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Synthesis of a sugar-based thiosemicarbazone series and structure-activity relationship versus the parasite cysteine proteases rhodesain, cruzain, and Schistosoma mansoni cathepsin B1

Authors :
Thiago Belarmino de Souza
Conor R. Caffrey
Silvane M. F. Murta
Policarpo Ademar Sales Junior
James H. McKerrow
Danielle Kellar
Ricardo José Alves
Filipe Silva Villela
Glaécia Aparecida do Nascimento Pereira
Alvaro J. Romanha
Debalina Ray
Renata Barbosa de Oliveira
Brian M. Suzuki
Rafaela Salgado Ferreira
Nayara Cristina Fonseca
Jair L. Siqueira-Neto
Luana Faria da Cruz
Source :
Antimicrobial agents and chemotherapy. 59(5)
Publication Year :
2014

Abstract

The pressing need for better drugs against Chagas disease, African sleeping sickness, and schistosomiasis motivates the search for inhibitors of cruzain, rhodesain, and Schistosoma mansoni CB1 (SmCB1), the major cysteine proteases from Trypanosoma cruzi , Trypanosoma brucei , and S. mansoni , respectively. Thiosemicarbazones and heterocyclic analogues have been shown to be both antitrypanocidal and inhibitory against parasite cysteine proteases. A series of compounds was synthesized and evaluated against cruzain, rhodesain, and SmCB1 through biochemical assays to determine their potency and structure-activity relationships (SAR). This approach led to the discovery of 6 rhodesain, 4 cruzain, and 5 SmCB1 inhibitors with 50% inhibitory concentrations (IC 50 s) of ≤10 μM. Among the compounds tested, the thiosemicarbazone derivative of peracetylated galactoside (compound 4i) was discovered to be a potent rhodesain inhibitor (IC 50 = 1.2 ± 1.0 μM). The impact of a range of modifications was determined; removal of thiosemicarbazone or its replacement by semicarbazone resulted in virtually inactive compounds, and modifications in the sugar also diminished potency. Compounds were also evaluated in vitro against the parasites T. cruzi , T. brucei , and S. mansoni , revealing active compounds among this series.

Details

ISSN :
10986596
Volume :
59
Issue :
5
Database :
OpenAIRE
Journal :
Antimicrobial agents and chemotherapy
Accession number :
edsair.doi.dedup.....fb47763e32a3e5f26097d7b63ccf91d1