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CTL–doxorubicin (DOX)–gold complex nanoparticles (DOX–AuGCs): from synthesis to enhancement of therapeutic effect on liver cancer model

In this work, we bring back a rapid way to conceive doxorubicin (DOX) hybrid gold nanoparticles, in which DOX and Au(iii) ions were complexed with a hydrochloride-lactose-modified chitosan, named CTL and dicarboxylic acid-terminated polyethylene-glycol (PEG), leading to hybrid polymer-sugar-metal na...

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Autores principales: Liu, Qiqian, Liu, Hui, Sacco, Pasquale, Djaker, Nadia, Lamy de la Chapelle, Marc, Marsich, Eleonora, Li, Xiaowu, Spadavecchia, Jolanda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419067/
https://www.ncbi.nlm.nih.gov/pubmed/36132041
http://dx.doi.org/10.1039/d0na00758g
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author Liu, Qiqian
Liu, Hui
Sacco, Pasquale
Djaker, Nadia
Lamy de la Chapelle, Marc
Marsich, Eleonora
Li, Xiaowu
Spadavecchia, Jolanda
author_facet Liu, Qiqian
Liu, Hui
Sacco, Pasquale
Djaker, Nadia
Lamy de la Chapelle, Marc
Marsich, Eleonora
Li, Xiaowu
Spadavecchia, Jolanda
author_sort Liu, Qiqian
collection PubMed
description In this work, we bring back a rapid way to conceive doxorubicin (DOX) hybrid gold nanoparticles, in which DOX and Au(iii) ions were complexed with a hydrochloride-lactose-modified chitosan, named CTL and dicarboxylic acid-terminated polyethylene-glycol (PEG), leading to hybrid polymer-sugar-metal nanoparticles (DOX–AuGSs). All formulations were assessed by spectroscopic techniques (Raman and UV-Vis) and transmission electron microscopy (TEM). To estimate the therapeutic effect of DOX–AuGSs in liver cancer, murine HepG2 cells were used to induce a hepatic carcinoma model in nude mice. The survival time of the tumor-bearing mice, body weight and tumor volume were measured and recorded. The cytokines were used to detect the serum inflammatory factors, and the blood cell analyzer was used to determine the blood cell content of different groups of nude mice. The outcomes demonstrate that DOX–AuGCs significantly suppressed the tumor growth derived from human HepG2 injection and reduce the tumor index without affecting the body weight of mice. Moreover, DOX–AuGCs significantly reduced the serum levels of cytokines IL-6, TNF-α and IL-12 P70. Finally, a histological analysis of the heart tissue sections indicated that DOX–AuGCs significantly reduce the chronic myocardial toxicity of DOX during the period of treatment.
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spelling pubmed-94190672022-09-20 CTL–doxorubicin (DOX)–gold complex nanoparticles (DOX–AuGCs): from synthesis to enhancement of therapeutic effect on liver cancer model Liu, Qiqian Liu, Hui Sacco, Pasquale Djaker, Nadia Lamy de la Chapelle, Marc Marsich, Eleonora Li, Xiaowu Spadavecchia, Jolanda Nanoscale Adv Chemistry In this work, we bring back a rapid way to conceive doxorubicin (DOX) hybrid gold nanoparticles, in which DOX and Au(iii) ions were complexed with a hydrochloride-lactose-modified chitosan, named CTL and dicarboxylic acid-terminated polyethylene-glycol (PEG), leading to hybrid polymer-sugar-metal nanoparticles (DOX–AuGSs). All formulations were assessed by spectroscopic techniques (Raman and UV-Vis) and transmission electron microscopy (TEM). To estimate the therapeutic effect of DOX–AuGSs in liver cancer, murine HepG2 cells were used to induce a hepatic carcinoma model in nude mice. The survival time of the tumor-bearing mice, body weight and tumor volume were measured and recorded. The cytokines were used to detect the serum inflammatory factors, and the blood cell analyzer was used to determine the blood cell content of different groups of nude mice. The outcomes demonstrate that DOX–AuGCs significantly suppressed the tumor growth derived from human HepG2 injection and reduce the tumor index without affecting the body weight of mice. Moreover, DOX–AuGCs significantly reduced the serum levels of cytokines IL-6, TNF-α and IL-12 P70. Finally, a histological analysis of the heart tissue sections indicated that DOX–AuGCs significantly reduce the chronic myocardial toxicity of DOX during the period of treatment. RSC 2020-09-29 /pmc/articles/PMC9419067/ /pubmed/36132041 http://dx.doi.org/10.1039/d0na00758g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Liu, Qiqian
Liu, Hui
Sacco, Pasquale
Djaker, Nadia
Lamy de la Chapelle, Marc
Marsich, Eleonora
Li, Xiaowu
Spadavecchia, Jolanda
CTL–doxorubicin (DOX)–gold complex nanoparticles (DOX–AuGCs): from synthesis to enhancement of therapeutic effect on liver cancer model
title CTL–doxorubicin (DOX)–gold complex nanoparticles (DOX–AuGCs): from synthesis to enhancement of therapeutic effect on liver cancer model
title_full CTL–doxorubicin (DOX)–gold complex nanoparticles (DOX–AuGCs): from synthesis to enhancement of therapeutic effect on liver cancer model
title_fullStr CTL–doxorubicin (DOX)–gold complex nanoparticles (DOX–AuGCs): from synthesis to enhancement of therapeutic effect on liver cancer model
title_full_unstemmed CTL–doxorubicin (DOX)–gold complex nanoparticles (DOX–AuGCs): from synthesis to enhancement of therapeutic effect on liver cancer model
title_short CTL–doxorubicin (DOX)–gold complex nanoparticles (DOX–AuGCs): from synthesis to enhancement of therapeutic effect on liver cancer model
title_sort ctl–doxorubicin (dox)–gold complex nanoparticles (dox–augcs): from synthesis to enhancement of therapeutic effect on liver cancer model
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419067/
https://www.ncbi.nlm.nih.gov/pubmed/36132041
http://dx.doi.org/10.1039/d0na00758g
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