Transforming iodoquinol into broad spectrum anti-tumor leads: Repurposing to modulate redox homeostasis
| dc.contributor.author | Chaaban, Ibrahim | |
| dc.contributor.author | Hafez, Haidy | |
| dc.contributor.author | AlZaim, Ibrahim | |
| dc.contributor.author | Tannous, Cynthia | |
| dc.contributor.author | Ragab, Hanan M.A. | |
| dc.contributor.author | Hazzaa, Aly A.B. | |
| dc.contributor.author | Ketat, Salma | |
| dc.contributor.author | Ghoneim, Asser Ibrahim | |
| dc.contributor.author | Katary, Mohamed Alaa | |
| dc.contributor.author | Abd-Alhaseeb, Mohammad M. | |
| dc.contributor.author | Zouein, Fouad A. | |
| dc.contributor.author | Albohy, Amgad | |
| dc.contributor.author | Noby, Ahmed | |
| dc.contributor.author | El-Yazbi, Ahmed F. | |
| dc.contributor.author | Belal, Ahmed Saied F. | |
| dc.contributor.department | Pharmacology and Toxicology | |
| dc.contributor.faculty | Faculty of Medicine (FM) | |
| dc.contributor.institution | American University of Beirut | |
| dc.date.accessioned | 2025-01-24T11:39:47Z | |
| dc.date.available | 2025-01-24T11:39:47Z | |
| dc.date.issued | 2021 | |
| dc.description.abstract | We 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.doi | https://doi.org/10.1016/j.bioorg.2021.105035 | |
| dc.identifier.eid | 2-s2.0-85108717251 | |
| dc.identifier.pmid | 34091287 | |
| dc.identifier.uri | http://hdl.handle.net/10938/29354 | |
| dc.language.iso | en | |
| dc.publisher | Academic Press Inc. | |
| dc.relation.ispartof | Bioorganic Chemistry | |
| dc.source | Scopus | |
| dc.subject | Anticancer | |
| dc.subject | Drug likeness | |
| dc.subject | Drug repurposing | |
| dc.subject | Iodoquinol | |
| dc.subject | Nqo-1 | |
| dc.subject | Antineoplastic agents | |
| dc.subject | Apoptosis | |
| dc.subject | Binding sites | |
| dc.subject | Cell cycle checkpoints | |
| dc.subject | Drug repositioning | |
| dc.subject | Drug screening assays, antitumor | |
| dc.subject | Humans | |
| dc.subject | Mcf-7 cells | |
| dc.subject | Molecular docking simulation | |
| dc.subject | Nad | |
| dc.subject | Nad(p)h dehydrogenase (quinone) | |
| dc.subject | Oxidation-reduction | |
| dc.subject | Reactive oxygen species | |
| dc.subject | Structure-activity relationship | |
| dc.subject | 2 [(7 iodo 5,8 dioxo 5,8 dihydroquinolin 6 yl)amino]benzoic acid | |
| dc.subject | 4 [(7 iodo 5,8 dioxo 5,8 dihydroquinolin 6 yl)amino]benzoic acid | |
| dc.subject | 4 [(7 iodo 5,8 dioxo 5,8 dihydroquinoline 6 yl)amino] n [thiazol 2 yl]benzenesulfonamide | |
| dc.subject | 4 [(7 iodo 5,8 dioxo 5,8 dihydroquinoline 6 yl)amino]benzenesulphonamide | |
| dc.subject | 6 [(4 bromophenyl)amino] 7 iodoquinoline 5,8 dione | |
| dc.subject | 6 [(4 chlorophenyl)amino] 7 iodoquinoline 5,8 dione | |
| dc.subject | 7 iodo 6 (piperazin 1 yl)quinoline 5,8 dione | |
| dc.subject | 7 iodo 6 (pyridin 2 ylamino)quinoline 5,8 dione | |
| dc.subject | 7 iodo 6 morpholinoquinoline 5,8 dione | |
| dc.subject | 7 iodo 6 [(4 methoxyphenyl)amino)quinoline 5,8 dione | |
| dc.subject | Antineoplastic agent | |
| dc.subject | Caspase 3 | |
| dc.subject | Cyclin dependent kinase 1 | |
| dc.subject | Diiodohydroxyquin | |
| dc.subject | Doxorubicin | |
| dc.subject | Fluorouracil | |
| dc.subject | Lipocortin 5 | |
| dc.subject | N carbamimidoyl 4 [(7 iodo 5,8 dioxo 5,8 dihydroquinoline 6 yl)amino]benzenesulfonamide | |
| dc.subject | N [2,6 dimethylpyrimidin 4 yl] 4 [(7 iodo 5,8 dioxo 5,8 dihydroquinolin 6 yl)amino]benzenesulfonamide | |
| dc.subject | Nicotinamide adenine dinucleotide | |
| dc.subject | Protein bax | |
| dc.subject | Protein bcl 2 | |
| dc.subject | Protein p53 | |
| dc.subject | Reactive oxygen metabolite | |
| dc.subject | Reduced nicotinamide adenine dinucleotide | |
| dc.subject | Reduced nicotinamide adenine dinucleotide (phosphate) dehydrogenase (quinone) | |
