共 48 条
Reactivity, Selectivity, and Reaction Mechanisms of Aminoguanidine, Hydralazine, Pyridoxamine, and Carnosine as Sequestering Agents of Reactive Carbonyl Species: A Comparative Study
被引:65
作者:
Colzani, Mara
[1
]
De Maddis, Danilo
[1
]
Casali, Gaia
[1
]
Carini, Marina
[1
]
Vistoli, Giulio
[1
]
Aldini, Giancarlo
[1
]
机构:
[1] Univ Milan, Dept Pharmaceut Sci, Via Mangiagalli 25, I-20133 Milan, Italy
来源:
关键词:
carbonyl quenching;
liquid chromatography;
mass spectrometry;
molecular modeling;
reactive carbonyl species;
LIPOXIDATION END-PRODUCTS;
ADVANCED GLYCOXIDATION;
PROTEIN CARBONYLATION;
CHEMICAL MODIFICATION;
DICARBONYL-COMPOUNDS;
MASS-SPECTROMETRY;
OXIDATIVE STRESS;
REDOX PROTEOMICS;
METHYLGLYOXAL;
BIOMARKERS;
D O I:
10.1002/cmdc.201500552
中图分类号:
R914 [药物化学];
学科分类号:
100701 ;
摘要:
Reactive carbonyl species (RCS) are endogenous or exogenous byproducts involved in the pathogenic mechanisms of different oxidative-based disorders. Detoxification of RCS by carbonyl quenchers is a promising therapeutic strategy. Among the most studied quenchers are aminoguanidine, hydralazine, pyridoxamine, and carnosine; their quenching activity towards four RCS (4-hydroxy-trans-2-nonenal, methylglyoxal, glyoxal, and malondialdehyde) was herein analyzed and compared. Their ability to prevent protein carbonylation was evaluated invitro by using an innovative method based on high-resolution mass spectrometry (HRMS). The reactivity of the compounds was RCS dependent: carnosine efficiently quenched 4-hydroxy-trans-2-nonenal, pyridoxamine was particularly active towards malondialdehyde, aminoguanidine was active towards methylglyoxal and glyoxal, and hydralazine efficiently quenched all RCS. Reaction products were generated invitro and were characterized by HRMS. Molecular modeling studies revealed that the reactivity was controlled by specific stereoelectronic parameters that could be used for the rational design of improved carbonyl quenchers.
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页码:1778 / 1789
页数:12
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