The magnetic graphene-based nanocomposite: An efficient anticancer delivery system

The aim of this study is the development of an efficient anticancer drug delivery nanosystem using PEGylated graphene oxide/magnetite nanoparticles (PEG-GO/Fe3O4). The nanosystem was loaded with mitoxantrone (MTX) as a universal anticancer drug. The cytotoxicity effect of the MTX-loaded GO-PEG/Fe3O4...

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Hauptverfasser: Jafarizad, Abbas, Jaymand, Mehdi, Taghizadehghalehjougi, Ali, Mohammadi-Nasr, Saeed, Jabbari, Amir Mohammad
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Jaymand, Mehdi
Taghizadehghalehjougi, Ali
Mohammadi-Nasr, Saeed
Jabbari, Amir Mohammad
description The aim of this study is the development of an efficient anticancer drug delivery nanosystem using PEGylated graphene oxide/magnetite nanoparticles (PEG-GO/Fe3O4). The nanosystem was loaded with mitoxantrone (MTX) as a universal anticancer drug. The cytotoxicity effect of the MTX-loaded GO-PEG/Fe3O4 nanocomposite was studied against U87 MG cell line using MTT cell viablity assay. The mechanism of action, the genes contributed in apoptosis (Casp 9, and Casp 3) and survival (BcL-2, BAX) have been investigated using quantitative real time-PCR. As the results of biological assays, controlled drug release behavior of the developed nanosystem as well as the inherent physicochemical and biological characteristics of both magnetit nanoparticles and graphene nanomaterials, we envision that the GO-PEG/Fe3O4 nanocomposite may be applied as enhanced drug delivery system for various cancer therapies (e.g., brain cancer) using both chemo- and photothermal therapy methods.
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subjects Anticancer properties
Apoptosis
Biological effects
Brain
Cancer
Drug delivery systems
Graphene
Iron oxides
Nanocomposites
Nanomaterials
Nanoparticles
Toxicity
title The magnetic graphene-based nanocomposite: An efficient anticancer delivery system
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