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Enhanced Uptake and Phototoxicity of C(60)@albumin Hybrids by Folate Bioconjugation

Fullerenes are considered excellent photosensitizers, being highly suitable for photodynamic therapy (PDT). A lack of water solubility and low biocompatibility are, in many instances, still hampering the full exploitation of their potential in nanomedicine. Here, we used human serum albumin (HSA) to...

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Autores principales: Cantelli, Andrea, Malferrari, Marco, Mattioli, Edoardo Jun, Marconi, Alessia, Mirra, Giulia, Soldà, Alice, Marforio, Tainah Dorina, Zerbetto, Francesco, Rapino, Stefania, Di Giosia, Matteo, Calvaresi, Matteo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9565331/
https://www.ncbi.nlm.nih.gov/pubmed/36234629
http://dx.doi.org/10.3390/nano12193501
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author Cantelli, Andrea
Malferrari, Marco
Mattioli, Edoardo Jun
Marconi, Alessia
Mirra, Giulia
Soldà, Alice
Marforio, Tainah Dorina
Zerbetto, Francesco
Rapino, Stefania
Di Giosia, Matteo
Calvaresi, Matteo
author_facet Cantelli, Andrea
Malferrari, Marco
Mattioli, Edoardo Jun
Marconi, Alessia
Mirra, Giulia
Soldà, Alice
Marforio, Tainah Dorina
Zerbetto, Francesco
Rapino, Stefania
Di Giosia, Matteo
Calvaresi, Matteo
author_sort Cantelli, Andrea
collection PubMed
description Fullerenes are considered excellent photosensitizers, being highly suitable for photodynamic therapy (PDT). A lack of water solubility and low biocompatibility are, in many instances, still hampering the full exploitation of their potential in nanomedicine. Here, we used human serum albumin (HSA) to disperse fullerenes by binding up to five fullerene cages inside the hydrophobic cavities. Albumin was bioconjugated with folic acid to specifically address the folate receptors that are usually overexpressed in several solid tumors. Concurrently, tetramethylrhodamine isothiocyanate, TRITC, a tag for imaging, was conjugated to C(60)@HSA in order to build an effective phototheranostic platform. The in vitro experiments demonstrated that: (i) HSA disperses C(60) molecules in a physiological environment, (ii) HSA, upon C(60) binding, maintains its biological identity and biocompatibility, (iii) the C(60)@HSA complex shows a significant visible-light-induced production of reactive oxygen species, and (iv) folate bioconjugation improves both the internalization and the PDT-induced phototoxicity of the C(60)@HSA complex in HeLa cells.
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spelling pubmed-95653312022-10-15 Enhanced Uptake and Phototoxicity of C(60)@albumin Hybrids by Folate Bioconjugation Cantelli, Andrea Malferrari, Marco Mattioli, Edoardo Jun Marconi, Alessia Mirra, Giulia Soldà, Alice Marforio, Tainah Dorina Zerbetto, Francesco Rapino, Stefania Di Giosia, Matteo Calvaresi, Matteo Nanomaterials (Basel) Article Fullerenes are considered excellent photosensitizers, being highly suitable for photodynamic therapy (PDT). A lack of water solubility and low biocompatibility are, in many instances, still hampering the full exploitation of their potential in nanomedicine. Here, we used human serum albumin (HSA) to disperse fullerenes by binding up to five fullerene cages inside the hydrophobic cavities. Albumin was bioconjugated with folic acid to specifically address the folate receptors that are usually overexpressed in several solid tumors. Concurrently, tetramethylrhodamine isothiocyanate, TRITC, a tag for imaging, was conjugated to C(60)@HSA in order to build an effective phototheranostic platform. The in vitro experiments demonstrated that: (i) HSA disperses C(60) molecules in a physiological environment, (ii) HSA, upon C(60) binding, maintains its biological identity and biocompatibility, (iii) the C(60)@HSA complex shows a significant visible-light-induced production of reactive oxygen species, and (iv) folate bioconjugation improves both the internalization and the PDT-induced phototoxicity of the C(60)@HSA complex in HeLa cells. MDPI 2022-10-06 /pmc/articles/PMC9565331/ /pubmed/36234629 http://dx.doi.org/10.3390/nano12193501 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cantelli, Andrea
Malferrari, Marco
Mattioli, Edoardo Jun
Marconi, Alessia
Mirra, Giulia
Soldà, Alice
Marforio, Tainah Dorina
Zerbetto, Francesco
Rapino, Stefania
Di Giosia, Matteo
Calvaresi, Matteo
Enhanced Uptake and Phototoxicity of C(60)@albumin Hybrids by Folate Bioconjugation
title Enhanced Uptake and Phototoxicity of C(60)@albumin Hybrids by Folate Bioconjugation
title_full Enhanced Uptake and Phototoxicity of C(60)@albumin Hybrids by Folate Bioconjugation
title_fullStr Enhanced Uptake and Phototoxicity of C(60)@albumin Hybrids by Folate Bioconjugation
title_full_unstemmed Enhanced Uptake and Phototoxicity of C(60)@albumin Hybrids by Folate Bioconjugation
title_short Enhanced Uptake and Phototoxicity of C(60)@albumin Hybrids by Folate Bioconjugation
title_sort enhanced uptake and phototoxicity of c(60)@albumin hybrids by folate bioconjugation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9565331/
https://www.ncbi.nlm.nih.gov/pubmed/36234629
http://dx.doi.org/10.3390/nano12193501
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