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The non-innocent nature of graphene oxide as a theranostic platform for biomedical applications and its reactivity towards metal-based anticancer drugs

The self-assembly process in a solution of a mononuclear iron(ii) complex based on the bispyrazolylpyridine scaffold with graphene oxide (GO) micrometer-sheets allows not only the devising of a new hybrid-architecture for GO-based materials suitable for nanomedicine, but also the unveiling of the re...

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Published in:RSC advances 2015-09, Vol.5 (93), p.76556-76566
Main Authors: Mokdad, Audrey, Dimos, Konstantinos, Zoppellaro, Giorgio, Tucek, Jiri, Perman, Jason A, Malina, Ondrej, Andersson, KKristoffer, Ramanatha Datta, Kasibhatta Kumara, Froning, Jens Peter, Zboril, Radek
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cited_by cdi_FETCH-LOGICAL-c297t-3bdbadeaddd7bc298bd76e12fa95f64becb5643e655f9e201eb1bbd43e11d4743
cites cdi_FETCH-LOGICAL-c297t-3bdbadeaddd7bc298bd76e12fa95f64becb5643e655f9e201eb1bbd43e11d4743
container_end_page 76566
container_issue 93
container_start_page 76556
container_title RSC advances
container_volume 5
creator Mokdad, Audrey
Dimos, Konstantinos
Zoppellaro, Giorgio
Tucek, Jiri
Perman, Jason A
Malina, Ondrej
Andersson, KKristoffer
Ramanatha Datta, Kasibhatta Kumara
Froning, Jens Peter
Zboril, Radek
description The self-assembly process in a solution of a mononuclear iron(ii) complex based on the bispyrazolylpyridine scaffold with graphene oxide (GO) micrometer-sheets allows not only the devising of a new hybrid-architecture for GO-based materials suitable for nanomedicine, but also the unveiling of the reactive nature of GO as a drug-carrier. The neat iron complex is found to be highly active in disrupting the cell cycle through DNA binding, with behaviour and efficiency similar to that expressed by ruthenium-complexes as well as antibiotic-drugs such as doxorubicin. On the contrary, in the hybrid material the proclivity of neat GO to produce reactive oxygen species (ROS) became down-regulated by the electron-buffering properties of the loaded iron complex, evidencing the presence of an active electron transfer from the drug to GO. These findings question the use of the neat GO platform as a suitable carrier for metal-based anticancer drugs and highlight the importance of addressing the chemical/physical integrity of the drug being loaded into GO before drawing conclusions on the potential effectiveness of the hybrid material for medical applications.
doi_str_mv 10.1039/c5ra13831k
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source Royal Society of Chemistry
subjects Binding
Drugs
Graphene
Iron
Nanostructure
Oxides
Platforms
Self assembly
title The non-innocent nature of graphene oxide as a theranostic platform for biomedical applications and its reactivity towards metal-based anticancer drugs
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