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Synthesis, anticancer activity and QSAR study of 1,4-naphthoquinone derivatives

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dc.contributor.author Prachayasittikul V.
dc.contributor.author Pingaew R.
dc.contributor.author Worachartcheewan A.
dc.contributor.author Nantasenamat C.
dc.contributor.author Prachayasittikul S.
dc.contributor.author Ruchirawat S.
dc.contributor.author Prachayasittikul V.
dc.date.accessioned 2021-04-05T03:32:30Z
dc.date.available 2021-04-05T03:32:30Z
dc.date.issued 2014
dc.identifier.issn 2235234
dc.identifier.other 2-s2.0-84904286268
dc.identifier.uri https://ir.swu.ac.th/jspui/handle/123456789/13844
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-84904286268&doi=10.1016%2fj.ejmech.2014.07.024&partnerID=40&md5=26f698afea0572dcde64dca8e646d261
dc.description.abstract A series of 2-substituted amino-3-chloro-1,4-naphthoquinone derivatives (3-12) were synthesized as anticancer agents and tested against four cancer cell lines including HepG2, HuCCA-1, A549 and MOLT-3. The most potent cytotoxic activity against the HepG2, HuCCA-1 and A549 cell lines was found to be m-acetylphenylamino-1,4-naphthoquinone (8) affording IC50 values of 4.758, 2.364 and 12.279 μM, respectively. On the other hand, p-acetylphenylamino-1,4-naphthoquinone (9) exhibited the most potent cytotoxic activity against the MOLT-3 cell line with an IC50 of 2.118 μM. Quantitative structure-activity relationship (QSAR) investigations provided good predictive performance as observed from cross-validated R of 0.9177-0.9753 and RMSE of 0.0614-0.1881. The effects of substituents at the 2-amino position on the naphthoquinone core structure and its corresponding influence on the cytotoxic activity were investigated by virtually constructing additional 1,4-naphthoquinone compounds (13-36) for which cytotoxic activities were predicted using equations obtained from the previously constructed QSAR models. Interpretation of informative descriptors from QSAR models revealed pertinent knowledge on physicochemical properties governing the cytotoxic activities of tested cancer cell lines. It is anticipated that the QSAR models developed herein could provide guidelines for further development of novel and potent anticancer agents. © 2014 Published by Elsevier Masson SAS.
dc.subject 1,4 naphthoquinone derivative
dc.subject 2 (2 chloro 1,4 dihydro 1,4 dioxonaphthalen 3 ylamino) benzoic acid
dc.subject 2 (3 acetylphenylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 (3,4 dimethoxyphenethylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 (4 acetylphenylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 (n butylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 (n methyl n phenylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 chloro 3 (phenethylamino)naphthalene 1,4 dione
dc.subject 2 chloro 3 (phenylamino)naphthalene 1,4 dione
dc.subject 2 chloro 3 [[4 (phenylamino)phenyl]amino] naphthalene 1,4 dione
dc.subject cytotoxic agent
dc.subject doxorubicin
dc.subject etoposide
dc.subject unclassified drug
dc.subject 1,4 naphthoquinone derivative
dc.subject 2 (2 chloro 1,4 dihydro 1,4 dioxonaphthalen 3 ylamino)benzoic acid
dc.subject 2 (3 acetylphenylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 (3,4 dimethoxyphenethylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 (4 acetylphenylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 (n butylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 (n methyl n phenylamino) 3 chloronaphthalene 1,4 dione
dc.subject 2 chloro 3 (phenethylamino)naphthalene 1,4 dione
dc.subject 2 chloro 3 (phenylamino)naphthalene 1,4 dione
dc.subject 2 chloro 3 (quinolin 8 ylamino)naphthalene 1,4 dione
dc.subject 2 chloro 3 [(4 (phenylamino)phenyl)amino] naphthalene 1,4 dione
dc.subject cytotoxic agent
dc.subject doxorubicin
dc.subject etoposide
dc.subject reactive oxygen metabolite
dc.subject 1,4-naphthoquinone
dc.subject antineoplastic agent
dc.subject naphthoquinone
dc.subject antineoplastic activity
dc.subject antiproliferative activity
dc.subject article
dc.subject carbon nuclear magnetic resonance
dc.subject drug potency
dc.subject drug structure
dc.subject drug synthesis
dc.subject female
dc.subject HepG2 cell line
dc.subject human
dc.subject human cell
dc.subject IC 50
dc.subject lipophilicity
dc.subject nucleophilicity
dc.subject physical chemistry
dc.subject proton nuclear magnetic resonance
dc.subject quantitative structure activity relation
dc.subject stereospecificity
dc.subject substitution reaction
dc.subject A549 cell line
dc.subject alkylation
dc.subject Article
dc.subject base pairing
dc.subject cell viability
dc.subject concentration response
dc.subject controlled study
dc.subject dipole
dc.subject DNA cleavage
dc.subject DNA damage
dc.subject DNA denaturation
dc.subject DNA strand breakage
dc.subject drug conformation
dc.subject drug cytotoxicity
dc.subject electrophilicity
dc.subject embryo
dc.subject enzyme active site
dc.subject IC50
dc.subject oxidation reduction potential
dc.subject validation study
dc.subject cell line
dc.subject cell proliferation
dc.subject chemical structure
dc.subject chemistry
dc.subject dose response
dc.subject drug effects
dc.subject drug screening
dc.subject synthesis
dc.subject Antineoplastic Agents
dc.subject Cell Line
dc.subject Cell Proliferation
dc.subject Dose-Response Relationship, Drug
dc.subject Drug Screening Assays, Antitumor
dc.subject Hep G2 Cells
dc.subject Humans
dc.subject Molecular Structure
dc.subject Naphthoquinones
dc.subject Quantitative Structure-Activity Relationship
dc.title Synthesis, anticancer activity and QSAR study of 1,4-naphthoquinone derivatives
dc.type Article
dc.rights.holder Scopus
dc.identifier.bibliograpycitation European Journal of Medicinal Chemistry. Vol 84, (2014), p.247-263
dc.identifier.doi 10.1016/j.ejmech.2014.07.024


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