Issue 7, 2017

Lipid-based systems loaded with PbS nanocrystals: near infrared emitting trackable nanovectors

Abstract

Hydrophobic PbS nanocrystals (NCs) emitting in the near infrared spectral region were encapsulated in the core of micelles and in the bilayer of liposomes, respectively, to form polyethylene glycol (PEG)-grafted phospholipids. The phospholipid-based functionalization process of PbS NCs required the replacement of the pristine capping ligand at the NC surface with thiol molecules. The procedures carried out for two systems, micelles and liposomes, using PEG-modified phospholipids were carefully monitored by optical, morphological and structural investigations. The hydrodynamic diameter and the colloidal stability of both micelles and liposomes loaded with PbS NCs were evaluated using Dynamic Light Scattering (DLS) and ζ-potential experiments, and both were satisfactorily stable in physiological media. The cytotoxicity of the resulting PbS NC-loaded nanovectors was assessed by the in vitro investigation on Saos-2 cells, indicating that the toxicity of the PbS NC loaded liposomes was lower than that of the micelles with the same NC cargo, which is reasonable due to the different overall composition of the two prepared nanocarriers. Finally, the cellular uptake in the Saos-2 cells of both the NC containing systems was evaluated by means of confocal microscopy studies by exploiting a visible fluorescent phospholipid and demonstrating the ability of both luminescent nanovectors to be internalized. The obtained results show the great potential of the prepared emitting nanoprobes for imaging applications in the second biological window.

Graphical abstract: Lipid-based systems loaded with PbS nanocrystals: near infrared emitting trackable nanovectors

Supplementary files

Article information

Article type
Paper
Submitted
04 Oct 2016
Accepted
15 Jan 2017
First published
16 Jan 2017

J. Mater. Chem. B, 2017,5, 1471-1481

Lipid-based systems loaded with PbS nanocrystals: near infrared emitting trackable nanovectors

N. Depalo, V. De Leo, M. Corricelli, R. Gristina, G. Valente, E. Casamassima, R. Comparelli, V. Laquintana, N. Denora, E. Fanizza, M. Striccoli, A. Agostiano, L. Catucci and M. L. Curri, J. Mater. Chem. B, 2017, 5, 1471 DOI: 10.1039/C6TB02590K

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