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Design, synthesis and molecular docking studies of novel N-benzenesulfonyl-1,2,3,4-tetrahydroisoquinoline-based triazoles with potential anticancer activity

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dc.contributor.author Pingaew R.
dc.contributor.author Mandi P.
dc.contributor.author Nantasenamat C.
dc.contributor.author Prachayasittikul S.
dc.contributor.author Ruchirawat S.
dc.contributor.author Prachayasittikul V.
dc.date.accessioned 2021-04-05T03:33:00Z
dc.date.available 2021-04-05T03:33:00Z
dc.date.issued 2014
dc.identifier.issn 2235234
dc.identifier.other 2-s2.0-84900986993
dc.identifier.uri https://ir.swu.ac.th/jspui/handle/123456789/14055
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-84900986993&doi=10.1016%2fj.ejmech.2014.05.019&partnerID=40&md5=ce97880f500ca45fe105259c04e563b6
dc.description.abstract A novel series of N-benzenesulfonyl-1,2,3,4-tetrahydroisoquinolines (14-33) containing triazole moiety were designed and synthesized through rational cycloadditions using the modified Pictet-Spengler reaction and the Click chemistry. Antiproliferative activity against four cancer cell lines (e.g., HuCCA-1, HepG2, A549 and MOLT-3) revealed that many substituted triazole analogs of benzoates (20, 29) and benzaldehydes (30, 32) exhibited anticancer activity against all of the tested cancer cell lines in which the ester analog 20 was shown to be the most potent compound against HuCCA-1 (IC50 = 0.63 μM) and A549 (IC50 = 0.57 μM) cell lines. Triazoles bearing phenyl (15, 24), tolyl (26, 27), acetophenone (19), benzoate (20, 29), benzaldehyde (21, 30) and naphthalenyl (25) substituents showed stronger anticancer activity against HepG2 cells than that of the etoposide. Interestingly, the p-tolyl analog (27) displayed the most potent inhibitory activity (IC50 = 0.56 μM) against HepG2 cells without affecting normal cells. Of the investigated tetrahydroisoquinoline-triazoles, the promising compounds 20 and 27 were selected for molecular docking against AKR1C3, which was identified to be a plausible target site. © 2014 Elsevier Masson SAS. All rights reserved.
dc.subject acetophenone
dc.subject benzaldehyde
dc.subject benzoic acid
dc.subject ester
dc.subject naphthalene
dc.subject tetrahydroisoquinoline
dc.subject triazole derivative
dc.subject unclassified drug
dc.subject antineoplastic agent
dc.subject isoquinoline derivative
dc.subject triazole derivative
dc.subject animal cell
dc.subject antineoplastic activity
dc.subject antiproliferative activity
dc.subject article
dc.subject cancer cell line
dc.subject click chemistry
dc.subject controlled study
dc.subject cycloaddition
dc.subject cytotoxicity
dc.subject drug design
dc.subject drug structure
dc.subject drug synthesis
dc.subject HepG2 cell line
dc.subject IC 50
dc.subject molecular docking
dc.subject nonhuman
dc.subject Pictet Spengler reaction
dc.subject substitution reaction
dc.subject animal
dc.subject cell proliferation
dc.subject chemical structure
dc.subject chemistry
dc.subject Chlorocebus aethiops
dc.subject dose response
dc.subject drug design
dc.subject drug effects
dc.subject drug screening
dc.subject human
dc.subject structure activity relation
dc.subject synthesis
dc.subject tumor cell line
dc.subject Vero cell line
dc.subject Animals
dc.subject Antineoplastic Agents
dc.subject Cell Line, Tumor
dc.subject Cell Proliferation
dc.subject Cercopithecus aethiops
dc.subject Dose-Response Relationship, Drug
dc.subject Drug Design
dc.subject Drug Screening Assays, Antitumor
dc.subject Hep G2 Cells
dc.subject Humans
dc.subject Isoquinolines
dc.subject Molecular Docking Simulation
dc.subject Molecular Structure
dc.subject Structure-Activity Relationship
dc.subject Triazoles
dc.subject Vero Cells
dc.title Design, synthesis and molecular docking studies of novel N-benzenesulfonyl-1,2,3,4-tetrahydroisoquinoline-based triazoles with potential anticancer activity
dc.type Article
dc.rights.holder Scopus
dc.identifier.bibliograpycitation European Journal of Medicinal Chemistry. Vol 81, (2014), p.192-203
dc.identifier.doi 10.1016/j.ejmech.2014.05.019


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