O Different Antioxidant Efficacy of Two MnII-Containing Superoxide Anion Scavengers on Hypoxia/Reoxygenation-Exposed Cardiac Muscle Cells
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Different Antioxidant Efficacy of Two MnII-Containing Superoxide Anion Scavengers on Hypoxia/Reoxygenation-Exposed Cardiac Muscle Cells

机译:两种含MnII的超氧阴离子清除剂对缺氧/复氧暴露的心肌细胞的不同抗氧化功效

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摘要

Oxidative stress due to excess superoxide anion (O2) produced by dysfunctional mitochondria is a key pathogenic event of aging and ischemia-reperfusion diseases. Here, a new O2-scavenging MnII complex with a new polyamino-polycarboxylate macrocycle (4,10-dimethyl-1,4,7,10-tetraazacyclododecane-1,7-diacetate) containing 2 quinoline units (MnQ2), designed to improve complex stability and cell permeability, was compared to parental MnII complex with methyls replacing quinolines (MnM2). MnQ2 was more stable than MnM2 (log K = 19.56(8) vs. 14.73(2) for the equilibrium Mn2+ + L2−, where L = Q2 and M2) due to the involvement of quinoline in metal binding and to the hydrophobic features of the ligand which improve metal desolvation upon complexation. As oxidative stress model, H9c2 rat cardiomyoblasts were subjected to hypoxia-reoxygenation. MnQ2 and MnM2 (10 μmol L−1) were added at reoxygenation for 1 or 2 h. The more lipophilic MnQ2 showed more rapid cell and mitochondrial penetration than MnM2. Both MnQ2 and MnM2 abated endogenous ROS and mitochondrial O2, decreased cell lipid peroxidation, reduced mitochondrial dysfunction, in terms of efficiency of the respiratory chain and preservation of membrane potential (Δψ) and permeability, decreased the activation of pro-apoptotic caspases 9 and 3, and increased cell viability. Of note, MnQ2 was more effective than MnM2 to exert cytoprotective anti-oxidant effects in the short term. Compounds with redox-inert ZnII replacing the functional MnII were ineffective. This study provides clues which further our understanding of the structure-activity relationships of MnII-chelates and suggests that MnII-polyamino-polycarboxylate macrocycles could be developed as new anti-oxidant drugs.
机译:由于过量的超氧阴离子引起的氧化应激( O 2 - )是衰老的关键病因和缺血再灌注疾病。在这里,一个新的 O 2 - -用新的聚氨基清除Mn II 复合物-包含2个喹啉单元(MnQ2)的聚羧酸大环化合物(4,10-二甲基-1,4,7,10-四氮杂环十二烷-1,7-二乙酸酯)与亲本Mn II 配合物,用甲基取代喹啉(MnM2)。 MnQ2比MnM2更稳定(log K = 19.56(8)vs. 14.73(2)对于平衡Mn 2 + + L 2-−sup>,其中L = Q2和M2)是由于喹啉参与了金属结合以及配体的疏水特征,其在络合时改善了金属的去溶剂化作用。作为氧化应激模型,对H9c2大鼠心肌细胞进行缺氧-复氧。再充氧1或2 h,加入MnQ2和MnM2(10μmolL -1 )。亲脂性较高的MnQ2比MnM2显示出更快的细胞和线粒体渗透。 MnQ2和MnM2都减轻了内源性ROS和线粒体 < mi mathvariant =“ bold”> O 2 - ,细胞脂质过氧化作用降低,线粒体功能障碍减少,呼吸链的效率以及膜电位(Δψ)和通透性的保留,降低了促凋亡胱天蛋白酶9和3的活化,并提高了细胞活力。值得注意的是,MnQ2在短期内比MnM2更有效地发挥细胞保护性抗氧化作用。氧化还原惰性的Zn II 代替功能性Mn II 的化合物无效。这项研究提供了一些线索,可进一步了解Mn II -螯合物的构效关系,并暗示Mn II -聚氨基-聚羧酸盐大环化合物可作为新的抗氧化剂药物。

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