2017
FOXM1 expression is significantly associated with chemotherapy resistance and adverse prognosis in non-serous epithelial ovarian cancer patients
Tassi RA, Todeschini P, Siegel ER, Calza S, Cappella P, Ardighieri L, Cadei M, Bugatti M, Romani C, Bandiera E, Zanotti L, Tassone L, Guarino D, Santonocito C, Capoluongo ED, Beltrame L, Erba E, Marchini S, D’Incalci M, Donzelli C, Santin AD, Pecorelli S, Sartori E, Bignotti E, Odicino F, Ravaggi A. FOXM1 expression is significantly associated with chemotherapy resistance and adverse prognosis in non-serous epithelial ovarian cancer patients. Journal Of Experimental & Clinical Cancer Research 2017, 36: 63. PMID: 28482906, PMCID: PMC5422964, DOI: 10.1186/s13046-017-0536-y.Peer-Reviewed Original ResearchMeSH KeywordsAdultAgedAged, 80 and overAntineoplastic Combined Chemotherapy ProtocolsBiomarkers, TumorCarcinoma, Ovarian EpithelialCell Line, TumorCell MovementCell ProliferationCell Transformation, NeoplasticCystadenocarcinoma, SerousDisease ProgressionDNA RepairDrug Resistance, NeoplasmFemaleForkhead Box Protein M1Gene Expression ProfilingGene Expression Regulation, NeoplasticGene Knockdown TechniquesHumansKaplan-Meier EstimateMiddle AgedNeoplasm GradingNeoplasm MetastasisNeoplasm StagingNeoplasms, Glandular and EpithelialOvarian NeoplasmsPrognosisProtein IsoformsRNA, Small InterferingConceptsForkhead box M1FOXM1 expressionEOC cell linesSerous EOCNormal controlsEOC subtypesCox proportional hazards analysisWorse disease-specific survivalEpithelial ovarian cancer patientsCell linesPlatinum-resistant casesSnap-frozen biopsiesDisease-specific survivalPlatinum-resistant diseaseAdvanced FIGO stageProportional hazards analysisProtein overexpressionClinic-pathological parametersOvarian cancer patientsRT-qPCRTransient siRNA transfectionPARP inhibitor olaparibFIGO stageSerous histologySpecific survival
2014
Regulation of tumor cell migration and invasion by the H19/let-7 axis is antagonized by metformin-induced DNA methylation
Yan L, Zhou J, Gao Y, Ghazal S, Lu L, Bellone S, Yang Y, Liu N, Zhao X, Santin AD, Taylor H, Huang Y. Regulation of tumor cell migration and invasion by the H19/let-7 axis is antagonized by metformin-induced DNA methylation. Oncogene 2014, 34: 3076-3084. PMID: 25088204, DOI: 10.1038/onc.2014.236.Peer-Reviewed Original ResearchConceptsTumor cell migrationDNA methylationCell migrationTumor suppressorH19/letPotent tumor suppressorExpression of oncogenesDiverse human cancersMetastasis-promoting genesAnti-diabetic drug metforminLet-7C-MycHuman cancersH19Cell growthNovel mechanismEndometrial cancerPoor prognosisRegulationDrug metforminMethylationTherapeutic opportunitiesSuppressorTumor cellsOncogene