Antioxidant activity of flavonoids in isolated mitochondria

被引:72
作者
Dorta, Daniel J. [1 ]
Pigoso, Acacio A. [1 ]
Mingatto, Fabio E. [1 ]
Rodrigues, Tiago [1 ]
Pestana, Cezar R. [1 ]
Uyemura, Sergio A. [2 ]
Santos, Antonio C. [2 ]
Curti, Carlos [1 ]
机构
[1] Univ Sao Paulo, Fac Ciencias Farmaceut Ribeirao Preto, Dept Quim & Fis, BR-14040903 Sao Paulo, Brazil
[2] Univ Sao Paulo, Fac Ciencias Farmaceut Ribeirao Preto, Dept Anal Clin Toxicol & Bromatol, BR-14040903 Sao Paulo, Brazil
基金
巴西圣保罗研究基金会;
关键词
flavonoids; antioxidants; mitochondria; reactive oxygen species; mitochondrial uncoupling; lipid peroxidation;
D O I
10.1002/ptr.2441
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Mitochondria are important intracellular sources and targets of reactive oxygen species (ROS), while flavonoids, a large group of secondary plant metabolites, are important antioxidants. Following our previous study on the energetics of mitochondria exposed to the flavonoids quercetin, taxifolin, catechin and galangin, the present work addressed the antioxidant activity of these compounds (1-50 mu mol/L) on Fe2+/citrate-mediated membrane lipid peroxidation (LPO) in isolated rat liver mitochondria, running in parallel studies of their antioxidant activity in non-organelle systems. Only quercetin inhibited the respiratory chain of mitochondria and only galangin caused uncoupling. Quercetin and galangin were far more potent than taxifolin and catechin in affording protection against LPO (IC50 = 1.23 +/- 0.27 and 2.39 +/- 0.79 mu mol/L, respectively), although only quercetin was an effective scavenger of both 2,2-diphenyl-1-picrylhydrazyl (DPPH) and superoxide radicals. These results, together with the previous study, suggest that the 2,3-double bond in conjugation with the 4-oxo function in the flavonoid structure are major determinants of the antioxidant activity of flavonoids in mitochondria, the presence of an o-di-OH structure on the B-ring, as occurs in quercetin, favours this activity via superoxide scavenging, while the absence of this structural feature in galangin, favours it via a decrease in membrane fluidity and/or mitochondrial uncoupling. Copyright (c) 2008 John Wiley & Sons, Ltd.
引用
收藏
页码:1213 / 1218
页数:6
相关论文
共 29 条
[1]   SAFRANINE AS A PROBE OF MITOCHONDRIAL-MEMBRANE POTENTIAL [J].
AKERMAN, KEO ;
WIKSTROM, MKF .
FEBS LETTERS, 1976, 68 (02) :191-197
[2]   ANTIOXIDANT DETERMINATIONS BY THE USE OF A STABLE FREE RADICAL [J].
BLOIS, MS .
NATURE, 1958, 181 (4617) :1199-1200
[3]  
BOLANN BJ, 1987, BIOCHEM J, V24, P355
[4]  
BORS W, 1990, METHOD ENZYMOL, V186, P343
[5]   MITOCHONDRIAL GENERATION OF HYDROGEN-PEROXIDE - GENERAL PROPERTIES AND EFFECT OF HYPERBARIC-OXYGEN [J].
BOVERIS, A ;
CHANCE, B .
BIOCHEMICAL JOURNAL, 1973, 134 (03) :707-716
[6]   Mitochondrial H+ leak and ROS generation:: An odd couple [J].
Brookes, PS .
FREE RADICAL BIOLOGY AND MEDICINE, 2005, 38 (01) :12-23
[7]  
Buege J A, 1978, Methods Enzymol, V52, P302
[8]   Antioxidant and antiradical activities of flavonoids [J].
Burda, S ;
Oleszek, W .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2001, 49 (06) :2774-2779
[9]  
CHANCE B, 1956, ADV ENZYMOL REL S BI, V17, P65
[10]   The interaction of flavonoids with mitochondria: effects on energetic processes [J].
Dorta, DJ ;
Pigoso, AA ;
Mingatto, FE ;
Rodrigues, T ;
Prado, IMR ;
Helena, AFC ;
Uyemura, SA ;
Santos, AC ;
Curti, C .
CHEMICO-BIOLOGICAL INTERACTIONS, 2005, 152 (2-3) :67-78