Antiangiogenic Effect of Graphene Oxide in Primary Human Endothelial Cells.

ACS Applied Materials & Interfaces
Giulia CibecchiniPier Paolo Pompa

Abstract

In this work, we exploited an integrated approach combining systematic analysis of cytotoxicity, angiogenic potential, and metabolomics to shed light on the effects of graphene oxide (GO) on primary human endothelial Huvec cells. Contrary to the outcomes observed in immortalized cell lines able to internalize a similar amount of GO, significant toxicity was found in Huvec cells at high GO concentrations (25 and 50 μg/mL). In particular, we found that the steric hindrance of GO intracellular aggregates perturbed the correct assembly of cytoskeleton and distribution of mitochondria. This was found to be primarily associated with oxidative stress and impairment of cell migration, affecting the formation of capillary-like structures. In addition, preliminary metabolomics characterization demonstrated that GO affects the consumption of niacinamide, a precursor of energy carriers, and several amino acids involved in the regulation of angiogenesis. Our findings suggest that GO acts at different cellular levels, both directly and indirectly. More precisely, the combination of the physical hindrance of internalized GO aggregates, induction of oxidative stress, and alteration of some metabolic pathways leads to a significant antiangiogen...Continue Reading

References

Feb 1, 1980·Proceedings of the National Academy of Sciences of the United States of America·L V JohnsonL B Chen
Aug 28, 1998·Science·D R Green, J C Reed
Aug 25, 2000·American Journal of Physiology. Lung Cellular and Molecular Physiology·T StevensA B Malik
Dec 15, 2000·Cell Calcium·T E GunterK Gunter
Dec 20, 2000·American Journal of Physiology. Endocrinology and Metabolism·H LiG Wu
Dec 6, 2003·Science·Anne J RidleyAlan Rick Horwitz
Dec 11, 2003·Atherosclerosis. Supplements·John P Cooke
Jan 26, 2006·Journal of Cell Science·Alexander A MininVladimir I Gelfand
Feb 24, 2006·Journal of the American Chemical Society·Gerhard Wider, Lars Dreier
Apr 21, 2006·Biochimica Et Biophysica Acta·Istvan R Boldogh, Liza A Pon
Mar 31, 2007·Circulation Research·Laurent LamaliceJacques Huot
Apr 9, 2008·Physiological Reviews·Christophe Le Clainche, Marie-France Carlier
Apr 16, 2009·Biochimica Et Biophysica Acta·Elinor J Griffiths, Guy A Rutter
Jun 11, 2009·British Journal of Pharmacology·Sidney M Morris
Oct 15, 2009·Journal of the American Chemical Society·Emanuele TreossiVincenzo Palermo
Jan 5, 2010·Free Radical Biology & Medicine·Magdalena L Circu, Tak Yee Aw
Mar 17, 2010·Journal of Controlled Release : Official Journal of the Controlled Release Society·Gaurav SahayAlexander V Kabanov
Dec 7, 2010·Toxicology Letters·Yanli ChangHaifang Wang
Feb 3, 2011·Cold Spring Harbor Protocols·Brad Chazotte
Sep 20, 2011·Cell·Michael PotentePeter Carmeliet
Mar 29, 2012·Nanoscale·Bingan LuErqing Xie
Oct 13, 2012·Nature·K S NovoselovK Kim
Mar 14, 2013·Accounts of Chemical Research·Chul ChungDal-Hee Min
Oct 15, 2013·Angiogenesis·Sara RezzolaMarco Presta
Apr 29, 2014·Biosensors & Bioelectronics·Li GaoKeping Chen
Mar 12, 2015·International Journal of Nanomedicine·Sławomir JaworskiAndrè Chwalibog
Jun 3, 2015·Advanced Healthcare Materials·Sudip MukherjeeChitta Ranjan Patra
Oct 4, 2015·Redox Biology·Joe Dan DunnThierry Soldati
Apr 1, 2016·The Protein Journal·Srinivas R SripathiWan Jin Jahng
Aug 30, 2016·Advanced Drug Delivery Reviews·Bo ZhangTaotao Wei
Sep 19, 2016·Biomaterials·Pei-Xin LaiChih-Ching Huang
Jun 18, 2017·Analytica Chimica Acta·Sarantos KostidisMartin Giera
Jun 27, 2017·Antioxidants & Redox Signaling·Wusheng XiaoJoseph Loscalzo
Jul 1, 2017·The EMBO Journal·Boa KimZoltan Arany
Jul 26, 2017·Chemistry, an Asian Journal·Peng Zheng, Nianqiang Wu
Nov 21, 2017·Trends in Cell Biology·Katerina RohlenovaPeter Carmeliet
Mar 12, 2018·Materials Science & Engineering. C, Materials for Biological Applications·Dinesh Pratap SinghRajesh Kumar
Jun 13, 2018·Nanoscale·Javier Frontiñán-RubioEster Vázquez

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