Title of article
Direct electron transfer reactions between human ceruloplasmin and electrodes
Author/Authors
Haberska، نويسنده , , Karolina and Vaz-Domيnguez، نويسنده , , Cristina and De Lacey، نويسنده , , Antonio L. and Dagys، نويسنده , , Marius and Reimann، نويسنده , , Curt T. and Shleev، نويسنده , , Sergey، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2009
Pages
8
From page
34
To page
41
Abstract
In an effort to find conditions favouring bioelectrocatalytic reduction of oxygen by surface-immobilised human ceruloplasmin (Cp), direct electron transfer (DET) reactions between Cp and an extended range of surfaces were considered. Exploiting advances in surface nanotechnology, bare and carbon-nanotube-modified spectrographic graphite electrodes as well as bare, thiol- and gold-nanoparticle-modified gold electrodes were considered, and ellipsometry provided clues as to the amount and form of adsorbed Cp. DET was studied under different conditions by cyclic voltammetry and chronoamperometry. Two Faradaic processes with midpoint potentials of about 400 mV and 700 mV vs. NHE, corresponding to the redox transformation of copper sites of Cp, were clearly observed. In spite of the significant amount of Cp adsorbed on the electrode surfaces, as well as the quite fast DET reactions between the redox enzyme and electrodes, bioelectrocatalytic reduction of oxygen by immobilised Cp was never registered. The bioelectrocatalytic inertness of this complex multi-functional redox enzyme interacting with a variety of surfaces might be associated with a very complex mechanism of intramolecular electron transfer involving a kinetic trapping behaviour.
Keywords
and T3 copper sites , t1 , T2 , Direct electron transfer reactions , T2/T3 copper cluster , Ceruloplasmin
Journal title
Bioelectrochemistry
Serial Year
2009
Journal title
Bioelectrochemistry
Record number
1452143
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