Maples K R, Ma F, Zhang Y K
Centaur Pharmaceuticals, Inc. 484 Oakmead Parkway Sunnyvale, CA 94085, USA.
Free Radic Res. 2001 Apr;34(4):417-26. doi: 10.1080/10715760100300351.
The nitrones alpha-phenyl-N-tert-butyl nitrone (PBN), sodium 2-sulfophenyl-N-tert-butyl nitrone (S-PBN) and disodium 2,4-disulfophenyl-N-tert-butyl nitrone (NXY-059) are neuroprotective in a variety of rodent models. The objective of the current studies was to compare the ability of PBN, S-PBN, and NXY-059 to form radical adducts and to prevent salicylate oxidation in an aqueous system. For the electron spin resonance (ESR) studies, hydroxyl radicals were generated with ultraviolet (UV) light and hydrogen peroxide. Secondary radicals were then produced by the addition of methanol, ethanol, isopropanol, dimethylsulfoxide, tetrahydrofuran or 1,4-dioxane. In addition, competition spin trapping studies were performed using PBN-alpha-(13) C and either S-PBN or NXY-059. In the salicylate studies, PBN, S-PBN and NXY-059 were compared to a variety of other antioxidants and reference compounds (cysteine, glutathione, ascorbate, uric acid, Tempo, Trolox, and Tirilizad) for their ability to prevent 2,3- and 2,5-dihydroxybenzoic acid formation induced by hydroxyl radical generating systems. All 3 nitrones trapped carbon- and oxygen-centered radicals to produce ESR-detectable radical adducts. Each nitrone also prevented salicylate oxidation, with PBN being the most effective. The ability of these 3 nitrones to prevent salicylate oxidation resembled that of most of the other compounds tested.
硝酮类化合物α-苯基-N-叔丁基硝酮(PBN)、2-磺基苯基-N-叔丁基硝酮钠(S-PBN)和2,4-二磺基苯基-N-叔丁基硝酮二钠(NXY-059)在多种啮齿动物模型中具有神经保护作用。当前研究的目的是比较PBN、S-PBN和NXY-059在水体系中形成自由基加合物以及防止水杨酸氧化的能力。对于电子自旋共振(ESR)研究,通过紫外线(UV)和过氧化氢产生羟基自由基。然后通过添加甲醇、乙醇、异丙醇、二甲基亚砜、四氢呋喃或1,4-二氧六环产生次级自由基。此外,使用PBN-α-(13)C以及S-PBN或NXY-059进行竞争自旋捕获研究。在水杨酸研究中,将PBN、S-PBN和NXY-059与多种其他抗氧化剂和参考化合物(半胱氨酸、谷胱甘肽、抗坏血酸、尿酸、Tempo、Trolox和替拉扎特)比较它们防止羟基自由基产生系统诱导形成2,3-和2,5-二羟基苯甲酸的能力。所有3种硝酮捕获以碳和氧为中心的自由基以产生ESR可检测的自由基加合物。每种硝酮也都能防止水杨酸氧化,其中PBN最为有效。这3种硝酮防止水杨酸氧化的能力与大多数其他测试化合物相似。