Article
Mercury and human genotoxicity: Critical considerations and possible molecular mechanisms
Laboratório de Farmacologia Molecular, Brazil; Departamento de Química, Universidade de Aveiro, Aveiro, Portugal; Laboratório de Neuroendocrinologia, Brazil; Laboratório de Neuroquímica Molecular e Celular, Instituto de Ciências Biológicas, Universidade Federal do Pará (UFPA), Belém, Brazil
Pharmacological Research
DOI:10.1016/j.phrs.2009.02.011
pp.212-220
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Article: A ferrocene-quinoxaline derivative as a highly selective probe for colorimetric and redox sensing of toxic mercury(II) cations.
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ABSTRACT: A new chemosensor molecule 3 based on a ferrocene-quinoxaline dyad recognizes mercury (II) cations in acetonitrile solution. Upon recognition, an anodic shift of the ferrocene/ferrocenium oxidation peaks and a progressive red-shift (Δλ=140 nm) of the low-energy band, are observed in its absorption spectrum. This change in the absorption spectrum is accompanied by a colour change from orange to deep green, which can be used for a "naked-eye" detection of this metal cation.Sensors 01/2010; 10(12):11311-21. · 1.74 Impact Factor
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Keywords
bind sulfhydryl groups
direct interaction
diverse areas
DNA molecules
genotoxicity
growing use
long-term effects
main processes
Mercury compounds versatility
metal genotoxicity
methylmercury poisoning
normal development
numerous applications
oxidative stress
potential molecular mechanisms
present manuscript
psychomotor development
safety limit
significant genotoxic alterations
widespread concern