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dc.contributor.authorOladghaffari, M
dc.contributor.authorIslamian, JP
dc.contributor.authorBaradaran, B
dc.contributor.authorMonfared, AS
dc.contributor.authorFarajollahi, A
dc.contributor.authorShanehbandi, D
dc.contributor.authorMohammadi, M
dc.date.accessioned2018-08-26T08:56:48Z
dc.date.available2018-08-26T08:56:48Z
dc.date.issued2015
dc.identifier.urihttp://dspace.tbzmed.ac.ir:8080/xmlui/handle/123456789/54493
dc.description.abstract2-deoxy-D-Glucose (2DG) causes cytotoxicity in cancer cells by disrupting thiol metabolism. It is an effective component in therapeutic strategies. It targets the metabolism of cancer cells with glycolysis inhibitory activity. On the other hand, MLN4924, a newly discovered investigational small molecule inhibitor of NAE (NEDD8 activating enzyme), inactivates SCF E3 ligase and causes accumulation of its substrates which triggers apoptosis. Combination of these components might provide a more efficient approach to treatment. In this research, 2DG and MLN4924 were co-applied to breast cancer cells (MCF-7 and SKBR-3) and cytotoxic and apoptotic activity were evaluated the by Micro culture tetrazolium test (MTT), TUNEL and ELISA methods. Caspase3 and Bcl2 genes expression were evaluated by real time Q-PCR methods. The results showed that MLN4924 and MLN4924/2DG dose-dependently suppressed the proliferation of MCF7 and SKBR-3 cells. Cell survival of breast cancer cells exposed to the combination of 2DG/MLN4924 was decreased significantly compared to controls (p<0.05), while 2DG and MLN4924 alone had less pronounced effects on the cells. The obtained results suggest that 2DG/MLN4924 is much more efficient in breast cancer cell lines with enhanced cytotoxicity via inducing a apoptosis cell signaling gene, caspase-3.
dc.language.isoEnglish
dc.relation.ispartofAsian Pacific Journal of Cancer Prevention
dc.subject((1S,2S,4R)-4-(4-((1S)-2,3-dihydro-1H-inden-1-ylamino)-7H-pyrrolo(2,3-d)pyrimidin-7-yl)-2-hydroxycyclopentyl)methyl sulphamate
dc.subjectantimetabolite
dc.subjectcyclopentane derivative
dc.subjectdeoxyglucose
dc.subjectmessenger RNA
dc.subjectpyrimidine derivative
dc.subjectUBA3 protein, human
dc.subjectubiquitin protein ligase
dc.subjectantagonists and inhibitors
dc.subjectapoptosis
dc.subjectBreast Neoplasms
dc.subjectcell proliferation
dc.subjectcombination drug therapy
dc.subjectdrug effects
dc.subjectfemale
dc.subjectgenetics
dc.subjecthuman
dc.subjectmetabolism
dc.subjectpathology
dc.subjectreal time polymerase chain reaction
dc.subjectreverse transcription polymerase chain reaction
dc.subjecttumor cell culture
dc.subjectTUNEL assay
dc.subjectWestern blotting
dc.subjectAntimetabolites
dc.subjectApoptosis
dc.subjectBlotting, Western
dc.subjectBreast Neoplasms
dc.subjectCell Proliferation
dc.subjectCyclopentanes
dc.subjectDeoxyglucose
dc.subjectDrug Therapy, Combination
dc.subjectFemale
dc.subjectHumans
dc.subjectIn Situ Nick-End Labeling
dc.subjectPyrimidines
dc.subjectReal-Time Polymerase Chain Reaction
dc.subjectReverse Transcriptase Polymerase Chain Reaction
dc.subjectRNA, Messenger
dc.subjectTumor Cells, Cultured
dc.subjectUbiquitin-Activating Enzymes
dc.titleHigh efficiency apoptosis induction in breast cancer cell lines by MLN4924/2DG co-treatment
dc.typeReview
dc.citation.volume16
dc.citation.issue13
dc.citation.spage5471
dc.citation.epage5476
dc.citation.indexScopus
dc.identifier.DOIhttps://doi.org/10.7314/APJCP.2015.16.13.5471


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