Protective effects of synthetic hydroxytyrosol acetyl derivatives against oxidative stress in human cells

被引:31
作者
Manna, C
Migliardi, V
Sannino, F
De Martino, A
Capasso, R
机构
[1] Univ Naples 2, Fac Med & Chirurg, Dipartimento Biochim & Biofis F Cedrangolo, I-80138 Naples, Italy
[2] Univ Naples Federico II, Dipartimento Sci Suolo Pianta & Ambiente, I-80055 Portici, NA, Italy
关键词
Mediterranean diet; antioxidant; polyphenol; oxidative stress; functional food; cardiovascular diseases; acetyl hydroxytyrosol;
D O I
10.1021/jf058110i
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Chemically stable di- and triacetyl derivatives of the natural o-diphenol antioxiclant hydroxytyrosol were synthesized, and their chemical and biological antioxiclant activities were assessed in comparison with that of the native synthetic compound. The chemical antioxidant activity of the selected compounds was evaluated by measuring the ferric reducing antioxiclant power (FRAP). The data clearly indicate that, as expected, the hydroxytyrosol analogues, modified in the o-diphenolic ring, are devoid of any chemical antioxiclant activity. On the contrary, both acetyl derivatives, at micromolar concentrations, equally protect against tert-butylhydroperoxide-induced oxidative damages in Caco-2 cells and human erythrocytes. This paper for the first time reports that chemically stable hydroxytyrosol acetyl derivatives, although devoid of chemical antioxiclant activity, are as effective as the parent compound in protecting human cells from oxidative stress-induced cytotoxicity, after metabolization by esterases at the intestinal level, suggesting their possible utilization in either nutritional (functional food), cosmetic, or pharmaceutical preparations.
引用
收藏
页码:9602 / 9607
页数:6
相关论文
共 48 条
[21]   Protection of oxidative hemolysis by demethyldiisoeugenol in normal and beta-thalassemic red blood cells [J].
Ko, FN ;
Hsiao, G ;
Kuo, YH .
FREE RADICAL BIOLOGY AND MEDICINE, 1997, 22 (1-2) :215-222
[22]   Inhibition of arachidonate lipoxygenase activities by 2-(3,4-dihydroxyphenyl)ethanol, a phenolic compound from olives [J].
Kohyama, N ;
Nagata, T ;
Fujimoto, S ;
Sekiya, K .
BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 1997, 61 (02) :347-350
[23]   Food technology: Challenge for health promotion [J].
Kwon, TW ;
Hong, JH ;
Moon, GS ;
Song, YS ;
Kim, JI ;
Kim, JC ;
Kim, MJ .
BIOFACTORS, 2004, 22 (1-4) :279-287
[24]   The protective effect of the olive oil polyphenol (3,4-dihydroxyphenyl)ethanol counteracts reactive oxygen metabolite-induced cytotoxicity in Caco-2 cells [J].
Manna, C ;
Galletti, P ;
Cucciolla, V ;
Moltedo, O ;
Leone, A ;
Zappia, V .
JOURNAL OF NUTRITION, 1997, 127 (02) :286-292
[25]   Olive oil hydroxytyrosol protects human erythrocytes against oxidative damages [J].
Manna, C ;
Galletti, P ;
Cucciolla, V ;
Montedoro, G ;
Zappia, V .
JOURNAL OF NUTRITIONAL BIOCHEMISTRY, 1999, 10 (03) :159-165
[26]   Oleuropein prevents oxidative myocardial injury induced by ischemia and reperfusion [J].
Manna, C ;
Migliardi, V ;
Golino, P ;
Scognamiglio, A ;
Galletti, P ;
Chiariello, M ;
Zappia, V .
JOURNAL OF NUTRITIONAL BIOCHEMISTRY, 2004, 15 (08) :461-466
[27]   Protective effect of the phenolic fraction from virgin olive oils against oxidative stress in human cells [J].
Manna, C ;
D'Angelo, S ;
Migliardi, V ;
Loffredi, E ;
Mazzoni, O ;
Morrica, P ;
Galletti, P ;
Zappia, V .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2002, 50 (22) :6521-6526
[28]  
Manna C, 1999, ADV EXP MED BIOL, V472, P115
[29]   Transport mechanism and metabolism of olive oil hydroxytyrosol in Caco-2 cells [J].
Manna, C ;
Galletti, P ;
Maisto, G ;
Cucciolla, V ;
D'Angelo, S ;
Zappia, V .
FEBS LETTERS, 2000, 470 (03) :341-344
[30]   Hydroxytyrosol disposition in humans [J].
Miro-Casas, E ;
Covas, MI ;
Farre, M ;
Fito, M ;
Ortuño, J ;
Weinbrenner, T ;
Roset, P ;
de la Torre, R .
CLINICAL CHEMISTRY, 2003, 49 (06) :945-952