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植物雌激素:大豆异黄酮的生物化学、生理学及其对人类健康的影响

Phytoestrogens: the biochemistry, physiology, and implications for human health of soy isoflavones.

作者信息

Setchell K D

机构信息

Clinical Mass Spectrometry Center, Children's Hospital Medical Center, Cincinnati, OH 45229, USA.

出版信息

Am J Clin Nutr. 1998 Dec;68(6 Suppl):1333S-1346S. doi: 10.1093/ajcn/68.6.1333S.

Abstract

The importance of estrogens in homeostatic regulation of many cellular and biochemical events is well illustrated by the pathophysiologic changes that occur with estrogen deficiency. Many of the major diseases of Western populations are hormone dependent and epidemiologic data have shown a strong association between their incidence and diet. In particular, the importance of a plant-based diet is evident from the current dietary recommendations that emphasize an increase in the proportion and amount of fruit and vegetables that should be consumed. Although interpretation of the role of individual components of the diet is difficult from epidemiologic and dietary studies, it is recognized that there are many plant-derived bioactive nonnutrients that can confer significant health benefits. Among these phytochemicals is the broad class of nonsteroidal estrogens called phytoestrogens, and in the past decade there has been considerable interest in the role of isoflavones because of their relatively high concentrations in soy protein. The isoflavones in modest amounts of ingested soy protein are biotransformed by intestinal microflora, are absorbed, undergo enterohepatic recycling, and reach circulating concentrations that exceed by several orders of magnitude the amounts of endogenous estrogens. These phytoestrogens and their metabolites have many potent hormonal and nonhormonal activities that may explain some of the biological effects of diets rich in phytoestrogens.

摘要

雌激素缺乏时发生的病理生理变化很好地说明了雌激素在许多细胞和生化事件稳态调节中的重要性。西方人群的许多主要疾病都依赖激素,流行病学数据表明这些疾病的发病率与饮食之间存在密切关联。特别是,从当前强调应增加水果和蔬菜食用比例及数量的饮食建议中可以明显看出植物性饮食的重要性。尽管从流行病学和饮食研究中很难解释饮食中各个成分的作用,但人们认识到有许多植物源性生物活性非营养物质能带来显著的健康益处。这些植物化学物质中包括一大类称为植物雌激素的非甾体雌激素,在过去十年中,由于异黄酮在大豆蛋白中的相对高浓度,人们对其作用产生了浓厚兴趣。摄入适量大豆蛋白中的异黄酮会被肠道微生物群进行生物转化,被吸收,经过肠肝循环,并达到比内源性雌激素高出几个数量级的循环浓度。这些植物雌激素及其代谢产物具有许多强大的激素和非激素活性,这可能解释了富含植物雌激素的饮食的一些生物学效应。

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