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Synthesis and Structure Insights of Two Novel Broad-Spectrum Antibacterial Candidates Based on (E)-N′-(Heteroaryl)methyleneadamantane-1-carbohydrazides

机译:基于(E)-N-(杂芳基)亚甲基金刚烷-1-碳酰肼的两种新型广谱抗菌候选化合物的合成和结构研究

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摘要

Two new ′-heteroarylidene-1-carbohydrazide derivatives, namely; - ′-[(pyridine-3-yl)methylidene]adamantane-1-carbohydrazide ( ) and - ′-[(5-nitrothiophen-2-yl)methylidene]adamantane-1-carbohydrazide ( ), were produced via condensation of adamantane-1-carbohydrazide with the appropriate heterocyclic aldehyde. Both compounds were chemically and structurally characterized by H-NMR, C-NMR, infrared and UV-vis spectroscopies, and single crystal X-ray diffraction. The study was complemented with density functional theory calculations (DFT). The results show an asymmetrical charge distribution in both compounds, with the electron density accumulated around the nitrogen and oxygen atoms, leaving the positive charge surrounding the N-H and C-H bonds in the hydrazine group. Consequently, the molecules stack in an antiparallel fashion in the crystalline state, although the contribution of the polar contacts to the stability of the lattice is different for (18%) and (42%). This difference affects the density and symmetry of their crystal structures. Both molecules show intense UV-Vis light absorption in the range 200–350 nm ( ) and 200–500 nm ( ), brought about by π → π* electronic transitions. The electron density difference maps (EDDM) revealed that during light absorption, the electron density flows within the π-delocalized system, among the pyridyl/thiophene ring, the nitro group, and the ′-methyleneacetohydrazide moiety. Interestingly, compounds and constitute broad-spectrum antibacterial candidates, displaying potent antibacterial activity with minimal inhibitory concentration (MIC) values around 0.5–2.0 μg/mL. They also show weak or moderate antifungal activity against the yeast-like pathogenic fungus .
机译:两种新的'-亚杂芳基-1-碳酰肼衍生物,分别为:通过金刚烷的缩合反应制得-′- [(吡啶-3-基)亚甲基]金刚烷-1-碳酰肼()和-′- [(5-硝基噻吩-2-基)亚甲基]金刚烷-1-碳酰肼()。 -1-碳酰肼与适当的杂环醛一起使用。通过H-NMR,C-NMR,红外和UV-可见光谱以及单晶X射线衍射对这两种化合物进行化学和结构表征。这项研究得到了密度泛函理论计算(DFT)的补充。结果显示两种化合物中的电荷分布不对称,电子密度在氮和氧原子周围积累,而在肼基团的N-H和C-H键周围留下正电荷。因此,尽管极性接触对晶格稳定性的贡献在(18%)和(42%)方面有所不同,但分子在晶体状态下以反平行方式堆叠。这种差异会影响其晶体结构的密度和对称性。两种分子在200-350 nm()和200-500 nm()范围内均显示出强烈的UV-Vis光吸收,这是由π→π*电子跃迁引起的。电子密度差图(EDDM)显示,在光吸收期间,电子密度在吡啶基/噻吩环,硝基和'-亚甲基乙酰肼部分之间的π离域系统内流动。有趣的是,这些化合物和化合物构成了广谱抗菌候选物,显示出强大的抗菌活性,且最小抑菌浓度(MIC)值约为0.5–2.0μg/ mL。它们还显示出对酵母样致病真菌的弱或中等的抗真菌活性。

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