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1.
Rev Bras Parasitol Vet ; 29(2): e019819, 2020.
Article in English | MEDLINE | ID: mdl-32609242

ABSTRACT

We investigated the in vitro acaricide activity of the methanolic extract (ME) and alkaloid-rich fraction (AF) of Prosopis juliflora on Rhipicephalus microplus and correlated this effect with acetylcholinesterase (AChE) inhibition. The acaricide activity was evaluated using adult and larval immersion tests. Also, we studied the possible interaction mechanism of the major alkaloids present in this fraction via molecular docking at the active site of R. microplus AChE1 (RmAChE1). Higher reproductive inhibitory activity of the AF was recorded, with effective concentration (EC50) four times lower than that of the ME (31.6 versus 121 mg/mL). The AF caused mortality of tick larvae, with lethal concentration 50% (LC50) of 13.8 mg/mL. Both ME and AF were seen to have anticholinesterase activity on AChE of R. microplus larvae, while AF was more active with half-maximal inhibitory concentration (IC50) of 0.041 mg/mL. The LC-MS/MS analyses on the AF led to identification of three alkaloids: prosopine (1), juliprosinine (2) and juliprosopine (3). The molecular docking studies revealed that these alkaloids had interactions at the active site of the RmAChE1, mainly relating to hydrogen bonds and cation-pi interactions. We concluded that the alkaloids of P. juliflora showed acaricide activity on R. microplus and acted through an anticholinesterase mechanism.


Subject(s)
Alkaloids , Cholinesterases , Plant Extracts , Prosopis , Rhipicephalus , Acaricides/pharmacology , Alkaloids/pharmacology , Animals , Cholinesterases/metabolism , Chromatography, Liquid , Enzyme Activation/drug effects , Larva , Molecular Docking Simulation , Plant Extracts/pharmacology , Prosopis/chemistry , Rhipicephalus/drug effects , Rhipicephalus/enzymology , Tandem Mass Spectrometry
2.
Comput Biol Chem ; 83: 107129, 2019 Dec.
Article in English | MEDLINE | ID: mdl-31606587

ABSTRACT

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.


Subject(s)
Acetylcholinesterase/metabolism , Alkaloids/pharmacology , Cholinesterase Inhibitors/pharmacology , Models, Molecular , Ocotea/chemistry , Plant Extracts/pharmacology , Alkaloids/chemistry , Alkaloids/isolation & purification , Animals , Cholinesterase Inhibitors/chemistry , Cholinesterase Inhibitors/isolation & purification , Chromatography, High Pressure Liquid , Electrophorus , Molecular Structure , Plant Extracts/chemistry , Plant Extracts/isolation & purification , Plant Leaves/chemistry , Tandem Mass Spectrometry
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