Transforming iodoquinol into broad spectrum anti-tumor leads: Repurposing to modulate redox homeostasis

dc.contributor.authorChaaban, Ibrahim
dc.contributor.authorHafez, Haidy
dc.contributor.authorAlZaim, Ibrahim
dc.contributor.authorTannous, Cynthia
dc.contributor.authorRagab, Hanan M.A.
dc.contributor.authorHazzaa, Aly A.B.
dc.contributor.authorKetat, Salma
dc.contributor.authorGhoneim, Asser Ibrahim
dc.contributor.authorKatary, Mohamed Alaa
dc.contributor.authorAbd-Alhaseeb, Mohammad M.
dc.contributor.authorZouein, Fouad A.
dc.contributor.authorAlbohy, Amgad
dc.contributor.authorNoby, Ahmed
dc.contributor.authorEl-Yazbi, Ahmed F.
dc.contributor.authorBelal, Ahmed Saied F.
dc.contributor.departmentPharmacology and Toxicology
dc.contributor.facultyFaculty of Medicine (FM)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:39:47Z
dc.date.available2025-01-24T11:39:47Z
dc.date.issued2021
dc.description.abstractWe managed to repurpose the old drug iodoquinol to a series of novel anticancer 7-iodo-quinoline-5,8-diones. Twelve compounds were identified as inhibitors of moderate to high potency on an inhouse MCF-7 cell line, of which 2 compounds (5 and 6) were capable of reducing NAD level in MCF-7 cells in concentrations equivalent to half of their IC50s, potentially due to NAD(P)H quinone oxidoreductase (NQO1) inhibition. The same 2 compounds (5 and 6) were capable of reducing p53 expression and increasing reactive oxygen species levels, which further supports the NQO-1 inhibitory activity. Furthermore, 4 compounds (compounds 5–7 and 10) were qualified by the Development Therapeutic Program (DTP) division of the National Cancer Institute (NCI) for full panel five-dose in vitro assay to determine their GI50 on the 60 cell lines. All five compounds showed broad spectrum sub-micromolar to single digit micromolar GI50 against a wide range of cell lines. Cell cycle analysis and dual staining assays with annexin V-FITC/propidium iodide on MCF-7 cells confirmed the capability of the most active compound (compound 5) to induce cell cycle arrest at Pre-G1 and G2/M phases as well as apoptosis. Both cell cycle arrest and apoptosis were affirmed at the molecular level by the ability of compound 5 to enhance the expression levels of caspase-3 and Bax together with suppressing that of CDK1 and Bcl-2. Additionally, an anti-angiogenic effect was evident with compound 5 as supported by the decreased expression of VEGF. Interesting binding modes within NQO-1 active site had been identified and confirmed by both molecular docking and dymanic experiments. © 2021 Elsevier Inc.
dc.identifier.doihttps://doi.org/10.1016/j.bioorg.2021.105035
dc.identifier.eid2-s2.0-85108717251
dc.identifier.pmid34091287
dc.identifier.urihttp://hdl.handle.net/10938/29354
dc.language.isoen
dc.publisherAcademic Press Inc.
dc.relation.ispartofBioorganic Chemistry
dc.sourceScopus
dc.subjectAnticancer
dc.subjectDrug likeness
dc.subjectDrug repurposing
dc.subjectIodoquinol
dc.subjectNqo-1
dc.subjectAntineoplastic agents
dc.subjectApoptosis
dc.subjectBinding sites
dc.subjectCell cycle checkpoints
dc.subjectDrug repositioning
dc.subjectDrug screening assays, antitumor
dc.subjectHumans
dc.subjectMcf-7 cells
dc.subjectMolecular docking simulation
dc.subjectNad
dc.subjectNad(p)h dehydrogenase (quinone)
dc.subjectOxidation-reduction
dc.subjectReactive oxygen species
dc.subjectStructure-activity relationship
dc.subject2 [(7 iodo 5,8 dioxo 5,8 dihydroquinolin 6 yl)amino]benzoic acid
dc.subject4 [(7 iodo 5,8 dioxo 5,8 dihydroquinolin 6 yl)amino]benzoic acid
dc.subject4 [(7 iodo 5,8 dioxo 5,8 dihydroquinoline 6 yl)amino] n [thiazol 2 yl]benzenesulfonamide
dc.subject4 [(7 iodo 5,8 dioxo 5,8 dihydroquinoline 6 yl)amino]benzenesulphonamide
dc.subject6 [(4 bromophenyl)amino] 7 iodoquinoline 5,8 dione
dc.subject6 [(4 chlorophenyl)amino] 7 iodoquinoline 5,8 dione
