Structural design, synthesis and pharmacological evaluation of thiazoles against Trypanosoma cruzi

被引:50
作者
de Oliveira Filho, Gevanio Bezerra [1 ,2 ]
de Oliveira Cardoso, Marcos Verissimo [3 ]
Pontes Espindola, Jose Wanderlan [1 ]
Oliveira e Silva, Dayane Albuquerque [1 ]
Ferreira, Rafaela Salgado [4 ]
Coelho, Pollyanne Lacerda [4 ]
dos Anjos, Pamela Silva [5 ]
Santos, Emanuelle de Souza [5 ]
Meira, Cassio Santana [5 ]
Magalhaes Moreira, Diogo Rodrigo [5 ]
Pereira Soares, Milena Botelho [5 ,6 ]
Lima Leite, Ana Cristina [1 ]
机构
[1] Univ Fed Pernambuco UFPE, Ctr Ciencias Saude, Dept Ciencias Farmaceut, Lab Planejamento Quim Med LpQM, BR-50740520 Recife, PE, Brazil
[2] COHAB, Fac Integracao Sertao FIS, Rua Joao Luiz de Melo 2110, Serra Talhada, PE, Brazil
[3] Univ Pernambuco, Colegiado Nutr, BR-56328903 Petrolina, PE, Brazil
[4] Univ Fed Minas Gerais, Dept Bioquim & Imunol, BR-31270901 Belo Horizonte, MG, Brazil
[5] Fundacao Oswaldo Cruz, Inst Goncalo Moniz, BR-40296710 Salvador, BA, Brazil
[6] Hosp Sao Rafael, Ctr Biotecnol & Terapia Celular, Salvador, BA, Brazil
关键词
Chagas disease; Thiosemicarbazones; Thiazoles; Trypanosome cruzi; CHAGAS-DISEASE; IN-VITRO; BIOLOGICAL EVALUATION; DRUG DISCOVERY; INHIBITORS; THIOSEMICARBAZONES; POTENT; IDENTIFICATION; DERIVATIVES; EFFICACY;
D O I
10.1016/j.ejmech.2017.09.047
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Chagas disease is one of the most significant health problems in the American continent. benznidazole (BDZ) and nifurtimox (NFX) are the only drugs approved for treatment and exhibit strong side effects and ineffectiveness in the chronic stage, besides different susceptibility among T. cruzi DTUs (Discrete Typing Units). Therefore, new drugs to treat this disease are necessary. Thiazole compounds have been described as potent trypanocidal agents. Here we report the structural planning, synthesis and anti-T cruzi evaluation of a new series of 1,3-thiazoles (7-28), which were designed by placing this heterocycle instead of thiazolidin-4-one ring. The synthesis was conducted in an ultrasonic bath with 2-propanol as solvent at room temperature. By varying substituents attached to the phenyl and thiazole rings, substituents were observed to retain, enhance or greatly increase their anti-T. cruzi activity. In some cases, methyl at position 5 of the thiazole (compounds 9, 12 and 23) increased trypanocidal property. The exchange of phenyl for pyridinyl heterocycle resulted in increased activity, giving rise to the most potent compound against the trypomasigote form (14, IC50trypo = 0.37 mu M). Importantly, these new thiazoles were toxic for trypomastigotes without affecting macrophages and cardiomyoblast viability. The compounds were also evaluated against cruzain, and five of the most active compounds against trypomastigotes (7, 9, 12, 16 and 23) inhibited more than 70% of enzymatic activity at 10 mu M, among which compound 7 had an IC50 in the submicromolar range, suggesting a possible mechanism of action. In addition, examination of T. cruzi cell death showed that compound 14 induces apoptosis. We also examined the activity against intracellular parasites, revealing that compound 14 inhibited T cruzi infection with potency similar to benznidazole. The antiparasitic effect of 14 and benznidazole in combination was also investigated against trypomastigotes and revealed that they have synergistic effects, showing a promising profile for drug combination. Finally, in mice acutely-infected with T cruzi, 14 treatment significanty reduced the blood parasitaemia and had a protective effect on mortality. In conclusion, we report the identification of compounds (7), (12), (15), (23) and (26) with similar trypanocidal activity of benznidazole; compounds (9) and (21) as trypanocidal agents equipotent with BDZ, and compound 14 with potency 28 times better than the reference drug without affecting macrophages and cardiomyoblast viability. Mechanistically, the compounds inhibit cruzain, and 14 induces T. cruzi cell death by an apoptotic process, being considered a good starting point for the development of new anti-Chagas drug candidates. (C) 2017 Elsevier Masson SAS. All rights reserved.
引用
收藏
页码:346 / 361
页数:16
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