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Design of copper DNA intercalators with leishmanicidal activity

机译:具有杀菌作用的铜DNA嵌入剂的设计

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摘要

The complexes [Cu(dppz)(NO_3)]NO_3 (1) [Cu(dpz)_2(NO_3)]NO_3 (2), [Cu(dpq)(NO_3)]NO_3 (3), and [Cu(dpq)_2(NO_3)]NO_3 (4) were synthesized and characterized by elemental analysis, FAB-mass spectrometry, EPR, UV, and IR spectroscopies, and molar conductivity. DNA interaction studies showed that intercalation is an important way of interacting with DNA for these complexes. The biological activity of these copper complexes was evaluated on Leishmania braziliensis promastigotes, and the results showed leishmanicidal activity. preliminary ultrastructural studies with the most active complex (2) at 1 h revealed parasite swelling and binucleated cells. This finding suggests that the leishmanicidal activity of the copper complexes could be associated with their interaction with the parasitic DNA.
机译:配合物[Cu(dppz)(NO_3)] NO_3(1)[Cu(dpz)_2(NO_3)] NO_3(2),[Cu(dpq)(NO_3)] NO_3(3)和[Cu(dpq)合成了_2(NO_3)] NO_3(4)并通过元素分析,FAB质谱,EPR,UV和IR光谱以及摩尔电导率对其进行了表征。 DNA相互作用研究表明,嵌入是这些复合物与DNA相互作用的重要方式。对这些铜配合物在巴西利什曼原虫前鞭毛体上的生物活性进行了评估,结果显示了利什曼原虫活性。初步的超微结构研究在1小时时发现了最活跃的复合物(2),显示出寄生虫肿胀和双核细胞。这一发现表明,铜配合物的杀菌活性可能与其与寄生DNA的相互作用有关。

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