We investigated the effect of gold nanoparticles (AuNPs) on the aggregation of a CFF (C = cysteine; F = phenylalanine) tripep- tide (derived from Ab peptide) in aqueous medium. Special attention was dedicated to the role of AuNPs as inducers and inhibitors during nucleation kinetics and the structure of the resulting scaffolds was carefully investigated. At millimolar concentrations, the tripeptide was found to form b-sheet structures organized into long filaments. Spectral signatures and topography of the filaments were studied by Raman spectroscopy and atomic force microscopy (AFM), revealing that conjugation to AuNPs not only stabilizes the system, but also inhibit or enhance amyloid-like features depending on the synthesis route used in the preparation of AuNPs. Sodium borohydride (NaBH4) mediated synthesis of AuNPs gave rise to a strong absorption peak close to 520nm, indicating that AuNPs were dispersed, independently of the peptide concen- tration added in the reaction. However, when the peptide/gold salt mixture was heated at 608C, AuNPs and AuNP-decorated filaments were both formed in solution and the fractions of which population were found to be dependent on the [HAuCl4]/[CFF] ratio, as illustrated by TEM images. In addition, the insertion of AuNPs at the surface of CFF nanostructures can promote electron transfer from the metallic nanoparticles to the CFF surface, creating an n-type semiconductor, and causing a peak shift of the phenylalanine absorption band.

Pelin, J., Gatto, E., Venanzi, M., Cavalieri, F., Oliveira, C., Martinho, H., et al. (2018). Hybrid Conjugates Formed between Gold Nanoparticles and an Amyloidogenic Diphenylalanine-Cysteine Peptide. CHEMISTRYSELECT, 3(24), 6756-6765 [10.1002/slct.201801345].

Hybrid Conjugates Formed between Gold Nanoparticles and an Amyloidogenic Diphenylalanine-Cysteine Peptide

Gatto E.;Venanzi M.;Cavalieri F.;
2018-01-01

Abstract

We investigated the effect of gold nanoparticles (AuNPs) on the aggregation of a CFF (C = cysteine; F = phenylalanine) tripep- tide (derived from Ab peptide) in aqueous medium. Special attention was dedicated to the role of AuNPs as inducers and inhibitors during nucleation kinetics and the structure of the resulting scaffolds was carefully investigated. At millimolar concentrations, the tripeptide was found to form b-sheet structures organized into long filaments. Spectral signatures and topography of the filaments were studied by Raman spectroscopy and atomic force microscopy (AFM), revealing that conjugation to AuNPs not only stabilizes the system, but also inhibit or enhance amyloid-like features depending on the synthesis route used in the preparation of AuNPs. Sodium borohydride (NaBH4) mediated synthesis of AuNPs gave rise to a strong absorption peak close to 520nm, indicating that AuNPs were dispersed, independently of the peptide concen- tration added in the reaction. However, when the peptide/gold salt mixture was heated at 608C, AuNPs and AuNP-decorated filaments were both formed in solution and the fractions of which population were found to be dependent on the [HAuCl4]/[CFF] ratio, as illustrated by TEM images. In addition, the insertion of AuNPs at the surface of CFF nanostructures can promote electron transfer from the metallic nanoparticles to the CFF surface, creating an n-type semiconductor, and causing a peak shift of the phenylalanine absorption band.
2018
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHIM/02 - CHIMICA FISICA
English
Con Impact Factor ISI
Maria Sklodowska-Curie grant agreement no. 690991
Pelin, J., Gatto, E., Venanzi, M., Cavalieri, F., Oliveira, C., Martinho, H., et al. (2018). Hybrid Conjugates Formed between Gold Nanoparticles and an Amyloidogenic Diphenylalanine-Cysteine Peptide. CHEMISTRYSELECT, 3(24), 6756-6765 [10.1002/slct.201801345].
Pelin, Jnbd; Gatto, E; Venanzi, M; Cavalieri, F; Oliveira, Clp; Martinho, H; Silva, Er; Aguilar, Am; Souza, Js; Alves, Wa
Articolo su rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/206711
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