Diazeniumdiolates: Pro- and antioxidant applications of the "NONOates"

被引:119
作者
Fitzhugh, AL
Keefer, LK
机构
[1] NCI, Intramural Res Support Program, SAIC Frederick, Frederick Canc Res & Dev Ctr, Frederick, MD 21702 USA
[2] NCI, Chem Sect, Comparat Carcinogenesis Lab, Frederick Canc Res & Dev Ctr, Frederick, MD 21701 USA
关键词
diazeniumdiolates; NONOates; nitric oxide; free radicals;
D O I
10.1016/S0891-5849(00)00251-3
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Diazeniumdiolates are compounds containing the X-[N(O)NO](-) structural unit that as a class offer many advantages as tools for probing the roles of nitric oxide (NO) in biological redox processes. Available examples in which X is a secondary amine group spontaneously generate up to two molecules of NO per [N(O)NO](-) unit when dissolved in aqueous media; their half-lives range from 2 s (for X = L-prolyl) to 20 h [for X = (H2NCH2CH2)(2)N] at pH 7.4 and 37 degrees C, and are in general relatively little influenced by medium effects or metabolism. When X = O- (Angeli's salt), first-order dissociation produces NO- rather than NO, but the ion becomes an NO source on 1-electron oxidation; diazeniumdiolate-derived NO can also be used to generate reactive nitrogen/oxygen species with higher nitrogen oxidation states (+3 and +4) in the presence of selected oxidizing agents. The advantages of diazeniumdiolates in biomedical research are briefly illustrated with examples from the recent literature probing NO's role in inhibiting oxidative drug metabolism, radical-induced lipid oxidation, the cytotoxicity of reactive oxygen species, and ischemia-induced vascular reoxygenation injury. Future work with this compound class should provide further insight into the mechanisms of NO's involvement in pro- and antioxidant processes, and may well lead to important medicinal advances, including reversal of cerebral vasospasm and radiosensitization of hypoxic tumors. (C) 2000 Elsevier Science Inc.
引用
收藏
页码:1463 / 1469
页数:7
相关论文
共 33 条
[1]   Oxidative damage and tyrosine nitration from peroxynitrite [J].
Beckman, JS .
CHEMICAL RESEARCH IN TOXICOLOGY, 1996, 9 (05) :836-844
[2]   THERMAL-DECOMPOSITION OF OXYHYPONITRITE (SODIUM TRIOXODINITRATE(II)) IN AQUEOUS-SOLUTION [J].
BONNER, FT ;
RAVID, B .
INORGANIC CHEMISTRY, 1975, 14 (03) :558-563
[3]   CONVERSION OF NITROXYL (HNO) TO NITRIC-OXIDE (NO) IN BIOLOGICAL-SYSTEMS - THE ROLE OF PHYSIOLOGICAL OXIDANTS AND RELEVANCE TO THE BIOLOGICAL-ACTIVITY OF HNO [J].
FUKUTO, JM ;
HOBBS, AJ ;
IGNARRO, LJ .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1993, 196 (02) :707-713
[4]   The effect of nitric oxide release rates on the oxidation of human low density lipoprotein [J].
Goss, SPA ;
Hogg, N ;
Kalyanaraman, B .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (34) :21647-21653
[5]   Electrochemical detection of nitric oxide in biological systems [J].
Gow, AJ ;
Thom, SR ;
Brass, C ;
Ischiropoulos, H .
MICROCHEMICAL JOURNAL, 1997, 56 (02) :146-154
[6]  
Hou YC, 1999, CURR PHARM DESIGN, V5, P417
[7]   NEW NITRIC OXIDE-RELEASING ZWITTERIONS DERIVED FROM POLYAMINES [J].
HRABIE, JA ;
KLOSE, JR ;
WINK, DA ;
KEEFER, LK .
JOURNAL OF ORGANIC CHEMISTRY, 1993, 58 (06) :1472-1476
[8]   NITRIC-OXIDE AS AN ANTIOXIDANT [J].
KANNER, J ;
HAREL, S ;
GRANIT, R .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1991, 289 (01) :130-136
[9]  
Keefer LK, 1996, METHOD ENZYMOL, V268, P281
[10]  
Keefer LK, 1998, CHEMTECH, V28, P30