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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Design, synthesis, structure-activity relationship and mechanism of action studies of a series of 4-chloro-1-phthalazinyl hydrazones as a potent agent against Leishmania braziliensis
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Design, synthesis, structure-activity relationship and mechanism of action studies of a series of 4-chloro-1-phthalazinyl hydrazones as a potent agent against Leishmania braziliensis

机译:一系列4-氯-1-酞嗪肼作为一种抗Leishmania Braziliensis的强化药物的设计,合成,结构 - 活性关系和机制研究

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With the aim to identify a potential drug candidate to treat cutaneous leishmaniasis, a series of 1-phthalazinyl hydrazones were synthesized and tested against Leishmania braziliensis parasite, one of the main responsible of this disease in the world. A structure-activity relationship permitted to identify two phthalazines containing nitroheterocyclic moiety 31 and 3m as promising new lead compounds. These compounds showed a significant antileishmanial activity against promastigote form of L. braziliensis, with EC50 values in sub-micromolar and nanomolar ranges. The phthalazine 31 also displayed a selective and excellent activity against the clinically relevant intracellular amastigotes form, with a EC50 value in sub-micromolar range (0.59 mu M), without affecting the viability of the host cells. Oxidative stress was identified as the possible mode of action of the most active phthalazine. Considering their significant antileishmanial activity and ease synthesis, the phthalazine containing nitroheterocyclic represents a promising agent against Leishmania braziliensis for the rational design of new leads. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:旨在鉴定潜在的药物候选人来治疗皮肤LeishManiaisis,合成了一系列1-酞嗪肼,并对Leishmania Braziliensis Parasite进行了测试,是世界上这种疾病的主要负责。允许的结构 - 活性关系鉴定含有NitroheLopycyclic部分31和3M的两种邻苯甲酸碱作为有前途的新铅化合物。这些化合物显示出对亚马里氏菌和亚摩罗尔范围中的EC50值的突出孕口形式的显着的抗碱性营养活动。酞嗪31也针对临床相关的细胞内氨基萜胶片表达了一种选择性和优异的活性,其EC50值在亚微摩拉(0.59μm)中,而不影响宿主细胞的活力。鉴定氧化应激作为最活性酞嗪的可能作用方式。考虑到其显着的抗碱性活动和易于合成,含有硝基替酮环的酞菁代表了对Leishmania Braziliensis的有前景的剂,用于新铅的合理设计。 (c)2017年Elsevier Masson SAS。版权所有。

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