dc.subject7 iodo 6 (piperazin 1 yl)quinoline 5,8 dione
dc.subject7 iodo 6 (pyridin 2 ylamino)quinoline 5,8 dione
dc.subject7 iodo 6 morpholinoquinoline 5,8 dione
dc.subject7 iodo 6 [(4 methoxyphenyl)amino)quinoline 5,8 dione
dc.subjectAntineoplastic agent
dc.subjectCaspase 3
dc.subjectCyclin dependent kinase 1
dc.subjectDiiodohydroxyquin
dc.subjectDoxorubicin
dc.subjectFluorouracil
dc.subjectLipocortin 5
dc.subjectN carbamimidoyl 4 [(7 iodo 5,8 dioxo 5,8 dihydroquinoline 6 yl)amino]benzenesulfonamide
dc.subjectN [2,6 dimethylpyrimidin 4 yl] 4 [(7 iodo 5,8 dioxo 5,8 dihydroquinolin 6 yl)amino]benzenesulfonamide
dc.subjectNicotinamide adenine dinucleotide
dc.subjectProtein bax
dc.subjectProtein bcl 2
dc.subjectProtein p53
dc.subjectReactive oxygen metabolite
dc.subjectReduced nicotinamide adenine dinucleotide
dc.subjectReduced nicotinamide adenine dinucleotide (phosphate) dehydrogenase (quinone)
dc.subjectUnclassified drug
dc.subjectVasculotropin
dc.subjectNqo1 protein, human
dc.subject786-o cell line
dc.subjectA-498 cell line
dc.subjectAchn cell line
dc.subjectAntiangiogenic activity
dc.subjectAntineoplastic activity
dc.subjectAntiproliferative activity
dc.subjectArticle
dc.subjectBt-549 cell line
dc.subjectCaki-1 cell line
dc.subjectCarbon nuclear magnetic resonance
dc.subjectCcrf-cem cell line
dc.subjectCell cycle arrest
dc.subjectCell cycle g1 phase
dc.subjectColo 205 cell line
dc.subjectComparative study
dc.subjectControlled study
dc.subjectCytotoxicity
dc.subjectDrug potency
dc.subjectDrug synthesis
dc.subjectDu145 cell line
dc.subjectEkvx cell line
dc.subjectEnzyme activity
dc.subjectFemale
dc.subjectG2 phase cell cycle checkpoint
dc.subjectGi50
dc.subjectHcc2998 cell line
dc.subjectHct 116 cell line
dc.subjectHct 15 cell line
dc.subjectHl-60 cell line
dc.subjectHop-62 cell line
dc.subjectHop-92 cell line
dc.subjectHs 578t cell line
dc.subjectHt-29 cell line
dc.subjectHuman
dc.subjectHuman cell
dc.subjectIc50
dc.subjectIgrov-1 cell line
dc.subjectIn vitro study
dc.subjectK-562 cell line
dc.subjectKm12 cell line
dc.subjectLc50
dc.subjectLox-imvi cell line
dc.subjectM14 cell line
dc.subjectMalme-3m cell line
dc.subjectMcf-7 cell line
dc.subjectMda-mb-231 cell line
dc.subjectMda-mb-435 cell line
dc.subjectMda-mb-468 cell line
dc.subjectMelting point
dc.subjectMolecular docking
dc.subjectMolecular dynamics
dc.subjectMolt-4 cell line
dc.subjectNational health organization
dc.subjectNci-adr-res cell line
dc.subjectNci-h226 cell line
dc.subjectNci-h23 cell line
dc.subjectNci-h460 cell line
dc.subjectNci-h522 cell line
dc.subjectOvcar-3 cell line
dc.subjectOvcar-4 cell line
dc.subjectOvcar-5 cell line
dc.subjectOvcar-8 cell line
dc.subjectOxidation reduction reaction
dc.subjectPc-3 ml cell line
dc.subjectPercentage of cells in g0/g1 phase
dc.subjectPercentage of cells in g2/m phase
dc.subjectProtein expression
dc.subjectProtein expression level
dc.subjectProton nuclear magnetic resonance
dc.subjectRoom temperature
dc.subjectRpmi-8226 cell line
dc.subjectRxf 393l cell line
dc.subjectScanning electron microscopy
dc.subjectSf268 cell line
dc.subjectSf295 cell line
dc.subjectSf539 cell line
dc.subjectSk-mel-2 cell line
dc.subjectSk-mel-28 cell line
dc.subjectSk-mel-5 cell line
dc.subjectSk-ov-3 cell line
dc.subjectSn12c cell line
dc.subjectSnb-19 cell line
dc.subjectSnb-75 cell line
dc.subjectSw620 cell line
dc.subjectT-47d cell line
dc.subjectUacc-257 cell line
dc.subjectUacc-62 cell line
dc.subjectUo-31 cell line
dc.subjectBinding site
dc.subjectCell cycle checkpoint
dc.subjectChemistry
dc.subjectDrug effect
dc.subjectDrug screening
dc.subjectMetabolism
dc.subjectStructure activity relation
dc.titleTransforming iodoquinol into broad spectrum anti-tumor leads: Repurposing to modulate redox homeostasis
dc.typeArticle

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