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dc.contributor.authorLirdprapamongkol K.
dc.contributor.authorSakurai H.
dc.contributor.authorAbdelhamed S.
dc.contributor.authorYokoyama S.
dc.contributor.authorAthikomkulchai S.
dc.contributor.authorViriyaroj A.
dc.contributor.authorAwale S.
dc.contributor.authorRuchirawat S.
dc.contributor.authorSvasti J.
dc.contributor.authorSaiki I.
dc.date.accessioned2021-04-05T03:32:56Z-
dc.date.available2021-04-05T03:32:56Z-
dc.date.issued2013
dc.identifier.issn10196439
dc.identifier.other2-s2.0-84879460546
dc.identifier.urihttps://ir.swu.ac.th/jspui/handle/123456789/14042-
dc.identifier.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84879460546&doi=10.3892%2fijo.2013.1926&partnerID=40&md5=b3c88580e5076e8895199e6af1407c7b
dc.description.abstractTumor necrosis factor-related apoptosis-inducing ligand (TRAIL) selectively kills various types of cancer cells without harming normal cells, but TRAIL resistance has been frequently observed in cancer cells. Propolis (bee glue) is a material collected from various plants by honeybees and is a rich source of bioactive compounds, including the natural flavonoid chrysin, which possesses multiple anticancer effects. We investigated the mechanism underlying the TRAIL sensitization effect of chrysin, which is a major constituent of Thai propolis, in human lung and cervical cancer cell lines. Propolis extract and chrysin sensitizes A549 and HeLa human cancer cell lines to TRAIL-induced apoptosis. The TRAIL sensitization effect of chrysin is not mediated by inhibition of TRAIL-induced NF-κB activation or by glutathione depletion. Immunoblot analysis using a panel of anti-apoptotic proteins revealed that chrysin selectively decreases the levels of Mcl-1 protein, by downregulating Mcl-1 gene expression as determined by qRT-PCR. The contribution of Mcl-1 in TRAIL resistance was confirmed by si-Mcl-1 knockdown. Among signaling pathways that regulate Mcl-1 gene expression, only constitutive STAT3 phosphorylation was suppressed by chrysin. The proposed action of chrysin in TRAIL sensitization by inhibiting STAT3 and downregulating Mcl-1 was supported by using a STAT3-specific inhibitor, cucurbitacin-I, which decreased Mcl-1 levels and enhanced Key words: tumor necrosis factor-related apoptosis-inducing ligand, STAT3, apoptosis, propolis, natural products TRAIL-induced cell death, similar to that observed with chrysin treatment. In conclusion, we show the potential of chrysin in overcoming TRAIL resistance of cancer cells and elucidate its mechanism of action.
dc.subjectchrysin
dc.subjectcucurbitacin
dc.subjectglutathione
dc.subjectpropolis
dc.subjectprotein mcl 1
dc.subjectSTAT3 protein
dc.subjecttumor necrosis factor related apoptosis inducing ligand
dc.subjectanalysis
dc.subjectantineoplastic activity
dc.subjectapoptosis
dc.subjectarticle
dc.subjectcancer cell
dc.subjectcancer cell culture
dc.subjectcancer resistance
dc.subjectcontrolled study
dc.subjectdown regulation
dc.subjectenzyme activation
dc.subjectenzyme inhibition
dc.subjectfemale
dc.subjectgene expression
dc.subjectHeLa cell
dc.subjecthoneybee
dc.subjecthuman
dc.subjecthuman cell
dc.subjectimmunoblotting
dc.subjectpriority journal
dc.subjectprotein phosphorylation
dc.subjectreverse transcription polymerase chain reaction
dc.subjectsensitization
dc.subjectsignal transduction
dc.subjectuterine cervix cancer
dc.subjectFemale
dc.subjectFlavonoids
dc.subjectGene Expression Regulation, Neoplastic
dc.subjectGlutathione
dc.subjectHeLa Cells
dc.subjectHumans
dc.subjectLung Neoplasms
dc.subjectMyeloid Cell Leukemia Sequence 1 Protein
dc.subjectNF-kappa B
dc.subjectPhosphorylation
dc.subjectPropolis
dc.subjectSTAT3 Transcription Factor
dc.subjectTNF-Related Apoptosis-Inducing Ligand
dc.subjectUterine Cervical Neoplasms
dc.titleChrysin overcomes TRAIL resistance of cancer cells through Mcl-1 downregulation by inhibiting STAT3 phosphorylation
dc.typeArticle
dc.rights.holderScopus
dc.identifier.bibliograpycitationInternational Journal of Oncology. Vol 43, No.1 (2013), p.329-337
dc.identifier.doi10.3892/ijo.2013.1926
Appears in Collections:Scopus 1983-2021

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