[利用300 MHz电子自旋共振光谱仪研究氧化还原敏感的硝基自旋探针在双层脂膜中的扩散]。

Biofizika Pub Date : 2015-01-01
A M F Benial, M K Dhas, K Ichikawa, K Yamada, F Hyodo, A Jawahar, H Utsumi
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引用次数: 0

摘要

利用300 MHz ESR光谱仪对14n标记的氘化3-甲氧基-2,2,5,5-四甲基吡咯烷-1-氧基(MC-PROXYL)和3-羧基-2,2,5,5-四甲基-1-吡咯烷-1-氧基(carboxy-PROXYL)在纯水和不同浓度的脂质体溶液中进行了电子自旋共振(ESR)研究。报道了样品的ESR参数,如线宽、超细耦合常数、旋转相关时间、g因子、分区参数和磁导率。在脂质体溶液中观察到MC-PROXYL和羧基- proxyl的谱线宽度变宽。观察了两种硝基自旋探针的超精细耦合常数。证明了硝基自旋探针的渗透性和不渗透性。旋转相关时间随脂质体浓度的增加而增加。MC-PROXYL的分配参数随着脂质体浓度的增加而增加,表明硝基自旋探针向脂膜扩散。透性值随脂质体浓度的增加而降低,表明膜透性增加。在脂质体溶液中,MC-PROXYL有相应的脂相峰,而羧基- proxyl没有。这些结果证实了硝基自旋探针的渗透性和不渗透性。
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[Diffusion studies of redox-sensitive nitroxyl spin probes through bilayer lipid membranes using 300 MHz electron spin resonance spectrometer].

Electron spin resonance (ESR) studies were carried out for 14N-labeled deuterated 3-methoxy-carbonyl-2,2,5,5-tetramethyl-pyrrolidine-1-oxyl (MC-PROXYL) and 3-carboxy-2,2,5,5-tetramethyl-1-pyrrolidin-1-oxyl (carboxy-PROXYL) in pure water and various concentrations of liposomal solutions by using 300 MHz ESR spectrometer. The ESR parameters such as the line width, hyperfine coupling constant, rotational correlation time, g-factor, partition parameter and permeability were reported for the samples. The line width broadening was observed for MC-PROXYL and carboxy-PROXYL in liposomal solution. The hyperfine coupling constant was observed for both nitroxyl spin probes. The permeable and impermeable nature of nitroxyl spin probes was demonstrated. The rotational correlation time increases with increasing concentration of liposome. The partition parameter increases with increasing concentration of liposome for MC-PROXYL, which indicates that the nitroxyl spin probes diffuse into lipid membrane. The permeability value decreases with increasing concentration of liposome, which reveals an increase in membrane permeability. The peaks corresponding to the lipid phase were observed for MC-PROXYL in liposomal solution, but not resolved for carboxy-PROXYL. These results confirm the permeable and impermeable nature of nitroxyl spin probes.

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