical adduct arises from the trapping of hydroxyl radicals generated via the direct reduction of hydrogen peroxide by xanthine oxidase.
T10 946-1178 Sentence denotes It is demonstrated here that treatment of phosphate buffer with the chelator deferoxamine mesylate is not in itself sufficient to suppress the effect of contaminating adventitious metal ions in xanthine-xanthine oxidase incubations.

NCBITAXON

Id Subject Object Predicate Lexical cue db_id
T1 1014-1022 OrganismTaxon denotes chelator 263156