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'All-solid-state' electrochemistry of a protein-confined polymer electrolyte film.

作者信息

Parthasarathy Meera, Pillai Vijayamohanan K, Mulla Imtiaz S, Shabab Mohammed, Khan M I

机构信息

Physical and Materials Chemistry Division, National Chemical Laboratory, Pune 411 008, Maharashtra, India.

出版信息

Biochem Biophys Res Commun. 2007 Dec 7;364(1):86-91. doi: 10.1016/j.bbrc.2007.09.118. Epub 2007 Oct 4.

DOI:10.1016/j.bbrc.2007.09.118
PMID:17936722
Abstract

Interfacial redox behavior of a heme protein (hemoglobin) confined in a solid polymer electrolyte membrane, Nafion (a perfluoro sulfonic acid ionomer) is investigated using a unique 'all-solid-state' electrochemical methodology. The supple phase-separated structure of the polymer electrolyte membrane, with hydrophilic pools containing solvated protons and water molecules, is found to preserve the incorporated protein in its active form even in the solid-state, using UV-visible, Fluorescence (of Tryptophan and Tyrosine residues) and DRIFT (diffuse reflectance infrared Fourier transform) spectroscopy. More specifically, solid-state cyclic voltammetry and electrochemical impedance of the protein-incorporated polymer films reveal that the Fe2+-form of the entrapped protein is found to bind molecular oxygen more strongly than the native protein. In the 'all-solid-state' methodology, as there is no need to dip the protein-modified electrode in a liquid electrolyte (like the conventional electrochemical methods), it offers an easier means to study a number of proteins in a variety of polymer matrices (even biomimetic assemblies). In addition, the results of the present investigation could find interesting application in a variety of research disciplines, in addition to its fundamental scientific interest, including protein biotechnology, pharmaceutical and biomimetic chemistry.

摘要

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