Open Access
Open access
volume 15 issue 3 pages 864

Influence of Folate-Targeted Gold Nanoparticles on Subcellular Localization and Distribution into Lysosomes

Publication typeJournal Article
Publication date2023-03-07
scimago Q1
wos Q1
SJR1.075
CiteScore10.0
Impact factor5.5
ISSN19994923
Pharmaceutical Science
Abstract

The cell interaction, mechanism of cell entry and intracellular fate of surface decorated nanoparticles are known to be affected by the surface density of targeting agents. However, the correlation between nanoparticles multivalency and kinetics of the cell uptake process and disposition of intracellular compartments is complicated and dependent on a number of physicochemical and biological parameters, including the ligand, nanoparticle composition and colloidal properties, features of targeted cells, etc. Here, we have carried out an in-depth investigation on the impact of increasing folic acid density on the kinetic uptake process and endocytic route of folate (FA)-targeted fluorescently labelled gold nanoparticles (AuNPs). A set of AuNPs (15 nm mean size) produced by the Turkevich method was decorated with 0–100 FA-PEG3.5kDa-SH molecules/particle, and the surface was saturated with about 500 rhodamine-PEG2kDa-SH fluorescent probes. In vitro studies carried out using folate receptor overexpressing KB cells (KBFR-high) showed that the cell internalization progressively increased with the ligand surface density, reaching a plateau at 50:1 FA-PEG3.5kDa-SH/particle ratio. Pulse-chase experiments showed that higher FA density (50 FA-PEG3.5kDa-SH molecules/particle) induces more efficient particle internalization and trafficking to lysosomes, reaching the maximum concentration in lysosomes at 2 h, than the lower FA density of 10 FA-PEG3.5kDa-SH molecules/particle. Pharmacological inhibition of endocytic pathways and TEM analysis showed that particles with high folate density are internalized predominantly by a clathrin-independent process.

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GOST |
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GOST Copy
Daniele R. et al. Influence of Folate-Targeted Gold Nanoparticles on Subcellular Localization and Distribution into Lysosomes // Pharmaceutics. 2023. Vol. 15. No. 3. p. 864.
GOST all authors (up to 50) Copy
Daniele R., Brazzale C., Arpac B., Tognetti F., Pesce C., Malfanti A., Sayers E., Mastrotto F., Jones A., Salmaso S., Caliceti P. Influence of Folate-Targeted Gold Nanoparticles on Subcellular Localization and Distribution into Lysosomes // Pharmaceutics. 2023. Vol. 15. No. 3. p. 864.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.3390/pharmaceutics15030864
UR - https://doi.org/10.3390/pharmaceutics15030864
TI - Influence of Folate-Targeted Gold Nanoparticles on Subcellular Localization and Distribution into Lysosomes
T2 - Pharmaceutics
AU - Daniele, Raffaella
AU - Brazzale, Chiara
AU - Arpac, Busra
AU - Tognetti, Francesco
AU - Pesce, Cristiano
AU - Malfanti, Alessio
AU - Sayers, E.J.
AU - Mastrotto, Francesca
AU - Jones, A.T.
AU - Salmaso, Stefano
AU - Caliceti, Paolo
PY - 2023
DA - 2023/03/07
PB - MDPI
SP - 864
IS - 3
VL - 15
PMID - 36986724
SN - 1999-4923
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2023_Daniele,
author = {Raffaella Daniele and Chiara Brazzale and Busra Arpac and Francesco Tognetti and Cristiano Pesce and Alessio Malfanti and E.J. Sayers and Francesca Mastrotto and A.T. Jones and Stefano Salmaso and Paolo Caliceti},
title = {Influence of Folate-Targeted Gold Nanoparticles on Subcellular Localization and Distribution into Lysosomes},
journal = {Pharmaceutics},
year = {2023},
volume = {15},
publisher = {MDPI},
month = {mar},
url = {https://doi.org/10.3390/pharmaceutics15030864},
number = {3},
pages = {864},
doi = {10.3390/pharmaceutics15030864}
}
MLA
Cite this
MLA Copy
Daniele, Raffaella, et al. “Influence of Folate-Targeted Gold Nanoparticles on Subcellular Localization and Distribution into Lysosomes.” Pharmaceutics, vol. 15, no. 3, Mar. 2023, p. 864. https://doi.org/10.3390/pharmaceutics15030864.