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关于肼和肼酰胺与酚类和呋喃醛缩肼偶联的机械化学研究-具有抗利什曼原虫和抗菌活性的腙。

Mechanochemical Studies on Coupling of Hydrazines and Hydrazine Amides with Phenolic and Furanyl Aldehydes-Hydrazones with Antileishmanial and Antibacterial Activities.

机构信息

CNRS, LCC (Laboratoire de Chimie de Coordination), Université de Toulouse, UPS, INPT, Inserm ERL 1289, 205 Route de Narbonne, BP 44099, CEDEX 4, 31077 Toulouse, France.

Technological and Expert Platform, Chemistry Institute of Toulouse ICT-UAR2599, University of Toulouse, CNRS, 118 Route de Narbonne, CEDEX 9, 31062 Toulouse, France.

出版信息

Molecules. 2023 Jul 7;28(13):5284. doi: 10.3390/molecules28135284.

Abstract

Hydrazone compounds represent an important area of research that includes, among others, synthetic approaches and biological studies. A series of 17 hydrazones have been synthesized by mechanochemical means. The fragments chosen were phenolic and furanyl aldehydes coupled with 12 heterocyclic hydrazines or hydrazinamides. All compounds can be obtained quantitatively when operating on a planetary ball mill and a maximum reaction time of 180 min (6 cycles of 30 min each). Complete spectroscopic analyses of hydrazones revealed eight compounds (-, -, ) present in one geometric form, six compounds (, , -) present in two isomeric forms, and three compounds (, , ) where one rotation is restricted giving rise to two different forms. The single crystal X-ray structure of one of the hydrazones bearing the isoniazid fragment () indicates a crystal lattice consisting of two symmetry-independent molecules with different geometries. All compounds obtained were tested for anti-infectious and antibacterial activities. Four compounds (, , and ) showed good activity against , and one () was very potent against . Most interesting, this series of compounds displayed very promising antileishmanial activity. Among all, compound exhibited an IC value of 0.3 µM on the intramacrophage amastigote in vitro model and a good selectivity index, better than miltefosine, making it worth evaluating in vivo.

摘要

腙类化合物是一个重要的研究领域,其中包括合成方法和生物研究。通过机械化学手段合成了一系列 17 个腙类化合物。选择的片段是酚醛和呋喃醛,与 12 个杂环肼或酰肼偶联。当在行星球磨机上操作,最大反应时间为 180 分钟(每 30 分钟 6 个循环)时,所有化合物都可以定量获得。对腙类化合物的全面光谱分析表明,有 8 个化合物(-,-,-)以一种几何形式存在,6 个化合物(,,-)以两种互变异构形式存在,3 个化合物(,,)中一个旋转受到限制,产生两种不同的形式。具有异烟肼片段的一个腙()的单晶 X 射线结构表明,晶格由两个具有不同几何形状的不对称独立分子组成。所有获得的化合物都进行了抗感染和抗菌活性测试。四种化合物(,,和)对表现出良好的活性,一种()对非常有效。最有趣的是,这一系列化合物表现出非常有前途的抗利什曼原虫活性。在所有化合物中,化合物在体外巨噬细胞内无鞭毛体模型中的 IC 值为 0.3 μM,选择性指数较好,优于米替福新,值得在体内进行评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1854/10343660/69f4d4ed8e4a/molecules-28-05284-g001.jpg

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