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EPR spectroscopy of a clinically active (1:2) copper(II)-histidine complex used in the treatment of Menkes disease: a Fourier transform analysis of a fluid CW-EPR spectrum.
Gala, Lukas; Lawson, Michael; Jomova, Klaudia; Zelenicky, Lubomir; Congradyova, Andrea; Mazur, Milan; Valko, Marian.
Afiliação
  • Gala L; Faculty of Chemical and Food Technology, Slovak Technical University, Bratislava SK-812 37, Slovakia. lukas.gala19@gmail.com.
  • Lawson M; Faculty of Chemical and Food Technology, Slovak Technical University, Bratislava SK-812 37, Slovakia. alpinenewt@gmail.com.
  • Jomova K; Faculty of Chemical and Food Technology, Slovak Technical University, Bratislava SK-812 37, Slovakia. kjomova@ukf.sk.
  • Zelenicky L; Faculty of Chemical and Food Technology, Slovak Technical University, Bratislava SK-812 37, Slovakia. lzelenicky@ukf.sk.
  • Congradyova A; Faculty of Chemical and Food Technology, Slovak Technical University, Bratislava SK-812 37, Slovakia. andrea.congradyova@ukf.sk.
  • Mazur M; Faculty of Chemical and Food Technology, Slovak Technical University, Bratislava SK-812 37, Slovakia. milan.mazur@stuba.sk.
  • Valko M; Faculty of Chemical and Food Technology, Slovak Technical University, Bratislava SK-812 37, Slovakia. marian.valko@stuba.sk.
Molecules ; 19(1): 980-91, 2014 Jan 15.
Article em En | MEDLINE | ID: mdl-24434671
ABSTRACT
Redox active transition metal ions (e.g., iron and copper) have been implicated in the etiology of many oxidative stress-related diseases including also neurodegenerative disorders. Unbound copper can catalyze formation of reactive oxygen species (hydroxyl radicals) via Fenton reaction/Haber-Weiss chemistry and therefore, under physiological conditions, free copper is potentially toxic and very rarely exists inside cells. Copper(II) bound to the aminoacid L-histidine represents a species discovered in blood in the mid 60s and since then extensive research on this complex was carried out. Copper bound to L-histidine represents an exchangeable pool of copper(II) in equilibrium with the most abundant blood plasma protein, human serum albumin. The structure of this complex, in aqueous solution, has been a subject of many studies and reviews, however without convincing success. The significance of the (12) copper(II)-L-histidine complex at physiological pH documents its therapeutic applications in the treatment of Menkes disease and more recently in the treatment of infantile hypertrophic cardioencephalomyopathy. While recently the (12) Cu(II)-L-His complex has been successfully crystallized and the crystal structure was solved by X-ray diffraction, the structure of the complex in fluid solution at physiological pH is not satisfactorily known. The aim of this paper is to study the (12) Cu(II)-L-histidine complex at low temperatures by X-band and S-band EPR spectroscopy and at physiological pH at room temperature by Fourier transform CW-EPR spectroscopy.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Compostos Organometálicos / Histidina Limite: Humans Idioma: En Ano de publicação: 2014 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Compostos Organometálicos / Histidina Limite: Humans Idioma: En Ano de publicação: 2014 Tipo de documento: Article