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1.
Pharmaceuticals (Basel) ; 15(1)2022 Jan 15.
Article in English | MEDLINE | ID: mdl-35056159

ABSTRACT

Four isobutyric acids (two nitro and two acetamido derivatives) were prepared in two steps and characterized using spectral analysis. The mRNA concentrations of PPARγ and GLUT-4 (two proteins documented as key diabetes targets) were increased by 3T3-L1 adipocytes treated with compounds 1-4, but an absence of in vitro expression of PPARα was observed. Docking and molecular dynamics studies revealed the plausible interaction between the synthesized compounds and PPARγ. In vivo studies established that compounds 1-4 have antihyperglycemic modes of action associated with insulin sensitization. Nitrocompound 2 was the most promising of the series, being orally active, and one of multiple modes of action could be selective PPARγ modulation due to its extra anchoring with Gln-286. In conclusion, we demonstrated that nitrocompound 2 showed strong in vitro and in vivo effects and can be considered as an experimental antidiabetic candidate.

2.
Eur J Med Chem ; 44(7): 2975-84, 2009 Jul.
Article in English | MEDLINE | ID: mdl-19208443

ABSTRACT

Two new series of imidazole derivatives (acetamides: 1-8 and sulfonamides: 9-15) were synthesized using a short synthetic route. Compound 1 as well as the intermediate 16g were characterized by X-ray crystallography. Imidazole derivatives 1-15 were tested in vitro against three unicellular parasites (Giardia intestinalis, Trichomonas vaginalis and Entamoeba histolytica) in comparison with benznidazole (Bzn) and metronidazole. Compound 1 [N-benzyl-2-(2-methyl-4-nitro-1H-imidazol-1-yl)acetamide] was 2 times more active than Bzn against T. vaginalis and G. intestinalis and it was as active as Bzn against E. histolytica. Sulfonamides showed selective toxicity against E. histolytica over the other parasites. Toxicity assay showed that all compounds are non-cytotoxic against MDCK cell line. The results revealed that compounds 1-15 have antiparasitic bioactivity in the micromolar range against the parasites tested, and could be considered as benznidazole bioisosteres.


Subject(s)
Antiprotozoal Agents/chemical synthesis , Antiprotozoal Agents/pharmacology , Entamoeba histolytica/drug effects , Giardia lamblia/drug effects , Imidazoles/chemical synthesis , Imidazoles/pharmacology , Trichomonas vaginalis/drug effects , Animals , Antiprotozoal Agents/chemistry , Cell Line , Computational Biology , Crystallography, X-Ray , Drug Design , Drug Evaluation, Preclinical , Imidazoles/chemistry , Nitroimidazoles/chemistry
3.
Bioorg Med Chem Lett ; 18(11): 3147-51, 2008 Jun 01.
Article in English | MEDLINE | ID: mdl-18486471

ABSTRACT

A series of ten novel hybrids from benzimidazole and pentamidine were prepared using a short synthetic route. Each compound was tested in vitro against the protozoa Trichomonas vaginalis, Giardia lamblia, Entamoeba histolytica, Leishmania mexicana, and Plasmodium berghei, in comparison with pentamidine and metronidazole. Some analogues showed high bioactivity in the low micromolar range (IC(50)<1 microM) against the first four protozoa, which make them significantly more potent than either standard. 1,5-bis[4-(5-methoxy-1H-benzimidazole-2-yl)phenoxy]pentane (2) was 3- and 9-fold more potent againstG. lamblia than metronidazole and pentamidine, respectively. This compound was 23-, 108-, and 13-fold more active than pentamidine against T. vaginalis, E. histolytica and L. mexicana, respectively. Studying further structure-activity relationships through the use of bioisosteric substitution in these hybrids should provide new leads against protozoal diseases.


Subject(s)
Antiprotozoal Agents/chemical synthesis , Antiprotozoal Agents/pharmacology , Benzimidazoles/chemical synthesis , Benzimidazoles/pharmacology , Drug Design , Pentamidine/chemical synthesis , Pentamidine/pharmacology , Animals , Antiprotozoal Agents/chemistry , Benzimidazoles/chemistry , Entamoeba histolytica/drug effects , Giardia lamblia/drug effects , Inhibitory Concentration 50 , Leishmania mexicana/drug effects , Metronidazole/pharmacology , Molecular Structure , Parasitic Sensitivity Tests , Pentamidine/chemistry , Plasmodium berghei/drug effects , Structure-Activity Relationship , Trichomonas vaginalis/drug effects
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