A highly stable biological film was prepared by casting an aqueous dispersion of protein and composite hydrogel obtained from the polysaccharide Scleroglucan (Sclg) and borax as a cross-linking agent. Heme proteins, such as hemoglobin (Hb), myoglobin (Mb), and horseradish peroxidase (HRP),were chosen as model proteins to investigate the immobilized system. A pair of well-defined quasi-reversible redox peaks, characteristics Of the protein heme Fe(II)/Fe(III) redox couples, were obtained at the Sclg-borax/proteins films oil pyrolytic graphite (PG) electrodes, as a consequence of the direct electron transfer between the protein and the PG electrode. A full characterization of the electron transfer kinetic was performed by opportunely modeling data obtained from cyclic voltammetry and square wave voltammetry experiments. The efficiency or our cross-linking approach was investigated by studying the influence of different borax groups percentage in the Sclg matrix, revealing the versatility of this hydrogel in the immobilization of redox proteins. The native conformation of the three heme proteins entrapped in the hydrogel films were proved to be unchanged, reflected by the unaltered Soret adsorption band and by the catalytic activity toward hydrogen peroxide (H(2)O(2)). The main kinetic parameters, such its the apparent Michaelis-Menten constant, for the electrocatalytic reaction were also evaluated. The peculiar characteristics of Sclg-borax matrix make it possible to find wide opportunities as proteins immobilizing agent for studies of direct electrochemistry and biosensors development.

Frasconi, M., Rea, S., Matricardi, P., Favero, G., Mazzei, F. (2009). Scleroglucan-Borax Hydrogel: A Flexible Tool for Redox Protein Immobilization. LANGMUIR, 25(18), 11097-11104 [10.1021/la901245z].

Scleroglucan-Borax Hydrogel: A Flexible Tool for Redox Protein Immobilization

MATRICARDI, PIETRO;
2009-01-01

Abstract

A highly stable biological film was prepared by casting an aqueous dispersion of protein and composite hydrogel obtained from the polysaccharide Scleroglucan (Sclg) and borax as a cross-linking agent. Heme proteins, such as hemoglobin (Hb), myoglobin (Mb), and horseradish peroxidase (HRP),were chosen as model proteins to investigate the immobilized system. A pair of well-defined quasi-reversible redox peaks, characteristics Of the protein heme Fe(II)/Fe(III) redox couples, were obtained at the Sclg-borax/proteins films oil pyrolytic graphite (PG) electrodes, as a consequence of the direct electron transfer between the protein and the PG electrode. A full characterization of the electron transfer kinetic was performed by opportunely modeling data obtained from cyclic voltammetry and square wave voltammetry experiments. The efficiency or our cross-linking approach was investigated by studying the influence of different borax groups percentage in the Sclg matrix, revealing the versatility of this hydrogel in the immobilization of redox proteins. The native conformation of the three heme proteins entrapped in the hydrogel films were proved to be unchanged, reflected by the unaltered Soret adsorption band and by the catalytic activity toward hydrogen peroxide (H(2)O(2)). The main kinetic parameters, such its the apparent Michaelis-Menten constant, for the electrocatalytic reaction were also evaluated. The peculiar characteristics of Sclg-borax matrix make it possible to find wide opportunities as proteins immobilizing agent for studies of direct electrochemistry and biosensors development.
2009
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHEM-08/A - Tecnologia, socioeconomia e normativa dei medicinali e dei prodotti per il benessere e per la salute
English
Con Impact Factor ISI
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=000269655000094&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=0c7ff228ccbaaa74236f48834a34396a
Frasconi, M., Rea, S., Matricardi, P., Favero, G., Mazzei, F. (2009). Scleroglucan-Borax Hydrogel: A Flexible Tool for Redox Protein Immobilization. LANGMUIR, 25(18), 11097-11104 [10.1021/la901245z].
Frasconi, M; Rea, S; Matricardi, P; Favero, G; Mazzei, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/430655
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