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dc.creatorStojković Burić, Sonja
dc.creatorPodolski-Renić, Ana
dc.creatorDinić, Jelena
dc.creatorStanković, Tijana
dc.creatorJovanović, Mirna
dc.creatorHadžić, Stefan
dc.creatorAyuso, Jose M.
dc.creatorVirumbrales-Muñoz, María
dc.creatorFernández, Luis J.
dc.creatorOchoa, Ignacio
dc.creatorPérez-García, Victor M.
dc.creatorPešić, Milica
dc.date.accessioned2019-04-16T11:54:43Z
dc.date.available2019-04-16T11:54:43Z
dc.date.issued2019
dc.identifier.issn1942-0900
dc.identifier.urihttps://www.hindawi.com/journals/omcl/2019/3061607/
dc.identifier.urihttp://www.pubmedcentral.nih.gov/articlerender.fcgi?artid=PMC6432727
dc.identifier.urihttps://radar.ibiss.bg.ac.rs/handle/123456789/3323
dc.description.abstractThe main reasons for the inefficiency of standard glioblastoma (GBM) therapy are the occurrence of chemoresistance and the invasion of GBM cells into surrounding brain tissues. New therapeutic approaches obstructing these processes may provide substantial survival improvements. The purpose of this study was to assess the potential of lipophilic antioxidant coenzyme Q10 (CoQ10) as a scavenger of reactive oxygen species (ROS) to increase sensitivity to temozolomide (TMZ) and suppress glioma cell invasion. To that end, we used a previously established TMZ-resistant RC6 rat glioma cell line, characterized by increased production of ROS, altered antioxidative capacity, and high invasion potential. CoQ10 in combination with TMZ exerted a synergistic antiproliferative effect. These results were confirmed in a 3D model of microfluidic devices showing that the CoQ10 and TMZ combination is more cytotoxic to RC6 cells than TMZ monotherapy. In addition, cotreatment with TMZ increased expression of mitochondrial antioxidant enzymes in RC6 cells. The anti-invasive potential of the combined treatment was shown by gelatin degradation, Matrigel invasion, and 3D spheroid invasion assays as well as in animal models. Inhibition of MMP9 gene expression as well as decreased N-cadherin and vimentin protein expression implied that CoQ10 can suppress invasiveness and the epithelial to mesenchymal transition in RC6 cells. Therefore, our data provide evidences in favor of CoQ10 supplementation to standard GBM treatment due to its potential to inhibit GBM invasion through modulation of the antioxidant capacity.en
dc.relationinfo:eu-repo/grantAgreement/MESTD/Integrated and Interdisciplinary Research (IIR or III)/41031/RS//
dc.relationNational Research Program of Ministerio de Economia y Competitividad, Spain/FEDER (BIO2016-79092-R, DPI2015-65401-C3-1-R, MTM2015-71200-R)
dc.relationJunta de Comunidades de Castilla-La Mancha, Spain (SBPLY/17/180501/000154, PEII-2014-031P)
dc.relationJames S. Mc. Donnell Foundation USA (220020351)
dc.relationAragon Government
dc.relationSpanish Government
dc.rightsopenAccess
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.sourceOxidative Medicine and Cellular Longevity
dc.titleModulation of Antioxidant Potential with Coenzyme Q10 Suppressed Invasion of Temozolomide-Resistant Rat Glioma In Vitro and In Vivo.en
dc.typearticleen
dc.rights.licenseBY
dcterms.abstractПéрез-Гарцíа, Вицтор М.; Оцхоа, Игнацио; Стојковић Бурић, Соња; Подолски-Ренић, Aна; Динић, Јелена; Јовановић, Мирна; Хаджић, Стефан; Пешић, Милица; Станковић, Тијана; Ayусо, Јосе М.; Вирумбралес-Муñоз, Марíа; Фернáндез, Луис Ј.;
dc.rights.holder© 2019 Sonja Stojković Burić et al.
dc.citation.volume2019
dc.identifier.doi10.1155/2019/3061607
dc.identifier.pmid30984333
dc.identifier.scopus2-s2.0-85063439770
dc.identifier.wos000462434100001
dc.citation.apaStojković Burić, S., Podolski-Renić, A., Dinić, J., Stanković, T., Jovanović, M., Hadžić, S., … Pešić, M. (2019). Modulation of Antioxidant Potential with Coenzyme Q10 Suppressed Invasion of Temozolomide-Resistant Rat Glioma In Vitro and In Vivo. Oxidative Medicine and Cellular Longevity, 2019, 3061607
dc.citation.vancouverStojković Burić S, Podolski-Renić A, Dinić J, Stanković T, Jovanović M, Hadžić S, Ayuso JM, Virumbrales-Muñoz M, Fernández LJ, Ochoa I, Pérez-García VM, Pešić M. Modulation of Antioxidant Potential with Coenzyme Q10 Suppressed Invasion of Temozolomide-Resistant Rat Glioma In Vitro and In Vivo. Oxid Med Cell Longev. 2019;2019:3061607.
dc.citation.spage3061607
dc.type.versionpublishedVersionen
dc.identifier.fulltexthttps://radar.ibiss.bg.ac.rs//bitstream/id/4952/OxidMedCellLongev_2019_2019_3061607.pdf
dc.citation.rankM21


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