Pou S, Ramos C L, Gladwell T, Renks E, Centra M, Young D, Cohen M S, Rosen G M
Department of Pharmacology and Toxicology, University of Maryland School of Pharmacy, Baltimore 21201.
Anal Biochem. 1994 Feb 15;217(1):76-83. doi: 10.1006/abio.1994.1085.
The spin trap 5,5-dimethyl-1-pyrroline-1-oxide (DMPO) alone, as well as DMPO or N-tert-butyl-alpha-phenylnitrone (PBN) in the presence of excess dimethyl sulfoxide (Me2SO), have been used as spin trapping systems for the detection of hydroxyl radical. However, the instability of DMPO and many of its corresponding spin-trapped adducts has limited the usefulness of this spin trap, particularly in biological systems. Spin trapping of multiple free radicals by the PBN/Me2SO system may undermine the sensitivity of this method to detect small, yet biologically significant amounts of hydroxyl radical. The present study was undertaken to select a spin trapping system with greater sensitivity and selectivity toward.OH than DMPO, DMPO/Me2SO, or PBN/Me2SO. We report that alpha-hydroxyethyl radical, resulting from the reaction of photolytically generated.OH with excess ethanol is spin trapped by 4-pyridyl-1-oxide-N-tert-butylnitrone (4-POBN) with a second-order rate constant nearly 10-fold greater than that for DMPO or PBN. In contrast to DMPO spin-trapped adducts, the alpha-hydroxyethyl radical adduct of 4-POBN, 4-POBN-CH(CH3)OH, is resistant to reduction by superoxide, even in the presence of cysteine. The efficiency of spin trapping and the marked stability of the resulting spin-trapped adduct confer a high degree of sensitivity and demonstrate the potential application of 4-POBN/ETOH toward the detection of hydroxyl radical in biological systems.
自旋捕获剂5,5-二甲基-1-吡咯啉-1-氧化物(DMPO)单独使用,以及在过量二甲基亚砜(Me2SO)存在下的DMPO或N-叔丁基-α-苯基硝酮(PBN),已被用作检测羟基自由基的自旋捕获体系。然而,DMPO及其许多相应的自旋捕获加合物的不稳定性限制了这种自旋捕获剂的实用性,特别是在生物体系中。PBN/Me2SO体系对多种自由基的自旋捕获可能会削弱该方法检测少量但具有生物学意义的羟基自由基的灵敏度。本研究旨在选择一种对·OH具有比DMPO、DMPO/Me2SO或PBN/Me2SO更高灵敏度和选择性的自旋捕获体系。我们报道,光解产生的·OH与过量乙醇反应生成的α-羟乙基自由基被4-吡啶基-1-氧化物-N-叔丁基硝酮(4-POBN)自旋捕获,其二级速率常数比DMPO或PBN的二级速率常数大近10倍。与DMPO自旋捕获加合物不同,4-POBN的α-羟乙基自由基加合物4-POBN-CH(CH3)OH即使在存在半胱氨酸的情况下也能抵抗超氧化物的还原。自旋捕获效率和所得自旋捕获加合物的显著稳定性赋予了高度的灵敏度,并证明了4-POBN/ETOH在生物体系中检测羟基自由基的潜在应用。