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dc.creatorZhang W.
dc.creatorBhagwath A.S.
dc.creatorRamzan Z.
dc.creatorWilliams T.A.
dc.creatorSubramaniyan I.
dc.creatorEdpuganti V.
dc.creatorKallem R.R.
dc.creatorDunbar K.B.
dc.creatorDing P.
dc.creatorGong K.
dc.creatorGeurkink S.A.
dc.creatorBeg M.S.
dc.creatorKim J.
dc.creatorZhang Q.
dc.creatorHabib A.A.
dc.creatorChoi S.-H.
dc.creatorLapsiwala R.
dc.creatorBhagwath G.
dc.creatorDowell J.E.
dc.creatorMelton S.D.
dc.creatorJie C.
dc.creatorPutnam W.C.
dc.creatorPham T.H.
dc.creatorWang D.H.
dc.date.accessioned2022-09-28T17:57:02Z
dc.date.available2022-09-28T17:57:02Z
dc.date.issued2021
dc.identifier.urihttps://doi.org/10.1158/1535-7163.MCT-20-0638
dc.identifier.urihttps://repository.tcu.edu/handle/116099117/55825
dc.description.abstractItraconazole, an FDA-approved antifungal, has antitumor activity against a variety of cancers. We sought to determine the effects of itraconazole on esophageal cancer and elucidate its mechanism of action. Itraconazole inhibited cell proliferation and induced G1-phase cell-cycle arrest in esophageal squamous cell carcinoma and adenocarcinoma cell lines. Using an unbiased kinase array, we found that itraconazole downregulated protein kinase AKT phosphorylation in OE33 esophageal adenocarcinoma cells. Itraconazole also decreased phosphorylation of downstream ribosomal protein S6, transcriptional expression of the upstream receptor tyrosine kinase HER2, and phosphorylation of upstream PI3K in esophageal cancer cells. Lapatinib, a tyrosine kinase inhibitor that targets HER2, and siRNA-mediated knockdown of HER2 similarly suppressed cancer cell growth in vitro. Itraconazole significantly inhibited growth of OE33-derived flank xenografts in mice with detectable levels of itraconazole and its primary metabolite, hydroxyitraconazole, in esophagi and tumors. HER2 total protein and phosphorylation of AKT and S6 proteins were decreased in xenografts from itraconazole-treated mice compared to xenografts from placebo-treated mice. In an early phase I clinical trial (NCT02749513) in patients with esophageal cancer, itraconazole decreased HER2 total protein expression and phosphorylation of AKT and S6 proteins in tumors. These data demonstrate that itraconazole has potent antitumor properties in esophageal cancer, partially through blockade of HER2/AKT signaling. ©2021 The Authors; Published by the American Association for Cancer Research
dc.languageen
dc.publisherAACR
dc.rights2021 The Authors
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.sourceMolecular Cancer Therapeutics
dc.subjectepidermal growth factor receptor 2
dc.subjecthydroxyitraconazole
dc.subjectitraconazole
dc.subjectlapatinib
dc.subjectphosphatidylinositol 3 kinase
dc.subjectplacebo
dc.subjectprotein kinase B
dc.subjectprotein S6
dc.subjectsmall interfering RNA
dc.subjecttyrosine kinase receptor
dc.subjectAKT1 protein, human
dc.subjectcytochrome P450 3A inhibitor
dc.subjectepidermal growth factor receptor 2
dc.subjectERBB2 protein, human
dc.subjectitraconazole
dc.subjectprotein kinase B
dc.subjectadult
dc.subjectaged
dc.subjectAkt signaling
dc.subjectanimal experiment
dc.subjectanimal model
dc.subjectantineoplastic activity
dc.subjectArticle
dc.subjectcancer growth
dc.subjectcancer inhibition
dc.subjectcancer model
dc.subjectcancer patient
dc.subjectcell cycle arrest
dc.subjectcell cycle G1 phase
dc.subjectcell cycle M phase
dc.subjectcell cycle S phase
dc.subjectcell proliferation
dc.subjectclinical article
dc.subjectcomparative study
dc.subjectcontrolled study
dc.subjectdown regulation
dc.subjectelectrospray
dc.subjectesophageal adenocarcinoma
dc.subjectesophageal squamous cell carcinoma
dc.subjectesophagogastroduodenoscopy
dc.subjectFLO-1 cell line
dc.subjectG1 phase cell cycle checkpoint
dc.subjectgene expression
dc.subjectgenetic transcription
dc.subjecthuman
dc.subjecthuman cell
dc.subjectin vitro study
dc.subjectKYSE-510 cell line
dc.subjectKYSE-70 cell line
dc.subjectliquid chromatography-mass spectrometry
dc.subjectmale
dc.subjectmouse
dc.subjectnonhuman
dc.subjectOE33 cell line
dc.subjectpolyacrylamide gel electrophoresis
dc.subjectprotein expression
dc.subjectprotein phosphorylation
dc.subjectreal time polymerase chain reaction
dc.subjectsignal transduction
dc.subjecttumor volume
dc.subjecttumor xenograft
dc.subjectultra performance liquid chromatography
dc.subjectunspecified side effect
dc.subjectanimal
dc.subjectapoptosis
dc.subjectBagg albino mouse
dc.subjectcell cycle
dc.subjectcell motion
dc.subjectclinical trial
dc.subjectdrug effect
dc.subjectdrug screening
dc.subjectesophageal squamous cell carcinoma
dc.subjectesophagus tumor
dc.subjectfemale
dc.subjectgene expression regulation
dc.subjectmaximum tolerated dose
dc.subjectmetabolism
dc.subjectnude mouse
dc.subjectpathology
dc.subjectphase 1 clinical trial
dc.subjectprognosis
dc.subjecttissue distribution
dc.subjecttumor cell culture
dc.subjectAnimals
dc.subjectApoptosis
dc.subjectCell Cycle
dc.subjectCell Movement
dc.subjectCell Proliferation
dc.subjectCytochrome P-450 CYP3A Inhibitors
dc.subjectEsophageal Neoplasms
dc.subjectEsophageal Squamous Cell Carcinoma
dc.subjectFemale
dc.subjectGene Expression Regulation, Neoplastic
dc.subjectHumans
dc.subjectItraconazole
dc.subjectMaximum Tolerated Dose
dc.subjectMice
dc.subjectMice, Inbred BALB C
dc.subjectMice, Nude
dc.subjectPrognosis
dc.subjectProto-Oncogene Proteins c-akt
dc.subjectReceptor, ErbB-2
dc.subjectTissue Distribution
dc.subjectTumor Cells, Cultured
dc.subjectXenograft Model Antitumor Assays
dc.titleItraconazole Exerts Its Antitumor Effect in Esophageal Cancer by Suppressing the HER2/AKT Signaling Pathway
dc.typeArticle
dc.rights.licenseCC BY-NC-ND 4.0
local.collegeBurnett School of Medicine
local.departmentBurnett School of Medicine
local.personsRamzan (SOM)


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2021 The Authors
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