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1.
Molecules ; 28(14)2023 Jul 20.
Article in English | MEDLINE | ID: mdl-37513429

ABSTRACT

From Eleutherine plicata, naphthoquinones, isoeleutherine, and eleutherol were isolated, and previous studies have reported the antioxidant activity of these metabolites. The present work evaluated the role of oxidative changes in mice infected with Plasmodium berghei and treated with E. plicata extract, fraction, and isolated compounds, as well as to verify possible oxidative changes induced by these treatments. E. plicata extracts were prepared from powder from the bulbs, which were submitted to maceration with ethanol, yielding the extract (EEEp), which was fractionated under reflux, and the dichloromethane fraction (FDMEp) was submitted for further fractionation, leading to the isolation of isoeleutherine, eleutherine, and eleutherol. The antimalarial activity was examined using the suppressive test, evaluating the following parameters of oxidative stress: trolox equivalent antioxidant capacity (TEAC), thiobarbituric acid reactive substances (TBARS), and reduced glutathione (GSH). Furthermore, the molecular docking of naphthoquinones, eleutherol, eleutherine, and isoeleutherine interactions with antioxidant defense enzymes was investigated, which was favorable for the formation of the receptor-ligand complex, according to the re-rank score values. Eleutherine and isoeleutherine are the ones with the lowest binding energy for catalase (CAT), glutathione reductase (GR), and glutathione peroxidase (GPx1), showing themselves as possible targets of these molecules in the involvement of redox balance. Data from the present study showed that treatments with E. plicata stimulated an increase in antioxidant capacity and a reduction in oxidative stress in mice infected with P. berghei, with naphthoquinones being responsible for reducing oxidative changes and disease severity.


Subject(s)
Antioxidants , Naphthoquinones , Mice , Animals , Antioxidants/pharmacology , Antioxidants/metabolism , Molecular Docking Simulation , Oxidative Stress , Naphthoquinones/chemistry , Catalase/metabolism , Plant Extracts/pharmacology , Plant Extracts/chemistry , Glutathione/metabolism , Glutathione Peroxidase/metabolism , Thiobarbituric Acid Reactive Substances/metabolism , Superoxide Dismutase/metabolism
2.
Molecules ; 24(4)2019 Feb 21.
Article in English | MEDLINE | ID: mdl-30795632

ABSTRACT

Chemotherapy is limited in the treatment of leishmaniasis due to the toxic effects of drugs, low efficacy of alternative treatments, and resistance of the parasite. This work assesses the in vitro activity of flavopereirine on promastigote cultures of Leishmania amazonensis. In addition, an in silico evaluation of the physicochemical characteristics of this alkaloid is performed. The extract and fractions were characterized by thin-layer chromatography and HPLC-DAD, yielding an alkaloid identified by NMR. The antileishmanial activity and cytotoxicity were assayed by cell viability test (MTT). The theoretical molecular properties were calculated on the Molinspiration website. The fractionation made it possible to isolate a beta-carboline alkaloid (flavopereirine) in the alkaloid fraction. Moreover, it led to obtaining a fraction with greater antileishmanial activity, since flavopereirine is very active. Regarding the exposure time, a greater inhibitory effect of flavopereirine was observed at 24 h and 72 h (IC50 of 0.23 and 0.15 µg/mL, respectively). The extract, fractions, and flavopereirine presented low toxicity, with high selectivity for the alkaloid. Furthermore, flavopereirine showed no violation of Lipinski's rule of five, showing even better results than the known inhibitor of oligopeptidase B, antipain, with three violations. Flavopereirine also interacted with residue Tyr-499 of oligopeptidase B during the molecular dynamics simulations, giving a few insights of a possible favorable mechanism of interaction and a possible inhibitory pathway. Flavopereirine proved to be a promising molecule for its antileishmanial activity.


Subject(s)
Antiprotozoal Agents/pharmacology , Apocynaceae/chemistry , Carbolines/pharmacology , Indole Alkaloids/isolation & purification , Leishmania mexicana/drug effects , Protozoan Proteins/antagonists & inhibitors , Serine Endopeptidases/chemistry , Antipain/chemistry , Antipain/pharmacology , Antiprotozoal Agents/chemistry , Antiprotozoal Agents/isolation & purification , Carbolines/chemistry , Carbolines/isolation & purification , Cell Survival/drug effects , Humans , Indole Alkaloids/chemistry , Indole Alkaloids/classification , Inhibitory Concentration 50 , Leishmania mexicana/growth & development , Life Cycle Stages/drug effects , Life Cycle Stages/physiology , Molecular Docking Simulation , Molecular Dynamics Simulation , Plant Bark/chemistry , Plant Extracts/chemistry , Protozoan Proteins/chemistry , THP-1 Cells
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