Nickel (II) and Copper (II) Schiff Base Derivatives: Design, Characterization, Biological Activity

IF 1.9 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Prof. Hany M. Abd El-Lateef, Prof. Mai M. Khalaf, Prof. Mohamed Gouda, Mr. Mohammed N. Almarri, Prof. Antar A. Abdelhamid, Prof. Saleh Al-Ghamdi, Prof. Amer A. Amer, Dr. Aly Abdou
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引用次数: 0

Abstract

This work presents the designing and characterization of two novel metal complexes derived from a Schiff base, N,N’-ethane-1,2-diylbis[1-(2-chloroquinolin-3-yl)methanimine] (EBCQ), coordinated with Ni (II) (NiEBCQ), and Cu (II) (CuEBCQ). Structures of the metal complex derivatives were proposed utilizing a variety of analytical methods having elemental analysis, ultraviolet-visible spectroscopy, mass spectroscopy, infrared spectroscopy, magnetic properties, conductivity measurement, and thermal analysis. The obtained data revealed octahedral geometries for both NiEBCQ and CuEBCQ complexes, denoted as [Ni(EBCQ)(H2O)2(Cl)2] and [Cu(EBCQ)(H2O)2(Cl)2], respectively. Density functional theory computations were employed for confirming the molecular structures and exploring quantum chemical parameters of both EBCQ and its metal complex derivatives. The anti-inflammatory results reveal that the EBCQ ligand and its metal complexes, NiEBCQ, and CuEBCQ, exhibit varying degrees of inhibition, with CuEBCQ showing the highest potency. CuEBCQ achieved 89.80% inhibition at 300 µM, with an IC50 value of 86.38 µM, indicating its superior anti-inflammatory activity compared to NiEBCQ (IC50 of 92.33 µM) and the ligand EBCQ (IC50 of 169.07 µM). In the antioxidant assays, the CuEBCQ complex again showed the most pronounced activity, achieving an IC50 of 74.16 µM, outperforming both NiEBCQ (IC50 of 89.06 µM) and the EBCQ ligand (IC50 of 101.58 µM). The antibacterial tests confirmed the metal complexes' superiority, particularly CuEBCQ, which displayed excellent inhibition against Bacillus cereus compared to the ligand. Molecular docking studies targeting specific proteins (5IKT for human cyclo-oxygenase-2, and 5IJT for human peroxiredoxin 2) were performed to assess the binding affinities and interactions of EBCQ and its metal complex derivatives. The results propose promising potential for the application of EBCQ and its metal complexes as novel therapeutic agents with diverse biological activities. Finally, antibacterial effectiveness of the ligand and its complexes were monitored opposed to several Gram-positive and Gram-negative bacteria.

Abstract Image

镍 (II) 和铜 (II) 希夫碱衍生物:设计、表征、生物活性
本研究介绍了两种新型金属配合物的设计和表征,这两种配合物分别来自与 Ni (II) (NiEBCQ) 和 Cu (II) (CuEBCQ) 配位的希夫碱--N,N'-乙烷-1,2-二基双[1-(2-氯喹啉-3-基)甲亚胺] (EBCQ)。利用元素分析、紫外-可见光谱、质谱、红外光谱、磁性能、电导率测量和热分析等多种分析方法,提出了金属配合物衍生物的结构。所获得的数据显示了 NiEBCQ 和 CuEBCQ 复合物的八面体几何结构,分别称为 [Ni(EBCQ)(H2O)2(Cl)2] 和 [Cu(EBCQ)(H2O)2(Cl)2]。研究人员利用密度泛函理论计算确认了 EBCQ 及其金属配合物衍生物的分子结构,并探索了它们的量子化学参数。抗炎结果表明,EBCQ 配体及其金属配合物 NiEBCQ 和 CuEBCQ 均表现出不同程度的抑制作用,其中 CuEBCQ 的效力最高。与 NiEBCQ(IC50 为 92.33 µM)和配体 EBCQ(IC50 为 169.07 µM)相比,CuEBCQ 在 300 µM 时的抑制率达到 89.80%,IC50 值为 86.38 µM,这表明它具有更强的抗炎活性。在抗氧化试验中,CuEBCQ 复合物再次显示出最显著的活性,其 IC50 值为 74.16 µM,优于 NiEBCQ(IC50 值为 89.06 µM)和配体 EBCQ(IC50 值为 101.58 µM)。抗菌测试证实了金属复合物的优越性,尤其是 CuEBCQ,它对蜡样芽孢杆菌的抑制作用优于配体。为了评估 EBCQ 及其金属复合物衍生物的结合亲和力和相互作用,研究人员针对特定蛋白质(5IKT 对应人类环氧化酶-2,5IJT 对应人类过氧化还原酶 2)进行了分子对接研究。研究结果表明,EBCQ 及其金属复合物有望用作具有多种生物活性的新型治疗剂。最后,监测了配体及其复合物对几种革兰氏阳性和革兰氏阴性细菌的抗菌效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ChemistrySelect
ChemistrySelect Chemistry-General Chemistry
CiteScore
3.30
自引率
4.80%
发文量
1809
审稿时长
1.6 months
期刊介绍: ChemistrySelect is the latest journal from ChemPubSoc Europe and Wiley-VCH. It offers researchers a quality society-owned journal in which to publish their work in all areas of chemistry. Manuscripts are evaluated by active researchers to ensure they add meaningfully to the scientific literature, and those accepted are processed quickly to ensure rapid online publication.
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