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[Luminol and lucigenin-dependent chemiluminescence in 6-hydroxydopamine auto-oxidation].

O A Klimshina, A. N. Erin

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Abstract

It was shown by the methods of luminol- and lucigenin-dependent chemiluminescence that 6-hydroxydopamine 6-ONDA autooxidation is accompanied by generation of superoxide anion-radical which can further react with next 6-ONDA molecule. This fact is based on the observations that intensities of luminol- and lucigenin-dependent chemiluminescence during 6-ONDA autooxidation was increased in aprotonic aqueous solutions (with the decreasing of pH) and was extremely depended on 6-ONDA concentration. The obtained data allows to suggest that one of the possible mechanisms of 6-ONDA neurotoxic action includes the generation of superoxide, whose dismutation to hydrogen peroxide in the presence of transient valency ions gives rise to HO.

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What this paper is about

It was shown by the methods of luminol- and lucigenin-dependent chemiluminescence that 6-hydroxydopamine 6-ONDA autooxidation is accompanied by generation of superoxide anion-radical which can further react with next 6-ONDA molecule. This fact is based on the observations that intensities of luminol- and lucigenin-dependent chemiluminescence during 6-ONDA autooxidation was increased in aprotonic aqueous solutions (with the decreasing of pH) and was extremely depended on 6-ONDA concentration. The obtained data allows to suggest that one of the possible mechanisms of 6-ONDA neurotoxic action includes the generation of superoxide, whose dismutation to hydrogen peroxide in the presence of transient valency ions gives rise to HO.

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Available abstract

It was shown by the methods of luminol- and lucigenin-dependent chemiluminescence that 6-hydroxydopamine 6-ONDA autooxidation is accompanied by generation of superoxide anion-radical which can further react with next 6-ONDA molecule. This fact is based on the observations that intensities of luminol- and lucigenin-dependent chemiluminescence during 6-ONDA autooxidation was increased in aprotonic aqueous solutions (with the decreasing of pH) and was extremely depended on 6-ONDA concentration. The obtained data allows to suggest that one of the possible mechanisms of 6-ONDA neurotoxic action includes the generation of superoxide, whose dismutation to hydrogen peroxide in the presence of transient valency ions gives rise to HO.

Key concepts: Lucigenin, Chemiluminescence, Luminol, Superoxide, Hydroxydopamine, Chemistry, Photochemistry, Hydrogen peroxide

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[Luminol and lucigenin-dependent chemiluminescence in 6-hydroxydopamine auto-oxidation]. — Research Paper | ScholarLens