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苯甲醛4-苯基-3-硫代氨基脲和2-[(苯基亚甲基)肼基]-4-氧代-3-苯基-5-噻唑烷乙酸的合成、抗弓形虫及抗菌活性

Synthesis, anti-Toxoplasma gondii and antimicrobial activities of benzaldehyde 4-phenyl-3-thiosemicarbazones and 2-[(phenylmethylene)hydrazono]-4-oxo-3-phenyl-5-thiazolidineacetic acids.

作者信息

de Aquino Thiago M, Liesen André P, da Silva Rosa E A, Lima Vânia T, Carvalho Cristiane S, de Faria Antônio R, de Araújo Janete M, de Lima José G, Alves Antonio J, de Melo Edésio J T, Góes Alexandre J S

机构信息

Departamento de Antibióticos, Universidade Federal de Pernambuco, Recife 50670-901, Brazil.

出版信息

Bioorg Med Chem. 2008 Jan 1;16(1):446-56. doi: 10.1016/j.bmc.2007.09.025. Epub 2007 Sep 18.

Abstract

In the present communication, a new series of 2-[(phenylmethylene)hydrazono]-4-oxo-3-phenyl-5-thiazolidineacetic acids (2a-p) have been synthesized. Benzaldehyde 4-phenyl-3-thiosemicarbazones substituted (1a-p) were also obtained and used as intermediate to give the title compounds. All synthesized compounds were characterized by IR, (1)H and (13)C NMR. The in vitro anti-Toxoplasma gondii activity of 1a-p and 2a-p was evaluated. The 4-thiazolidinones (2a-p) were screened for their in vitro antimicrobial activity. For anti-Toxoplasma gondii activity, in general, all compounds promoted decreases in the percentage of infected cells leading to parasite elimination. These effects on intracellular parasites also caused a decrease in the mean number of tachyzoites. In addition, most of the 4-thiazolidinones showed more effective toxicity against intracellular parasites, with IC(50) values ranging from 0.05 to 1 mM. According to results of antimicrobial activity, compounds 2f, 2l, and 2p showed best activity against Mycobacterium luteus, 2c was more active against Mycobacterium tuberculosis, and 2g, 2l, and 2n showed same activity as nistatin (standard drug) against Candida sp. (4249).

摘要

在本论文中,合成了一系列新的2-[(苯基亚甲基)肼基]-4-氧代-3-苯基-5-噻唑烷乙酸(2a-p)。还得到了取代的苯甲醛4-苯基-3-硫代氨基脲(1a-p),并将其用作中间体来合成目标化合物。所有合成的化合物均通过红外光谱、氢核磁共振谱和碳核磁共振谱进行了表征。评估了1a-p和2a-p的体外抗刚地弓形虫活性。对4-噻唑烷酮(2a-p)进行了体外抗菌活性筛选。对于抗刚地弓形虫活性,总体而言,所有化合物都能使感染细胞的百分比降低,从而导致寄生虫被清除。这些对细胞内寄生虫的作用也使速殖子的平均数量减少。此外,大多数4-噻唑烷酮对细胞内寄生虫表现出更有效的毒性,半数抑制浓度(IC50)值范围为0.05至1 mM。根据抗菌活性结果,化合物2f、2l和2p对藤黄微球菌表现出最佳活性,2c对结核分枝杆菌更具活性,2g、2l和2n对念珠菌(4249)表现出与制霉菌素(标准药物)相同的活性。

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