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New oxidovanadium(IV) N-acylhydrazone complexes: Promising antileishmanial and antitrypanosomal agents

机译:新的氧化钒(IV)N-酰基hydr配合物:有望的抗疟药和抗锥虫药

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摘要

Searching for new promising metal-based hits against Trypanosoma cruzi and Leishmania parasites, two related oxidovanadium(IV) N-acylhydrazone complexes, [VIVO(LASSBio1064-2H)(H2O)], 1, and [V IVO(LASSBio1064-2H)(phen)]·(H2O), 2, where LASSBio1064 = (E)-N'-(2-hydroxybenzylidene-4-chlorobenzohydrazide and phen = 1,10-phenanthroline, were synthesized and characterized in the solid state and in solution by elemental analysis, conductimetric measurements and ESI-MS, FTIR, EPR and 51V NMR spectroscopies and were evaluated on T. cruzi and Leishmania major. In addition, their unspecific cytotoxicity was tested against murine macrophages. Furthermore, to provide insight into the possible mechanism of its antiparasitic action, [VO(LASSbio1064-2H)(phen)].(H2O) was tested for its DNA interaction ability on plasmid DNA by atomic force microscopy (AFM) and on CT DNA by using DNA viscosity measurements and fluorescence spectroscopy. Both complexes were active in vitro against the epimastigote form of T. cruzi (Tulahuen 2 strain) showing IC50 values of the same order or significantly lower than that of the reference trypanosomicidal drug Nifurtimox. However, only the mixed-ligand oxidovanadium(IV) complex 2, which includes phen in its coordination sphere, showed activity on L. major promastigotes with a IC50 value of 22.1 ± 0.6 μM. The compounds show low toxicity on mammalian cells (IC50 100 μM). DNA interaction studies showed that the mixed-ligand complex is able to interact with this biomolecule probably through an intercalative mode, pointing out at DNA as a potential target in the parasite. The results suggest that [VIVO(LASSBio1064-2H)(phen)]·(H2O) may be a promising compound for further drug development stages.
机译:搜寻针对克鲁斯锥虫和利什曼原虫寄生虫,两种相关的氧化钒(IV)N-酰基hydr配合物[VIVO(LASSBio1064-2H)(H2O)],1和[V IVO(LASSBio1064-2H)( phen)]((H2O),2,其中LASSBio1064 =(E)-N'-(2-羟基亚苄基-4-氯苯并肼和phen = 1,10-菲咯啉,并在固态和溶液中通过元素进行表征分析,电导测量和ESI-MS,FTIR,EPR和51V NMR光谱,并在克鲁氏T和利什曼原虫中进行了评估,此外,还测试了它们对鼠巨噬细胞的非特异性细胞毒性,并进一步了解了其可能的机制。通过原子力显微镜(AFM)和DNA粘度测量和荧光光谱法测试了[VO(LASSbio1064-2H)(phen)]。(H2O)在质粒DNA和CT DNA上的DNA相互作用能力。在体外对副鞭毛体形式有效f。cruzi。T. cruzi(Tulahuen 2株)的IC50值等于或显着低于参比锥虫杀菌药物Nifurtimox的IC50值。但是,只有在配体中包含phen的混合配体氧化钒(IV)配合物2表现出对主要前鞭毛体的活性,IC50值为22.1±0.6μM。该化合物对哺乳动物细胞毒性低(IC50> 100μM)。 DNA相互作用研究表明,混合配体复合物很可能通过插入模式与该生物分子相互作用,指出DNA是寄生虫中的潜在靶标。结果表明[VIVO(LASSBio1064-2H)(phen)]·(H2O)可能是进一步开发药物的有前途的化合物。

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