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Sono-assembly of the [Arg-Phe]4 octapeptide into biofunctional nanoparticles

journal contribution
posted on 2024-11-02, 16:31 authored by Anshul Baral, Roop Bhangu, Rita Cimino, Juliane Pelin, Wendel Alves, Santanu Chattopadhyay, Muthupandian Ashokkumar, Francesca Cavalieri
High-frequency ultrasound treatment is found to be a one-pot green technique to produce peptide-based nanostructures by ultrasound assisted self-assembly of oligopeptides. [Arg-Phe]4 octapeptides, consisting of alternating arginine (Arg/R) and phenylalanine (Phe/F) sequences, were subjected to 430 kHz ultrasound in aqueous solution in the absence of any external agents, to form [RF]4 nanoparticles ([RF]4-NPs), ~220 nm in diameter. A comprehensive analysis of the obtained nanoparticles demonstrated that the aromatic moieties of the oligopeptides can undergo oxidative coupling to form multiple oligomeric species, which then self-assemble into well-defined fluorescent nanoparticles. [RF]4-NPs were functionalized with polyethylene glycol (PEGylated) to improve their colloidal stability. Unlike the parent peptide, the PEGylated [RF]4-NPs showed limited cytotoxicity towards MDA-MB-231 cells. Furthermore, the intracellular trafficking of PEGylated [RF]4-NPs was investigated after incubation with MDA-MB-231 cells to demonstrate their efficient endo-lysosomal escape. This work highlights that the combined use of ultrasonic technologies and peptides enables easy fabrication of nanoparticles, with potential application in drug delivery.

History

Related Materials

  1. 1.
    DOI - Is published in 10.3390/nano10091772
  2. 2.
    ISSN - Is published in 20794991

Journal

Nanomaterials

Volume

10

Number

1772

Issue

9

Start page

1

End page

12

Total pages

12

Publisher

MDPIAG

Place published

Switzerland

Language

English

Copyright

© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).

Former Identifier

2006105610

Esploro creation date

2022-10-19

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