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6-Hydroxydopamine does not reduce molecular oxygen directly, but requires a coreductant

Data up to Jan 2025

Published1984
Citations37
References14

Total Citations Per Year

Abstract

References (14)

Autoxidation versus covalent binding of quinones as the mechanism of toxicity of dopamine, 6-hydroxydopamine, and related compounds toward C1300 neuroblastoma cells in vitro.

1978 • 936 citations

The Generation of Hydrogen Peroxide, Superoxide Radical, and Hydroxyl Radical by 6-Hydroxydopamine, Dialuric Acid, and Related Cytotoxic Agents

1974 • 894 citations

A Direct Demonstration of the Catalytic Action of Superoxide Dismutase through the Use of Pulse Radiolysis

1972 • 489 citations

Participation of active oxygen species in 6-hydroxydopamine toxicity to a human neuroblastoma cell line

1982 • 98 citations

PRODUCTION OF O2 IN PHOTOLYZED WATER DEMONSTRATED THROUGH THE USE OF SUPEROXIDE DISMUTASE*

1973 • 88 citations

6-Hydroxydopamine, a new oxidation mechanism

1972 • 80 citations

The fenton reaction between ferrous‐diethylenetriaminepentaacetic acid and hydrogen peroxide

1982 • 75 citations

Interaction of some divalent metal ions with diethylenetriaminepentaacetic acid

1959 • 59 citations

Spin-trapping free radicals in the autooxidation of 6-hydroxydopamine

1979 • 50 citations

Effects of superoxide dismutase and catalase on catalysis of 6-hydroxydopamine and 6-aminodopamine autoxidation by iron and ascorbate

1981 • 42 citations

Separation and Preliminary Studies on 2-Ketopantoyl Lactone and 2-Ketopantoic Acid Reductases of Yeast

1972 • 35 citations

42. Melanin and its precursors. Part VI. Further syntheses of 5 : 6-dihydroxyindole and its derivatives

1953 • 33 citations

Inhibition of iron-stimulated catecholamine degradation by the iron-chelators DETAFAC and Desferal

1981 • 17 citations

Kinetics of the Copper-Histidine Catalysis of Ferrocytochrome c Oxidation

1968 • 12 citations

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6-Hydroxydopamine does not reduce molecular oxygen directly, but requires a coreductant (1984) – Archives of Biochemistry and Biophysics | Metascience Observatory Explorer