Hypothesis: Colloidal gold nanoparticles (AuNPs) functionalised with hydrophilic thiols can be used as drug delivery probes, thanks to their small size and hydrophilic character. AuNPs possess unique properties for their use in nanomedicine, especially in cancer treatment, as diagnostics and therapeutic tools. Experiments: Thiol functionalised AuNPs were synthesised and loaded with methotrexate (MTX). Spectroscopic and morphostructural characterisations evidenced the stability of the colloids upon interaction with MTX. Solid state (GISAXS, GIWAXS, FESEM, TEM, FTIR-ATR, XPS) and dispersed phase (UV-Vis, DLS, ζ-potential, NMR, SAXS) experiments allowed to understand structure-properties correlations. The nanoconjugate was tested in vitro (MTT assays) against two neuroblastoma cell lines: SNJKP and IMR5 with overexpressed n-Myc. Findings: Molar drug encapsulation efficiency was optimised to be >70%. A non-covalent interaction between the π system and the carboxylate moiety belonging to MTX and the charged aminic group of one of the thiols was found. The MTX loading slightly decreased the structural order of the system and increased the distance between the AuNPs. Free AuNPs showed no cytotoxicity whereas the AuNPs-MTX nanoconjugate had a more potent effect when compared to free MTX. The active role of AuNPs was evidenced by permeation studies: an improvement on penetration of the drug inside cells was evidenced.

Thiol functionalised gold nanoparticles loaded with methotrexate for cancer treatment. From synthesis to in vitro studies on neuroblastoma cell lines / Salamone, Ta; Rutigliano, L; Pennacchi, B; Cerra, S; Matassa, R; Nottola, S; Sciubba, F; Battocchio, C; Marsotto, M; Del Giudice, A; Chumakov, A; Davydok, A; Grigorian, S; Canettieri, G; Agostinelli, E; Fratoddi, I.. - In: JOURNAL OF COLLOID AND INTERFACE SCIENCE. - ISSN 0021-9797. - 649:(2023), pp. 264-278. [10.1016/j.jcis.2023.06.078]

Thiol functionalised gold nanoparticles loaded with methotrexate for cancer treatment. From synthesis to in vitro studies on neuroblastoma cell lines

Salamone TA
;
Rutigliano L;Pennacchi B;Cerra S;Matassa R;Nottola S;Sciubba F;Del Giudice A;Grigorian S;Canettieri G;Fratoddi I.
2023

Abstract

Hypothesis: Colloidal gold nanoparticles (AuNPs) functionalised with hydrophilic thiols can be used as drug delivery probes, thanks to their small size and hydrophilic character. AuNPs possess unique properties for their use in nanomedicine, especially in cancer treatment, as diagnostics and therapeutic tools. Experiments: Thiol functionalised AuNPs were synthesised and loaded with methotrexate (MTX). Spectroscopic and morphostructural characterisations evidenced the stability of the colloids upon interaction with MTX. Solid state (GISAXS, GIWAXS, FESEM, TEM, FTIR-ATR, XPS) and dispersed phase (UV-Vis, DLS, ζ-potential, NMR, SAXS) experiments allowed to understand structure-properties correlations. The nanoconjugate was tested in vitro (MTT assays) against two neuroblastoma cell lines: SNJKP and IMR5 with overexpressed n-Myc. Findings: Molar drug encapsulation efficiency was optimised to be >70%. A non-covalent interaction between the π system and the carboxylate moiety belonging to MTX and the charged aminic group of one of the thiols was found. The MTX loading slightly decreased the structural order of the system and increased the distance between the AuNPs. Free AuNPs showed no cytotoxicity whereas the AuNPs-MTX nanoconjugate had a more potent effect when compared to free MTX. The active role of AuNPs was evidenced by permeation studies: an improvement on penetration of the drug inside cells was evidenced.
2023
cancer therapy; colloidal nanocarrier; cytotoxicity; drug delivery; methotrexate; non-covalent interaction; SJNKP and IMR5 neuroblastoma cell lines; thiol functionalised gold nanoparticles
01 Pubblicazione su rivista::01a Articolo in rivista
Thiol functionalised gold nanoparticles loaded with methotrexate for cancer treatment. From synthesis to in vitro studies on neuroblastoma cell lines / Salamone, Ta; Rutigliano, L; Pennacchi, B; Cerra, S; Matassa, R; Nottola, S; Sciubba, F; Battocchio, C; Marsotto, M; Del Giudice, A; Chumakov, A; Davydok, A; Grigorian, S; Canettieri, G; Agostinelli, E; Fratoddi, I.. - In: JOURNAL OF COLLOID AND INTERFACE SCIENCE. - ISSN 0021-9797. - 649:(2023), pp. 264-278. [10.1016/j.jcis.2023.06.078]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1685768
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