儿茶素吸收速率和程度与血浆抗氧化状态的关系。

P Pietta, P Simonetti, C Gardana, A Brusamolino, P Morazzoni, E Bombardelli
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引用次数: 133

摘要

黄酮类化合物具有多种生物活性,主要是由于其清除自由基、金属螯合和酶调节能力。这些证据大多是通过对个别化合物的体外研究获得的,其剂量大大超过了饮食中的剂量。人们对血浆抗氧化剂的吸收速率和程度与修饰之间的可能关系知之甚少。为了阐明这一点,人类志愿者被补充了单剂量的绿茶儿茶素(Greenselect)或磷脂复合物形式(Greenselect Phytosome),相当于400毫克的表没食子儿茶酸酯(EGCg)。选择EGCg作为绿茶儿茶素吸收的生物标志物,其时间过程血浆浓度与随后血浆抗坏血酸、总谷胱甘肽、α -生育酚、β -胡萝卜素和总自由基抗氧化参数(TRAP)的百分比变化相关。绿茶儿茶素作为磷脂复合物而不是作为游离儿茶素被更广泛地吸收。单剂量摄入两种形式的儿茶素会导致血浆抗坏血酸和总谷胱甘肽的短暂减少(10-20%),血浆TRAP增加(16-19%)。这些变化与血浆EGCg、抗坏血酸和总谷胱甘肽水平一致。
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Relationship between rate and extent of catechin absorption and plasma antioxidant status.

Flavonoids are described to exert a large array of biological activities, which are mostly ascribed to their radical-scavenging, metal chelating and enzyme modulation ability. Most of these evidences have been obtained by in vitro studies on individual compounds and at doses largely exceeding those dietary. Little is known about a possible relationship between rate and extent of the absorption and modifications of plasma antioxidants. To elucidate this aspect, human volunteers were supplemented with single doses of green tea catechins in free (Greenselect) or phospholipid complex form (Greenselect Phytosome) equivalent to 400 mg epigallocatechingallate (EGCg). EGCg was chosen as biomarker for green tea catechin absorption, and its time course plasma concentration was correlated to the subsequent percent variations of plasma ascorbate, total glutathione, alpha-tocopherol, beta-carotene and Total Radical Antioxidant Parameter (TRAP). Green tea catechins were absorbed more extensively when administered as phospholipid complex rather than as free catechins. Single dose intake of both forms of catechins produced a transient decrease (10-20%) of plasma ascorbate and total glutathione and an increase of plasma TRAP (16-19%). These variations were consistent with the plasmatic levels of EGCg, ascorbate and total glutathione.

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