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Honey flavonoids as protection agents against oxidative damage to human red blood cells

机译:蜂蜜黄酮类化合物作为抗人红细胞氧化损伤的保护剂

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摘要

Honey phenol extracts separated on the base of their hydrophobicity were evaluated for the antioxidant content and for the ability to inhibit oxidative damage induced by radical species generated in the water phase or in the membrane of human erythrocytes. The water and ether fractions obtained from crude methanol extract of honey exhibited a phenolic content of 5.33 and 2.62 mg caffeic acid equivalents/100 g honey, respectively. These values correlate well with those of total antioxidant power, as assessed by FRAP assay (37.67 vs. 10.65 μmol/100g honey). Flavonoid contents were 2.57 and 1.64mg catechin equivalents/100 g honey for ether and water fractions, respectively. Although both honey fractions protect erythrocytes against 2,2'-azobis(2-amidinopropane)dihydrochloride-induced lysis, only the ether fraction was found to be active in inhibiting hemolysis but not methemoglobin and ferrylhemoglobin formation caused by H_2O_2. In addition, the ether fraction prevents tert-butylhydroperoxide-induced lipid peroxidation in whole erythrocytes and in isolated membranes. The significant antioxidant effect against damages induced by both water-soluble and hydrophobic exogenous oxidants suggests that the ether fraction, owing to its lipophilic character, can interact with red blood cell membrane, and the protective effect can be associated with the binding of the flavonoids to the membrane. On the other hand, the water fraction is more hydrophilic than ether fraction and it acts only from the outside of the membrane by scavenging the radicals before they attack the erythrocyte membrane.
机译:对基于其疏水性分离的蜂蜜酚提取物的抗氧化剂含量和抑制由人红细胞水相或膜中产生的自由基所引起的氧化损伤的能力进行了评估。从蜂蜜的粗制甲醇提取物中获得的水和醚馏分的酚含量分别为5.33和2.62 mg咖啡酸当量/ 100 g蜂蜜。这些值与通过FRAP分析评估的总抗氧化能力相关(37.67对10.65μmol/ 100g蜂蜜)。黄酮含量分别为2.57和1.64mg儿茶素当量/ 100 g蜂蜜(以醚和水计)。尽管两个蜂蜜级分均能保护红细胞免受2,2'-偶氮二(2-ami基丙烷)二盐酸盐诱导的裂解的影响,但仅发现醚级分具有抑制溶血的活性,而对由H_2O_2引起的高铁血红蛋白和亚铁血红蛋白的形成却没有抑制作用。此外,醚部分可防止叔丁基氢过氧化物在整个红细胞和分离的膜中诱导脂质过氧化。对水溶性和疏水性外源性氧化剂所致损害的显着抗氧化作用表明,由于其亲脂性,醚馏分可与红细胞膜相互作用,并且保护作用可与类黄酮与膜。另一方面,水部分比醚部分更具亲水性,它仅在自由基攻击红细胞膜之前通过清除自由基从膜的外部起作用。

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