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1.
Mem Inst Oswaldo Cruz ; 109(5): 546-52, 2014 Aug.
Article in English | MEDLINE | ID: mdl-25099332

ABSTRACT

Due to the recent advances of atovaquone, a naphthoquinone, through clinical trials as treatment for malarial infection, 19 quinone derivatives with previously reported structures were also evaluated for blood schizonticide activity against the malaria parasite Plasmodium falciparum. These compounds include 2-hydroxy-3-methylamino naphthoquinones (2-9), lapachol (10), nor-lapachol (11), iso-lapachol (12), phthiocol (13) and phenazines (12-20). Their cytotoxicities were also evaluated against human hepatoma and normal monkey kidney cell lines. Compounds 2 and 5 showed the highest activity against P. falciparum chloroquine-resistant blood-stage parasites (clone W2), indicated by their low inhibitory concentration for 50% (IC50) of parasite growth. The therapeutic potential of the active compounds was evaluated according to the selectivity index, which is a ratio of the cytotoxicity minimum lethal dose which eliminates 50% of cells and the in vitro IC50. Naphthoquinones 2 and 5, with activities similar to the reference antimalarial chloroquine, were also active against malaria in mice and suppressed parasitaemia by more than 60% in contrast to compound 11 which was inactive. Based on their in vitro and in vivo activities, compounds 2 and 5 are considered promising molecules for antimalarial treatment and warrant further study.


Subject(s)
Antimalarials/pharmacology , Malaria/drug therapy , Naphthoquinones/pharmacology , Phenazines/pharmacology , Plasmodium berghei/drug effects , Plasmodium falciparum/drug effects , Animals , Antimalarials/chemistry , Cell Line , Disease Models, Animal , Humans , Inhibitory Concentration 50 , Malaria/parasitology , Mice , Naphthoquinones/chemistry , Parasitemia/drug therapy , Parasitic Sensitivity Tests , Phenazines/chemistry
2.
Bioorg Med Chem ; 22(5): 1608-19, 2014 Mar 01.
Article in English | MEDLINE | ID: mdl-24530030

ABSTRACT

1,2,3-Triazole-, arylamino- and thio-substituted naphthoquinones (24, 8, and 2 representatives, respectively) were synthesized in moderate yields and evaluated against several human cancer cell lines (blood, ovarian, breast, central nervous system, colon, and prostate cancers and melanoma), showing, for some of them, IC50 values below 2 µM. The cytotoxic potential of the tested naphthoquinones was also assayed on non-tumor cells such as human peripheral blood mononucluear cells (PBMC) and two murine fibroblast lines (L929 and V79 cells). α-Lapachone- and nor-α-lapachone-based 1,2,3-triazoles and arylamino-substituted naphthoquinones showed potent cytotoxicity against different cancer cell lines. The compounds may represent promising new lead derivatives for anticancer drug development. The electrochemical properties of selected compounds were evaluated in an attempt to correlate them with antitumor activity.


Subject(s)
Naphthoquinones/chemistry , Triazoles/chemistry , Cell Proliferation , Click Chemistry , Humans , Models, Molecular , Molecular Structure , Structure-Activity Relationship
3.
Eur J Med Chem ; 63: 523-30, 2013 May.
Article in English | MEDLINE | ID: mdl-23535320

ABSTRACT

Continuing our screening program for novel anti-parasite compounds, we synthesized seven 1,4-naphthoquinones coupled to 1,2,3-triazoles, five nor-ß-lapachone-based 1,2,3-triazoles and ten α-lapachone-based 1,2,3-triazoles. These and other naphthoquinonoid compounds were evaluated for their activity against promastigote forms of antimony-sensitive and -resistant strains of Leishmania infantum (syn. Leishmania chagasi) and Leishmania amazonensis. The toxicity of these compounds to mammalian cells was also examined. The substances were more potent than an antimonial drug, with IC50 values ranging from 1.0 to 50.7 µM. Nor-α-lapachone derivatives showed the highest antileishmanial activity, with selectivity indices in the range of 10-15. These compounds emerged as important leads for further investigation as antileishmanial agents. Additionally, one of these compounds exhibited cross-resistance in Sb-resistant Leishmania and could provide a molecular tool for investigating the multidrug resistance mechanisms in Leishmania parasites.


Subject(s)
Antiprotozoal Agents/chemical synthesis , Cycloaddition Reaction/methods , Naphthoquinones/chemical synthesis , Triazoles/chemical synthesis , Alkynes/chemistry , Animals , Antimony/pharmacology , Antiprotozoal Agents/chemistry , Antiprotozoal Agents/pharmacology , Azides/chemistry , Catalysis , Cell Survival/drug effects , Cells, Cultured , Copper/chemistry , Drug Resistance/drug effects , Leishmania/drug effects , Leishmania infantum/drug effects , Macrophages, Peritoneal/cytology , Macrophages, Peritoneal/drug effects , Mice , Naphthoquinones/chemistry , Naphthoquinones/pharmacology , Parasitic Sensitivity Tests , Species Specificity , Triazoles/chemistry , Triazoles/pharmacology
4.
Eur J Med Chem ; 52: 304-12, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22483633

ABSTRACT

Five 2-hydroxy-3-substituted-aminomethyl naphthoquinones, nine 1,2,3-triazolic para-naphthoquinones, five nor-ß-lapachone-based 1,2,3-triazoles, and several other naphthoquinonoid compounds were synthesized and evaluated against the infective bloodstream form of Trypanosoma cruzi, the etiological agent of Chagas disease, continuing our screening program for new trypanocidal compounds. Among all the substances, 16-18, 23, 25-29 and 30-33 were herein described for the first time and fifteen substances were identified as more potent than the standard drug benznidazole, with IC(50)/24h values in the range of 10.9-101.5 µM. Compounds 14 and 19 with Selectivity Index of 18.9 and 6.1 are important structures for further studies.


Subject(s)
Chemistry Techniques, Synthetic , Click Chemistry , Drug Discovery , Naphthoquinones/chemical synthesis , Naphthoquinones/pharmacology , Triazoles/chemistry , Trypanosoma cruzi/drug effects , Animals , Mice , Naphthoquinones/chemistry , Naphthoquinones/toxicity , Trypanocidal Agents/chemical synthesis , Trypanocidal Agents/chemistry , Trypanocidal Agents/pharmacology , Trypanocidal Agents/toxicity
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