Acetylcholinesterase inhibitory activities and bioguided fractionation of the Ocotea percoriacea extracts: HPLC-DAD-MS/MS characterization and molecular modeling of their alkaloids in the active fraction

被引:16
作者
Almeida Cassiano, Dayse Santos [1 ]
Alves Reis, Isabella Mary [1 ]
Estrela, Isabela de Oliveira [3 ]
de Freitas, Humberto Fonseca [3 ]
da Rocha Pita, Samuel Silva [3 ]
David, Jorge Mauricio [2 ]
Branco, Alexsandro [1 ]
机构
[1] State Univ Feira de Santana UEFS, Hlth Dept, Lab Phytochem, Feira De Santana, BA, Brazil
[2] Fed Univ Bahia UFBA, Chem Inst, Salvador, BA, Brazil
[3] Fed Univ Bahia UFBA, Pharm Coll, Lab Bioinformat & Mol Modeling LaBiMM, Salvador, BA, Brazil
关键词
Lauraceae; Ocotea percoriaceae; Anticholinesterase activity; HPLC-ESI-MSn; Molecular modeling; TANDEM MASS-SPECTROMETRY; PROTEIN-LIGAND DOCKING; BENZYLISOQUINOLINE ALKALOIDS; ISOQUINOLINE ALKALOIDS; LIQUID-CHROMATOGRAPHY; APORPHINE ALKALOIDS; GENETIC ALGORITHM; SCORING FUNCTIONS; NELUMBO-NUCIFERA; IN-VITRO;
D O I
10.1016/j.compbiolchem.2019.107129
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
In vitro acetylcholinesterase activities of the hexane, dichloromethane, ethyl acetate, n-butanol and aqueous extracts of leaves of Ocotea percoriacea Kosterm. (Lauraceae) were evaluated. The bioguided fractionation of the most active extract (dichloromethane) using silica gel open-column chromatography led to an active alkaloidal fraction composed of isocorydine N-oxide, isocorydine N-oxide derivative, palmatine, roemerine and roemerine N-Oxide. The, identification of the chemical structure of these compounds was carried out with high-performance liquid chromatography coupled to electrospray ionization multiple-stage mass spectrometry (HPLC-ESI-MS/MS). Aiming to understand their inhibitory activities, these alkaloids were docked into a 3D model of Electrophorus electricus Acetylcholinesterase (EelAChE) built in the Modeller 9.18 employing homology modeling approach. The results suggest that the alkaloids had the same binding mode and, possibly, the inhibition mechanism of classic drugs (ex. tacrine and donepezil). The structural difference of these compounds opens a new opportunity for the optimization of leading compounds.
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页数:7
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