Peptide immobilisation on porous silicon surface for metal ions detection

<p>Abstract</p> <p>In this work, a Glycyl-Histidyl-Glycyl-Histidine (GlyHisGlyHis) peptide is covalently anchored to the porous silicon PSi surface using a multi-step reaction scheme compatible with the mild conditions required for preserving the probe activity. In a first step, al...

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Main Authors: Chazalviel Jean-No&#235;l, Gouget-Laemmel Anne Chantal, Ozanam Fran&#231;ois, Etcheberry Arnaud, Sam Sabrina, Gabouze Nour-eddine
Format: Article
Language:English
Published: SpringerOpen 2011-01-01
Series:Nanoscale Research Letters
Online Access:http://www.nanoscalereslett.com/content/6/1/412
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spelling doaj-8411b473f8e44e628e0a4610fe8603cd2020-11-24T22:58:47ZengSpringerOpenNanoscale Research Letters1931-75731556-276X2011-01-0161412Peptide immobilisation on porous silicon surface for metal ions detectionChazalviel Jean-No&#235;lGouget-Laemmel Anne ChantalOzanam Fran&#231;oisEtcheberry ArnaudSam SabrinaGabouze Nour-eddine<p>Abstract</p> <p>In this work, a Glycyl-Histidyl-Glycyl-Histidine (GlyHisGlyHis) peptide is covalently anchored to the porous silicon PSi surface using a multi-step reaction scheme compatible with the mild conditions required for preserving the probe activity. In a first step, alkene precursors are grafted onto the hydrogenated PSi surface using the hydrosilylation route, allowing for the formation of a carboxyl-terminated monolayer which is activated by reaction with <it>N</it>-hydroxysuccinimide in the presence of a peptide-coupling carbodiimide <it>N</it>-ethyl-<it>N</it>'-(3-dimethylaminopropyl)-carbodiimide and subsequently reacted with the amino linker of the peptide to form a covalent amide bond. Infrared spectroscopy (FT-IR) and X-ray photoelectron spectroscopy are used to investigate the different steps of functionalization.</p> <p>The property of peptides to form stable complexes with metal ions is exploited to achieve metal-ion recognition by the peptide-modified PSi-based biosensor. An electrochemical study of the GlyHisGlyHis-modified PSi electrode is achieved in the presence of copper ions. The recorded cyclic voltammograms show a quasi-irreversible process corresponding to the Cu(II)/Cu(I) couple. The kinetic factors (the heterogeneous rate constant and the transfer coefficient) and the stability constant of the complex formed on the porous silicon surface are determined. These results demonstrate the potential role of peptides grafted on porous silicon in developing strategies for simple and fast detection of metal ions in solution.</p> http://www.nanoscalereslett.com/content/6/1/412
collection DOAJ
language English
format Article
sources DOAJ
author Chazalviel Jean-No&#235;l
Gouget-Laemmel Anne Chantal
Ozanam Fran&#231;ois
Etcheberry Arnaud
Sam Sabrina
Gabouze Nour-eddine
spellingShingle Chazalviel Jean-No&#235;l
Gouget-Laemmel Anne Chantal
Ozanam Fran&#231;ois
Etcheberry Arnaud
Sam Sabrina
Gabouze Nour-eddine
Peptide immobilisation on porous silicon surface for metal ions detection
Nanoscale Research Letters
author_facet Chazalviel Jean-No&#235;l
Gouget-Laemmel Anne Chantal
Ozanam Fran&#231;ois
Etcheberry Arnaud
Sam Sabrina
Gabouze Nour-eddine
author_sort Chazalviel Jean-No&#235;l
title Peptide immobilisation on porous silicon surface for metal ions detection
title_short Peptide immobilisation on porous silicon surface for metal ions detection
title_full Peptide immobilisation on porous silicon surface for metal ions detection
title_fullStr Peptide immobilisation on porous silicon surface for metal ions detection
title_full_unstemmed Peptide immobilisation on porous silicon surface for metal ions detection
title_sort peptide immobilisation on porous silicon surface for metal ions detection
publisher SpringerOpen
series Nanoscale Research Letters
issn 1931-7573
1556-276X
publishDate 2011-01-01
description <p>Abstract</p> <p>In this work, a Glycyl-Histidyl-Glycyl-Histidine (GlyHisGlyHis) peptide is covalently anchored to the porous silicon PSi surface using a multi-step reaction scheme compatible with the mild conditions required for preserving the probe activity. In a first step, alkene precursors are grafted onto the hydrogenated PSi surface using the hydrosilylation route, allowing for the formation of a carboxyl-terminated monolayer which is activated by reaction with <it>N</it>-hydroxysuccinimide in the presence of a peptide-coupling carbodiimide <it>N</it>-ethyl-<it>N</it>'-(3-dimethylaminopropyl)-carbodiimide and subsequently reacted with the amino linker of the peptide to form a covalent amide bond. Infrared spectroscopy (FT-IR) and X-ray photoelectron spectroscopy are used to investigate the different steps of functionalization.</p> <p>The property of peptides to form stable complexes with metal ions is exploited to achieve metal-ion recognition by the peptide-modified PSi-based biosensor. An electrochemical study of the GlyHisGlyHis-modified PSi electrode is achieved in the presence of copper ions. The recorded cyclic voltammograms show a quasi-irreversible process corresponding to the Cu(II)/Cu(I) couple. The kinetic factors (the heterogeneous rate constant and the transfer coefficient) and the stability constant of the complex formed on the porous silicon surface are determined. These results demonstrate the potential role of peptides grafted on porous silicon in developing strategies for simple and fast detection of metal ions in solution.</p>
url http://www.nanoscalereslett.com/content/6/1/412
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