Phytochelatins (PCs), oligomers of glutathione, naturally chelate heavy metals (HMs) in aqueous solution; small peptides such as these cannot be used as covalently bound bioprobes on transducer surfaces due to their propensity to induce corrosion of standard sensor supports such as gold and porous silicon (PSi). In this work, we chemically modify a commercial PC oligopeptide with a six poly-lysine (Lys) chain, thereby changing its isoelectric point from 4.2 to 6.9. PC-Lys bioprobes were successfully immobilized on both PSi multilayers and flat gold surfaces. The interaction of PC-Lys and HM ions, namely Lead (II), Cadmium (II) and Arsenic (III) in aqueous solution was quantified by optical spectroscopic reflectometry and quartz crystal microgravimetry. As a result, it was proven that the biomolecular interactions are reversible and the affinities between PC-Lys complex and HM ions are in the range of 10(-12) M. (C) 2016 Elsevier B.V. All rights reserved.

Reversible sensing of heavy metal ions using lysine modified oligopeptides on porous silicon and gold

Dardano Principia;Iodice Mario;Rea Ilaria;De Stefano Luca
2017

Abstract

Phytochelatins (PCs), oligomers of glutathione, naturally chelate heavy metals (HMs) in aqueous solution; small peptides such as these cannot be used as covalently bound bioprobes on transducer surfaces due to their propensity to induce corrosion of standard sensor supports such as gold and porous silicon (PSi). In this work, we chemically modify a commercial PC oligopeptide with a six poly-lysine (Lys) chain, thereby changing its isoelectric point from 4.2 to 6.9. PC-Lys bioprobes were successfully immobilized on both PSi multilayers and flat gold surfaces. The interaction of PC-Lys and HM ions, namely Lead (II), Cadmium (II) and Arsenic (III) in aqueous solution was quantified by optical spectroscopic reflectometry and quartz crystal microgravimetry. As a result, it was proven that the biomolecular interactions are reversible and the affinities between PC-Lys complex and HM ions are in the range of 10(-12) M. (C) 2016 Elsevier B.V. All rights reserved.
2017
Heavy metal ion detection
Phytochelatins
Porous silicon
QCM
Corrosion
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/425352
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