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1.
PLoS One ; 14(9): e0223017, 2019.
Article in English | MEDLINE | ID: mdl-31557229

ABSTRACT

The West Nile Virus (WNV) NS2B-NS3 protease is an attractive target for the development of therapeutics against this arboviral pathogen. In the present investigation, the screening of a small library of fifty-eight synthetic compounds against the NS2-NB3 protease of WNV is described. The following groups of compounds were evaluated: 3-(2-aryl-2-oxoethyl)isobenzofuran-1(3H)-ones; eugenol derivatives bearing 1,2,3-triazolic functionalities; and indan-1,3-diones with 1,2,3-triazolic functionalities. The most promising of these was a eugenol derivative, namely 4-(3-(4-allyl-2-methoxyphenoxy)-propyl)-1-(2-bromobenzyl)-1H-1,2,3-triazole (35), which inhibited the protease with IC50 of 6.86 µmol L-1. Enzyme kinetic assays showed that this derivative of eugenol presents competitive inhibition behaviour. Molecular docking calculations predicted a recognition pattern involving the residues His51 and Ser135, which are members of the catalytic triad of the WNV NS2B-NS3 protease.


Subject(s)
Antiviral Agents/pharmacology , Endopeptidases/metabolism , Protease Inhibitors/pharmacology , Viral Nonstructural Proteins/antagonists & inhibitors , West Nile virus/enzymology , Antiviral Agents/chemistry , Catalytic Domain/drug effects , Drug Discovery , Endopeptidases/chemistry , Eugenol/chemistry , Histidine/chemistry , Histidine/metabolism , Indans/chemistry , Inhibitory Concentration 50 , Molecular Docking Simulation , Protease Inhibitors/chemistry , Serine/chemistry , Serine/metabolism , Structure-Activity Relationship , Viral Nonstructural Proteins/chemistry
2.
Eur J Med Chem ; 149: 98-109, 2018 Apr 10.
Article in English | MEDLINE | ID: mdl-29499491

ABSTRACT

A simple and efficient Knoevenagel procedure for the synthesis of 2-arylidene indan-1,3-diones is herein reported. These compounds were prepared via ZrOCl2·8H2O catalyzed reactions of indan-1,3-dione with several aromatic aldehydes and using water as the solvent. The 2-arylidene indan-1,3-diones were obtained with 53%-95% yield within 10-45 min. The synthesized compounds were evaluated as inhibitors of the NS2B-NS3 protease of West Nile Virus (WNV). It was found that hydroxylated derivatives impaired enzyme activity with varying degrees of effectiveness. The most active hydroxylated derivatives, namely 2-(4-hydroxybenzylidene)-1H-indene-1,3(2H)-dione (14) and 2-(3,4-dihydroxybenzylidene)-1H-indene-1,3(2H)-dione (17), were characterized as noncompetitive enzymes inhibitors, with IC50 values of 11 µmol L-1 and 3 µmol L-1, respectively. Docking and electrostatic potential surfaces investigations provided insight on the possible binding mode of the most active compounds within an allosteric site.


Subject(s)
Protease Inhibitors/chemical synthesis , Viral Nonstructural Proteins/antagonists & inhibitors , West Nile virus/enzymology , Allosteric Site , Catalysis , Hydroxylation , Indans/chemical synthesis , Indans/pharmacology , Inhibitory Concentration 50 , Molecular Docking Simulation , Protease Inhibitors/chemistry , Zirconium
3.
J Nanobiotechnology ; 14(1): 61, 2016 Jul 27.
Article in English | MEDLINE | ID: mdl-27465605

ABSTRACT

BACKGROUND: In recent times, studies have demonstrated that carbon nanotubes are good candidates for use as vehicles for transfection of exogenous material into the cells. However, there are few studies evaluating the behavior of carbon nanotubes as DNA vectors and few of these studies have used multi-walled carbon nanotubes (MWCNTs) or carboxylated MWCNTs. Thus, this study aims to assess the MWCNTs' (carboxylated or not) efficiency in the increase in expression of the tetravalent vaccine candidate (TVC) plasmid vector for dengue virus in vitro using Vero cells, and in vivo, through the intramuscular route, to evaluate the immunological response profile. RESULTS: Multi-walled carbon nanotubes internalized by Vero cells, have been found in the cytoplasm and nucleus associated with the plasmid. However, it was not efficient to increase the messenger ribonucleic acid (mRNA) compared to the pure vaccine candidate associated with Lipofectamine(®) 2000. The in vivo experiments showed that the use of intramuscular injection of the TVC in combination with MWCNTs reduced the immune response compared to pure TVC, in a general way, although an increase was observed in the population of the antibody-producing B cells, as compared to pure TVC. CONCLUSIONS: The results confirm the data found by other authors, which demonstrate the ability of nanotubes to penetrate target cells and reach both the cytoplasm and the cell nucleus. The cytotoxicity values are also in accordance with the literature, which range from 5 to 20 µg/mL. This has been found to be 10 µg/mL in this study. Although the expression levels are higher in cells that receive the pure TVC transfected using Lipofectamine(®) 2000, the nanotubes show an increase in B-cells producing antibodies.


Subject(s)
Antibodies, Viral/biosynthesis , B-Lymphocytes/drug effects , Dengue Vaccines/administration & dosage , Dengue/prevention & control , Nanotubes, Carbon/chemistry , Transfection/methods , Vaccination , Animals , B-Lymphocytes/immunology , B-Lymphocytes/virology , Chlorocebus aethiops , Dengue/immunology , Dengue/virology , Dengue Vaccines/immunology , Dengue Virus/drug effects , Dengue Virus/immunology , Disease Models, Animal , Female , Genetic Vectors/chemistry , Genetic Vectors/metabolism , Humans , Lipids/pharmacology , Lymphocyte Count , Mice , Mice, Inbred BALB C , Plasmids/chemistry , Plasmids/metabolism , Vero Cells
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