| dc.subject | Unclassified drug | |
| dc.subject | Vasculotropin | |
| dc.subject | Nqo1 protein, human | |
| dc.subject | 786-o cell line | |
| dc.subject | A-498 cell line | |
| dc.subject | Achn cell line | |
| dc.subject | Antiangiogenic activity | |
| dc.subject | Antineoplastic activity | |
| dc.subject | Antiproliferative activity | |
| dc.subject | Article | |
| dc.subject | Bt-549 cell line | |
| dc.subject | Caki-1 cell line | |
| dc.subject | Carbon nuclear magnetic resonance | |
| dc.subject | Ccrf-cem cell line | |
| dc.subject | Cell cycle arrest | |
| dc.subject | Cell cycle g1 phase | |
| dc.subject | Colo 205 cell line | |
| dc.subject | Comparative study | |
| dc.subject | Controlled study | |
| dc.subject | Cytotoxicity | |
| dc.subject | Drug potency | |
| dc.subject | Drug synthesis | |
| dc.subject | Du145 cell line | |
| dc.subject | Ekvx cell line | |
| dc.subject | Enzyme activity | |
| dc.subject | Female | |
| dc.subject | G2 phase cell cycle checkpoint | |
| dc.subject | Gi50 | |
| dc.subject | Hcc2998 cell line | |
| dc.subject | Hct 116 cell line | |
| dc.subject | Hct 15 cell line | |
| dc.subject | Hl-60 cell line | |
| dc.subject | Hop-62 cell line | |
| dc.subject | Hop-92 cell line | |
| dc.subject | Hs 578t cell line | |
| dc.subject | Ht-29 cell line | |
| dc.subject | Human | |
| dc.subject | Human cell | |
| dc.subject | Ic50 | |
| dc.subject | Igrov-1 cell line | |
| dc.subject | In vitro study | |
| dc.subject | K-562 cell line | |
| dc.subject | Km12 cell line | |
| dc.subject | Lc50 | |
| dc.subject | Lox-imvi cell line | |
| dc.subject | M14 cell line | |
| dc.subject | Malme-3m cell line | |
| dc.subject | Mcf-7 cell line | |
| dc.subject | Mda-mb-231 cell line | |
| dc.subject | Mda-mb-435 cell line | |
| dc.subject | Mda-mb-468 cell line | |
| dc.subject | Melting point | |
| dc.subject | Molecular docking | |
| dc.subject | Molecular dynamics | |
| dc.subject | Molt-4 cell line | |
| dc.subject | National health organization | |
| dc.subject | Nci-adr-res cell line | |
| dc.subject | Nci-h226 cell line | |
| dc.subject | Nci-h23 cell line | |
| dc.subject | Nci-h460 cell line | |
| dc.subject | Nci-h522 cell line | |
| dc.subject | Ovcar-3 cell line | |
| dc.subject | Ovcar-4 cell line | |
| dc.subject | Ovcar-5 cell line | |
| dc.subject | Ovcar-8 cell line | |
| dc.subject | Oxidation reduction reaction | |
| dc.subject | Pc-3 ml cell line | |
| dc.subject | Percentage of cells in g0/g1 phase | |
| dc.subject | Percentage of cells in g2/m phase | |
| dc.subject | Protein expression | |
| dc.subject | Protein expression level | |
| dc.subject | Proton nuclear magnetic resonance | |
| dc.subject | Room temperature | |
| dc.subject | Rpmi-8226 cell line | |
| dc.subject | Rxf 393l cell line | |
| dc.subject | Scanning electron microscopy | |
| dc.subject | Sf268 cell line | |
| dc.subject | Sf295 cell line | |
| dc.subject | Sf539 cell line | |
| dc.subject | Sk-mel-2 cell line | |
| dc.subject | Sk-mel-28 cell line | |
| dc.subject | Sk-mel-5 cell line | |
| dc.subject | Sk-ov-3 cell line | |
| dc.subject | Sn12c cell line | |
| dc.subject | Snb-19 cell line | |
| dc.subject | Snb-75 cell line | |
| dc.subject | Sw620 cell line | |
| dc.subject | T-47d cell line | |
| dc.subject | Uacc-257 cell line | |
| dc.subject | Uacc-62 cell line | |
| dc.subject | Uo-31 cell line | |
| dc.subject | Binding site | |
| dc.subject | Cell cycle checkpoint | |
| dc.subject | Chemistry | |
| dc.subject | Drug effect | |
| dc.subject | Drug screening | |
| dc.subject | Metabolism | |
| dc.subject | Structure activity relation | |
| dc.title | Transforming iodoquinol into broad spectrum anti-tumor leads: Repurposing to modulate redox homeostasis | |
| dc.type | Article |
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