Tadolini B, Sechi A M
Institute of Biological Chemistry, University of Bologna, Italy.
Free Radic Res Commun. 1987;4(3):161-72. doi: 10.3109/10715768709088101.
Fe2+ autoxidation in Mops buffer both in absence and presence of substoichiometric concentrations of EDTA, H2O2 and of Fe3+ is greatly affected by phosphorus containing compounds. They increase the lag phase, characteristic of Fe2+ oxidation in this buffer, and decrease the rate of the reaction. This effect is due to the phosphates of the molecule. The ability of the different compounds tested to affect Fe2+ oxidation, however, appears to be influenced also by the rest of the molecule. The concentration of the different phosphorus containing compounds that inhibits 50% of Fe2+ oxidation is rather different. The effect exerted appears to be the result of an equilibrium between an inhibitory effect on the pathway of Fe2+ oxidation that occurs in Mops buffer and the onset of a different oxidation pathway of Fe2+ similar to that occurring in Na phosphate buffer. A hypothesis is proposed that the phosphorus containing compounds inhibit Fe2+ oxidation by binding Fe3+ and decreasing its ability to accelerate Fe2+ autoxidation. It is suggested that the presence in vitro and in vivo of phosphorus containing compounds may modify Fe2+ autoxidation and thus the production of oxygen active species.
在有无亚化学计量浓度的乙二胺四乙酸(EDTA)、过氧化氢(H₂O₂)和铁离子(Fe³⁺)的情况下,在吗啉乙磺酸(Mops)缓冲液中,亚铁离子(Fe²⁺)的自氧化受到含磷化合物的显著影响。它们延长了此缓冲液中Fe²⁺氧化所特有的延迟期,并降低了反应速率。这种效应归因于分子中的磷酸盐。然而,所测试的不同化合物影响Fe²⁺氧化的能力似乎也受分子其余部分的影响。抑制50% Fe²⁺氧化的不同含磷化合物的浓度差异颇大。所产生的效应似乎是对Mops缓冲液中发生的Fe²⁺氧化途径的抑制作用与类似于在磷酸钠缓冲液中发生的Fe²⁺不同氧化途径的起始之间平衡的结果。提出了一个假说,即含磷化合物通过结合Fe³⁺并降低其加速Fe²⁺自氧化的能力来抑制Fe²⁺氧化。有人认为,含磷化合物在体外和体内的存在可能会改变Fe²⁺自氧化,从而改变活性氧的产生。