首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Stabilization of Mn(II) and Mn(III) in mononuclear complexes derived from tridentate ligands with N2O donors: Synthesis, crystal structure, superoxide dismutase activity and DNA interaction studies
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Stabilization of Mn(II) and Mn(III) in mononuclear complexes derived from tridentate ligands with N2O donors: Synthesis, crystal structure, superoxide dismutase activity and DNA interaction studies

机译:三齿配体与N2O供体衍生的单核络合物中Mn(II)和Mn(III)的稳定化:合成,晶体结构,超氧化物歧化酶活性和DNA相互作用研究

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A new family of tridentate ligands PhimpH (2-((2-phenyl-2-(pyridin-2-yl)hydazono)methyl)phenol), N-PhimpH (2-((2-phenyl-2-(pyridin-2-yl)hydrazono)methyl)napthalen-1-ol), Me-PhimpH (2-(1-(2-phenyl-2-(pyridine-2-yl)hydrazono)ethyl)phenol) have been synthesized and characterized. The ligands PhimpH and N-PhimpH after deprotonation react with manganese(II) and manganese(III) starting materials affording [Mn(Phimp)(2)] (1), [Mn(Phimp)(2)](ClO4) (2), [Mn(N-Phimp)(2)] (3), [Mn(N-Phimp)(2)](ClO4) (4). Complexes [Mn(Phimp)(2)] (1) and [Mn(N-Phimp)(2)] (3) convert to [Mn(Phimp)(2)](+) (cation of 2) and [Mn(N-Phimp)(2)](+) (cation of 4) respectively upon oxidation. Ligand Me-PhimpH stabilized only manganese(III) centre resulting [Mn(Me-Phimp)(2)](ClO4) (5). The molecular structures of [Mn(Phimp)(2)], 1 and [Mn(Phimp)(2)](ClO4), 2 were determined by single crystal X-ray diffraction. X-ray crystal structures of 1 and 2 have revealed the presence of distorted octahedral MnN4O2 coordination sphere having meridionally spanning ligands. Electrochemical studies for the complexes showed Mn(II)/Mn(III), (E-1/2 = 0.14-0.40 V) and Mn(III)/Mn(IV), (E-1/2 = 0.80-1.06 V) couples vs. Ag/AgCl. The redox properties were exploited to examine superoxide. dismutase (SOD) activity using Mn(II)/Mn(III) couple. The complexes 1, 2,4 and 5 have been revealed to catalyze effectively the dismutation of superoxide (O-2(center dot-)) in xanthine-xanthine oxidase-nitro blue tetrazolium assay and IC50 values were found to be 0.29, 0.39, 1.12 and 0.76 mu M respectively. DNA interaction studies with complex 2 showed binding of DNA in a non-intercalative pathway. Complexes 1, 2 and 4 exhibited nuclease activity in presence of H2O2 and inhibition of activity was noted in presence of KI.
机译:一个新的三齿配体家族PhimpH(2-(((2-phenyl-2-(pyridin-2-yl)hydazono)methyl)phenol),N-PhimpH(2-((2-phenyl-2-(pyridin-2合成并表征了Me-PhimpH(2-(1-(2-苯基-2-(吡啶-2-基)肼基)乙基)苯酚)。去质子化后的配体PhimpH和N-PhimpH与锰(II)和锰(III)原料反应,得到[Mn(Phimp)(2)](1),[Mn(Phimp)(2)](ClO4)(2 ),[Mn(N-Phimp)(2)](3),[Mn(N-Phimp)(2)](ClO4)(4)。配合物[Mn(Phimp)(2)](1)和[Mn(N-Phimp)(2)](3)转换为[Mn(Phimp)(2)](+)(2的阳离子)和[Mn (N-Phimp)(2)](+)(4的阳离子)在氧化时分别形成。配体Me-PhimpH仅稳定了锰(III)中心,得到[Mn(Me-Phimp)(2)](ClO4)(5)。通过单晶X射线衍射确定[Mn(Phimp)(2)] 1和[Mn(Phimp)(2)](ClO4)2的分子结构。 1和2的X射线晶体结构显示存在扭曲的八面体MnN4O2配位球,该配位球具有子午跨度的配体。配合物的电化学研究显示Mn(II)/ Mn(III)(E-1 / 2 = 0.14-0.40 V)和Mn(III)/ Mn(IV)(E-1 / 2 = 0.80-1.06 V )夫妇vs.Ag/AgCl。利用氧化还原特性检查超氧化物。使用Mn(II)/ Mn(III)偶对的SOD活性。在黄嘌呤-黄嘌呤氧化酶-硝基蓝四唑鎓测定中,发现配合物1、2、4和5能有效催化超氧化物歧化(O-2(中心点)),IC50值为0.29、0.39,分别为1.12和0.76μM。与复合物2的DNA相互作用研究表明,DNA以非嵌入途径结合。在H2O2存在下,复合物1、2和4表现出核酸酶活性,而在KI存在下,活性被抑制。

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