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基于2-甲基-5-硝基-6-苯基烟酰肼的腙类化合物的合成、结构及生物活性

Synthesis, Structure and Biological Activity of 2-Methyl-5-nitro-6-phenylnicotinohydrazide-Based Hydrazones.

作者信息

Nurkenov Oralgazy A, Mendibayeva Anel Z, Fazylov Serik D, Seilkhanov Tulegen M, Kabieva Saule K, Syzdykov Ardak K, Kulakov Ilya I, Iashnikov Aleksandr V, Vasilchenko Alexey S, Alkhimova Larisa E, Kulakov Ivan V

机构信息

Institute of Organic Synthesis and Coal Chemistry of the Republic of Kazakhstan, 1 Alikhanov St., Karaganda 100008, Kazakhstan.

Department of Chemical Technology and Ecology, Karaganda Industrial University, 30 Republic Ave., Temirtau 101400, Kazakhstan.

出版信息

Molecules. 2025 Jan 4;30(1):169. doi: 10.3390/molecules30010169.

Abstract

The synthetic availability and wide range of biological activity of hydrazides and hydrazones make them attractive subjects for investigation. In this study, we focused on synthesis of 2-methyl-5-nitro-6-phenylnicotinohydrazide-based hydrazones derived from the corresponding substituted aldehydes. The structure of the obtained compounds was studied using NMR spectroscopy and DFT calculations. After repeated recrystallization, all the synthesized compounds remained as mixtures of isomers. As a result of a detailed analysis, we found that the duplication and bifurcation of signals in the H NMR spectra for some atoms is a consequence of the existence of four isomers, namely -I, -II, -I and -II. Duplicate proton signals with a chemical shift difference of 0.1-0.2 ppm and in a ratio of about 2:1 were noticed in the experimental data. By modeling the structures of individual configurations and conformations, Gibbs free energy values were obtained, which allowed us to estimate the approximate content of rotamers for the -isomer equal to 3:2, which coincided with experimental data. We also tested the antibacterial and antifungal activity of the synthesized compounds.

摘要

酰肼和腙的合成可用性及广泛的生物活性使其成为具有吸引力的研究对象。在本研究中,我们专注于由相应取代醛衍生的基于2-甲基-5-硝基-6-苯基烟酰肼的腙的合成。使用核磁共振光谱和密度泛函理论计算研究了所得化合物的结构。经过反复重结晶后,所有合成化合物均以异构体混合物的形式存在。经过详细分析,我们发现某些原子的氢核磁共振谱信号的重复和分叉是四种异构体(即-I、-II、-I和-II)存在的结果。在实验数据中注意到化学位移差为0.1 - 0.2 ppm且比例约为2:1的重复质子信号。通过对各个构型和构象的结构进行建模,获得了吉布斯自由能值,这使我们能够估计-异构体的旋转异构体的近似含量为3:2,这与实验数据相符。我们还还测试了合成化合物的抗菌和抗真菌活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1c3/11721005/bb9008d5d1f4/molecules-30-00169-sch001.jpg

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