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A New Mixed-Valence Mn(II)Mn(III) Compound With Catalase and Superoxide Dismutase Activities

机译:具有过氧化氢酶和超氧化物歧化酶活性的新型混合价Mn(II)Mn(III)化合物

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摘要

The synthesis, X-ray molecular structure, physico-chemical characterization and dual antioxidant activity (catalase and superoxide dismutase) of a new polymeric mixed valence Mn(III)Mn(II) complex, containing the ligand H2BPClNOL (N-(2-hydroxybenzyl)-N-(2-pyridylmethyl)[(3-chloro)(2-hydroxy)] propylamine) is described. The monomeric unit is composed of a dinuclear Mn(II)Mn(III) moiety, [Mn(III)(μ-HBPClNOL)(μ-BPClNOL)Mn(II)(Cl)](ClO4)·2H2O, >1, in which the Mn ions are connected by two different bridging groups provided by two molecules of the ligand H2BPClNOL, a phenoxide and an alkoxide group. In the solid state, this mixed valence dinuclear unit is connected to its neighbors through chloro bridges. Magnetic measurements indicated the presence of ferromagnetic [J = +0.076(13) cm−1] and antiferromagnetic [J = −5.224(13) cm−1] interactions. The compound promotes O2- dismutation in aqueous solution (IC50 = 0.370 μmol dm−3, kcat = 3.6x106 M−1 s−1). EPR studies revealed that a high-valent Mn(III)-O-Mn(IV) species is involved in the superoxide dismutation catalytic cycle. Complex >1 shows catalase activity only in the presence of a base, e.g., piperazine or triethylamine. Kinetic studies were carried out in the presence of piperazine and employing two different methods, resulting in kcat values of 0.58 ± 0.03 s−1 (detection of O2 production employing a Clark electrode) and 2.59 ± 0.12 s−1 (H2O2 consuption recorded via UV-Vis). EPR and ESI-(+)-MS studies indicate that piperazine induces the oxidation of >1, resulting in the formation of the catalytically active Mn(III)-O-Mn(IV) species.
机译:含配体H2BPClNOL(N-(2-羟基苄基)的新型高分子混合价Mn(III)Mn(II)配合物的合成,X射线分子结构,理化性质和双重抗氧化活性(过氧化氢酶和超氧化物歧化酶)描述了)-N-(2-吡啶基甲基)[(3-氯)(2-羟基)]丙胺)。单体单元由双核Mn(II)Mn(III)部分,[Mn(III)(μ-HBPClNOL)(μ-BPClNOL)Mn(II)(Cl)](ClO4)·2H2O组成,> 1 ,其中Mn离子通过两个不同的桥联基团连接,该桥联基团由两个分子的配体H2BPClNOL,一个酚盐和一个醇盐基团提供。在固态下,该混合价双核单元通过氯桥连接至其邻居。磁测量表明存在铁磁相互作用[J = +0.076(13)cm -1 ]和反铁磁相互作用[J = −5.224(13)cm -1 ]。该化合物可促进O 2 - 歧化(IC50 = 0.370μmoldm -3 ,kcat = 3.6x10 6 M -1 s -1 )。 EPR研究表明,高价Mn(III)-O-Mn(IV)物种参与超氧化物歧化催化循环。复合物> 1 仅在存在碱(例如哌嗪或三乙胺)的情况下显示过氧化氢酶活性。在哌嗪存在下并使用两种不同方法进行了动力学研究,得出的kcat值为0.58±0.03 s -1 (使用Clark电极检测氧气产生)和2.59±0.12 s < sup> -1 (通过UV-Vis记录的H2O2消耗量)。 EPR和ESI-(+)-MS研究表明,哌嗪诱导> 1 的氧化,导致形成具有催化活性的Mn(III)-O-Mn(IV)物种。

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