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Evaluation of Novel Chalcone-Thiosemicarbazones Derivatives as Potential Anti-Leishmania amazonensis Agents and Its HSA Binding Studies

机译:新型查尔酮-硫代氨基脲化合物作为潜在抗亚马逊利什曼原虫药的评价及其HSA结合研究

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摘要

A series of seven chalcone-thiosemicarbazones ( – ) were synthesized and evaluated as potential new drugs (anti-leishmanial effect). Although four of the chalcone-thiosemicarbazones are already known, none of them or any compound in this class has been previously investigated for their effects on parasites of the genus. The compounds were prepared in satisfactory yields (40–75%) and these compounds were evaluated against promastigotes, axenic amastigotes and intracellular amastigotes of after 48 h of culture. The half maximal inhibitory concentration (IC ) values of the intracellular amastigotes were determined to be in the range of 3.40 to 5.95 µM for all compounds assayed. The selectivity index showed value of 15.05 for , whereas pentamidine (reference drug) was more toxic in our model (SI = 2.32). Furthermore, to understand the preliminary relationship between the anti-leishmanial activity of the chalcone-thiosemicarbazones, their electronic (σ), steric (MR) and lipophilicity (π) properties were correlated, and the results indicated that moieties with electronic withdrawing effects increase the anti-leishmanial activity. The preliminary pharmacokinetic evaluation of one of the most active compound ( ) was studied via interaction to human serum albumin (HSA) using multiple spectroscopic techniques combined with molecular docking. The results of antiparasitic effects against revealed the chalcone-thiosemicarbazone class to be novel prototypes for drug development against leishmaniasis.
机译:合成了一系列七个查耳酮-硫代半氨基甲酮(-),并被评估为潜在的新药(抗leishmanial效应)。尽管查尔酮-硫代半咔唑酮中有四种是已知的,但至今尚未研究它们中的任何一种或此类化合物对它们的寄生虫的作用。制备这些化合物的产率令人满意(40-75%),并在培养48小时后对这些化合物进行了前鞭毛体,轴突性线虫和细胞内线虫的评估。对于所有测定的化合物,确定的细胞内变形虫的半数最大抑制浓度(IC)值在3.40至5.95 µM的范围内。的选择性指数显示为,该值为15.05,而喷他idine(参考药物)在我们的模型中更具毒性(SI = 2.32)。此外,为了了解查尔酮-硫代半氨基甲酮的抗利什曼活性与它们的电子(σ),空间(MR)和亲脂性(π)性质之间的初步关系,结果表明,具有电子撤离作用的基团会增加抗利什曼活性。使用多种光谱技术结合分子对接技术,通过与人血清白蛋白(HSA)相互作用,研究了活性最高的化合物()之一的初步药代动力学评估。针对的抗寄生虫作用的结果表明,查耳酮-硫半脲类是抗利什曼病的药物开发的新原型。

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