Metal Complexes of Schiff Bases Prepared from Quinoline-3-Carbohydrazide with 2-Nitrobenzaldehyde, 2-Chlorobenzaldehyde and 2,4-Dihydroxybenzaldehyde: Structure and Biological Activity

Mahmoud Sunjuk, Lana Al-Najjar, Majed Shtaiwi, Bassam El-Eswed, Kamal Sweidan, Paul Bernhardt, Hiba Zalloum, Luay Al-Essa
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Abstract

Three Schiff base ligands, NQ, CQ and HQ, were prepared from the reaction of quinoline-3-carbohydrazide with 2-nitrobenzaldehyde, 2-chlorobenzaldehyde and 2,4-dihydroxybenzaldehyde, respectively, and were investigated for their coordination to Cu (II), Ni(II), Co(II), Cd(II), Cr(III) and Fe(III) chlorides. The NQ preparation and the X-ray structure of NQ and CQ, as well as the transition metal complexes of NQ, CQ and HQ, were reported for the first time. FTIR, 1H-NMR, magnetic susceptibility and elemental analysis were used to study the coordination of ligands to the metal ions. Based on the magnetic susceptibility and elemental analysis results, octahedral structures of the complexes such as [CuL2Cl(OH)], [FeL2Cl2(OH)] and [CoL2Cl(OH)] were proposed for L = NQ, CQ and HQ. The relatively large Cd(II) exhibited [CdL3(OH)2]. The FTIR study revealed that NQ and CQ are coordinated to the metal ions via azomethine nitrogen and carbonyl oxygen while HQ through azomethine nitrogen and phenolic oxygen. Despite the high solvation power of DMSO solvent in 1H-NMR experiments, the azomethine HC=N peak at 9.3 ppm is the most affected by complexation with metal ions. On the other hand, quinoline nitrogen seems to be a weaker coordinating site than the azomethine nitrogen. The HQ ligand, containing phenolic groups, and its complexes with Cu and Ni were found to have inhibitory effects on human breast adenocarcinoma MCF-7 and human chronic myelogenous leukemia K562. Nevertheless, metal ions did not exhibit a significant synergistic effect on the antiproliferative activity of the ligands investigated.
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喹啉-3-碳肼与2-硝基苯甲醛、2-氯苯甲醛和2,4-二羟基苯甲醛合成希夫碱的金属配合物:结构与生物活性
以喹啉-3-碳肼为原料,分别与2-硝基苯甲醛、2-氯苯甲醛和2,4-二羟基苯甲醛反应制备了3种希夫碱配体NQ、CQ和HQ,并研究了它们与Cu (II)、Ni(II)、Co(II)、Cd(II)、Cr(III)和Fe(III)氯化物的配位性。本文首次报道了NQ的制备、NQ和CQ的x射线结构以及NQ、CQ和HQ的过渡金属配合物。利用红外光谱(FTIR)、核磁共振(1H-NMR)、磁化率和元素分析等方法研究了配体与金属离子的配位。根据磁化率和元素分析结果,提出了L = NQ、CQ和HQ的配合物[CuL2Cl(OH)]、[FeL2Cl2(OH)]和[CoL2Cl(OH)]的八面体结构。较大的Cd(II)表现为[CdL3(OH)2]。FTIR研究表明,NQ和CQ通过亚胺氮和羰基氧与金属离子配位,HQ通过亚胺氮和酚氧与金属离子配位。尽管DMSO溶剂在1H-NMR实验中具有较高的溶剂化能力,但在9.3 ppm时,亚甲胺HC=N峰受金属离子络合的影响最大。另一方面,喹啉氮似乎是一个弱的配位位点比亚甲基氮。含有酚类基团的HQ配体及其与Cu和Ni的配合物对人乳腺腺癌MCF-7和人慢性骨髓性白血病K562具有抑制作用。然而,金属离子对所研究的配体的抗增殖活性没有显着的协同作用。
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