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Synthesis, biological evaluation and in silico study of bis-thiourea derivatives as anticancer, antimalarial and antimicrobial agents

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dc.contributor.author Pingaew R.
dc.contributor.author Sinthupoom N.
dc.contributor.author Mandi P.
dc.contributor.author Prachayasittikul V.
dc.contributor.author Cherdtrakulkiat R.
dc.contributor.author Prachayasittikul S.
dc.contributor.author Ruchirawat S.
dc.contributor.author Prachayasittikul V.
dc.date.accessioned 2021-04-05T03:21:57Z
dc.date.available 2021-04-05T03:21:57Z
dc.date.issued 2017
dc.identifier.issn 10542523
dc.identifier.other 2-s2.0-85028960760
dc.identifier.uri https://ir.swu.ac.th/jspui/handle/123456789/12978
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-85028960760&doi=10.1007%2fs00044-017-2008-5&partnerID=40&md5=91ceae2e75b0123b27cff398f7db21b7
dc.description.abstract Two sets of bis-thioureas including a para series (8–14) and a meta series (4, 5, 15–19), were synthesized and evaluated for their anticancer, antimalarial and antimicrobial activities. Most of the synthesized bis-thioureas, except for analogs 8–11, displayed cytotoxicity against MOLT-3 cell line (IC50 = 1.55–32.32 µM). Derivatives 5, 14, 18 and 19 showed a broad spectrum of anticancer activity. Analogs (4, 5, 8, 13, 14, 18 and 19) exhibited higher inhibitory efficacy in HepG2 cells than the control drug, etoposide. Significantly, bis-trifluoromethyl analog 19 was the promising potent cytotoxic agent (IC50 = 1.50–18.82 µM) with the best safety index (1.64–20.60). Antimalarial activity results showed that trifluoromethyl derivative 18 was the most potent compound (IC50 = 1.92 µM, selective index = 6.86). Antimicrobial activity revealed that bis-thioureas 12, 18 and 19 exhibited selective activity against Gram-positive bacteria and fungi. Promisingly, the bis-trifluoromethyl derivative 19 was the most potent compound in the series and displayed higher potency, against most of the Gram-positive bacteria and fungi, than that of ampicillin, the reference drug. Among the tested strains of microorganisms, compound 19 inhibited the growth of Staphylococcus epidermidis ATCC 12228 and Micrococcus luteus ATCC 10240 with the lowest MIC of 1.47 µM. The findings demonstrated that trifluoromethyl group plays a crucial role in their biological activities. Furthermore, the molecular docking was performed to reveal possible binding modes of the compounds against target proteins. © 2017, Springer Science+Business Media, LLC.
dc.subject 1,1' [1,3 phenylenebis(methylene)]bis[3 (4 bromophenyl)thiourea]
dc.subject 1,1' [1,3 phenylenebis(methylene)]bis[3 (4 methoxyphenyl)thiourea]
dc.subject 1,1' [1,3 phenylenebis(methylene)]bis[3 (4 trifluoromethylphenyl)thiourea]
dc.subject 1,1' [1,4 phenylenebis(methylene)]bis[3 (3,5 ditrifluoromethylphenyl)thiourea]
dc.subject 1,1' [1,4 phenylenebis(methylene)]bis[3 (4 bromophenyl)thiourea]
dc.subject 1,1' [1,4 phenylenebis(methylene)]bis[3 (4 chlorophenyl)thiourea]
dc.subject 1,1' [1,4 phenylenebis(methylene)]bis[3 (4 methoxyphenyl)thiourea]
dc.subject 1,1' [1,4 phenylenebis(methylene)]bis[3 (4 methylphenyl)thiourea]
dc.subject 1,1' [1,4 phenylenebis(methylene)]bis[3 (4 nitrophenyl)thiourea]
dc.subject 1,1' [1,4 phenylenebis(methylene)]bis[3 (4 trifluoromethylphenyl)thiourea]
dc.subject ampicillin
dc.subject antiinfective agent
dc.subject antimalarial agent
dc.subject antineoplastic agent
dc.subject colchicine
dc.subject cytotoxic agent
dc.subject DNA topoisomerase IV
dc.subject doxorubicin
dc.subject etoposide
dc.subject novobiocin
dc.subject thiourea derivative
dc.subject tubulin
dc.subject unclassified drug
dc.subject Achromobacter xylosoxidans
dc.subject agar dilution
dc.subject animal cell
dc.subject antimalarial activity
dc.subject antimicrobial activity
dc.subject antineoplastic activity
dc.subject Article
dc.subject Bacillus cereus
dc.subject Bacillus subtilis
dc.subject binding site
dc.subject carbon nuclear magnetic resonance
dc.subject computer model
dc.subject controlled study
dc.subject cytotoxicity
dc.subject drug potency
dc.subject drug safety
dc.subject drug screening
dc.subject drug structure
dc.subject drug synthesis
dc.subject Hep-G2 cell line
dc.subject human
dc.subject human cell
dc.subject hydrogen bond
dc.subject IC50
dc.subject infrared spectroscopy
dc.subject Listeria monocytogenes
dc.subject mass spectrometry
dc.subject Micrococcus luteus
dc.subject minimum inhibitory concentration
dc.subject molecular docking
dc.subject MOLT-3 cell line
dc.subject nonhuman
dc.subject Plasmodium falciparum
dc.subject Plesiomonas shigelloides
dc.subject proton nuclear magnetic resonance
dc.subject Saccharomyces cerevisiae
dc.subject selectivity index
dc.subject Shigella dysenteriae
dc.subject Staphylococcus epidermidis
dc.title Synthesis, biological evaluation and in silico study of bis-thiourea derivatives as anticancer, antimalarial and antimicrobial agents
dc.type Article
dc.rights.holder Scopus
dc.identifier.bibliograpycitation Medicinal Chemistry Research. Vol 26, No.12 (2017), p.3136-3148
dc.identifier.doi 10.1007/s00044-017-2008-5


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