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Synthesis, structure characterization, DFT calculations, and computational anticancer activity investigations of 1-phenyl ethanol derivatives

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dc.creator Al-Areqi, Niyazi A.S.
dc.creator Alhag, Sadeq K.
dc.creator AKKOÇ, Senem
dc.creator Senan, Ahmed M.
dc.creator Al-Shuraym, Laila A.
dc.creator MUHAMMED, Muhammed Tılahun
dc.date 2023-12-15T00:00:00Z
dc.date.accessioned 2025-02-25T10:36:46Z
dc.date.available 2025-02-25T10:36:46Z
dc.identifier b44f92c2-d8fb-4adf-8464-8ac7f0df81e9
dc.identifier 10.1016/j.molstruc.2023.136323
dc.identifier https://avesis.sdu.edu.tr/publication/details/b44f92c2-d8fb-4adf-8464-8ac7f0df81e9/oai
dc.identifier.uri http://acikerisim.sdu.edu.tr/xmlui/handle/123456789/101045
dc.description 1-Phenyl ethanol derivatives are well-known classes of drug molecules that play an important role as effective substitute analogs to anticancer and antiviral agents. In this work, phenylacetylene was selected as a simple alkyne in the presence of iron (II) phthalocyanine with NaBH4 as a catalyst. This reaction has been proven that it is a significantly efficient catalyzed conversion of terminal and internal alkynes to 1-phenyl ethanol derivatives as secondary alcohols followed by the addition and elimination mechanism. However, such drug design by compiling the redox reaction and its sequence essentially requires exact stoichiometry of iron phthalocyanine to alkynes. The products were characterized using flash column chromatography with an eluent ratio of PE: EA (5: 1 / V: V), gas chromatography, 1H, and 13C NMR spectroscopy. The potential of the synthesized compounds to bind to protein kinase B was investigated through molecular docking to dig out their probable anticancer activity. Compound 7 (1-(4-bromophenyl) ethan-1-ol) exhibited the highest binding potential. However, the binding potential of all the compounds was less than the standard parent compound. In addition, the density functional theory (DFT) studies of the compounds were also applied which revealed that compound 1 might have the highest chemical stability.
dc.language eng
dc.rights info:eu-repo/semantics/closedAccess
dc.title Synthesis, structure characterization, DFT calculations, and computational anticancer activity investigations of 1-phenyl ethanol derivatives
dc.type info:eu-repo/semantics/article


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