首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Transition metal complexes of a multidentate Schiff base ligand containing pyridine: synthesis, characterization, enzyme inhibitions, antioxidant properties, and molecular docking studies
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Transition metal complexes of a multidentate Schiff base ligand containing pyridine: synthesis, characterization, enzyme inhibitions, antioxidant properties, and molecular docking studies

机译:含吡啶的多齿席夫碱配体的过渡金属配合物:合成、表征、酶抑制、抗氧化特性和分子对接研究

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A series of Fe(II), Ni(II), and Pd(II) complexes were prepared with a novel Schiff base ligand containing pyridine moiety. The prepared compounds were characterized using FT-IR, H-1 and (13) C NMR, UV-Vis, powder XRD, thermogravimetric analysis, mass spectra, magnetic susceptibility, and elemental analysis. The coordination geometry of Fe(II) and Ni(II) complexes were octahedral, where Fe(II) and Ni(II) metal ions were coordinated by an oxygen atom of the carbonyl group, a nitrogen atom of the azomethine moiety, and a phenolic oxygen atom. The Pd(II) complex had square planar geometry. All of the synthesized compounds were tested for their biochemical properties, including enzyme inhibition and antioxidant activities. According to the in vitro DPPH and FRAP antioxidant methods, the Schiff base ligand and its Fe(II)/Pd(II) complexes showed close antioxidant activities against the standards (BHA, BHT, ascorbic acid, and alpha-tocopherol). Enzyme inhibitions of the metal complexes were investigated against glutathione S-transferase (GST), acetylcholinesterase (AChE), and butyrylcholinesterase (BChE) enzymes. The best inhibition value (K-i) was observed for the Ni(II) complex against GST (2.63 +/- 0.04 mu M). Also, the Pd(II) complex showed the best inhibition value (10.17 +/- 1.88 mu M) against AChE. Molecular docking specified significant interactions at the active pockets of respective target enzymes. The Ni(II) complex exhibited good binding affinity against both BChE (- 9.0 kcal/mol and 9.36 +/- 2.03 mu M) and GST (- 7.0 kcal/mol and 2.63 +/- 0.04 mu M) enzymes.
机译:采用含有吡啶部分的新型希夫碱配体制备了一系列Fe(II)、Ni(II)和Pd(II)配合物。采用傅里叶变换红外光谱(FT-IR)、H-1和(13)C NMR、UV-Vis、粉末XRD、热重分析、质谱、磁化率和元素分析等手段对制备的化合物进行了表征。Fe(II)和Ni(II)配合物的配位几何形状为八面体,其中Fe(II)和Ni(II)金属离子由羰基氧原子、偶氮亚甲基部分氮原子和酚氧原子配位。Pd(II)复合物具有方形平面几何形状。对所有合成化合物的生化性质进行了测试,包括酶抑制和抗氧化活性。根据体外DPPH和FRAP抗氧化方法,Schiff碱配体及其Fe(II)/Pd(II)配合物与标准品(BHA、BHT、抗坏血酸和α-生育酚)表现出接近的抗氧化活性。研究了金属络合物对谷胱甘肽 S-转移酶 (GST)、乙酰胆碱酯酶 (AChE) 和丁酰胆碱酯酶 (BChE) 的酶抑制作用。Ni(II)配合物对GST的抑制值(K-i)为2.63 +/- 0.04 μ M。此外,Pd(II)配合物对AChE的抑制价值最好(10.17 +/- 1.88 μ M)。分子对接指定了各自靶酶活性口袋的显着相互作用。Ni(II)配合物对BChE(-9.0 kcal/mol 和 9.36 +/- 2.03 mu M) 和 GST (- 7.0 kcal/mol 和 2.63 +/- 0.04 mu M) 酶。

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