Adlercreutz H, Höckerstedt K, Bannwart C, Bloigu S, Hämäläinen E, Fotsis T, Ollus A
Department of Clinical Chemistry, University of Helsinki, Meilahti Hospital, Finland.
J Steroid Biochem. 1987;27(4-6):1135-44. doi: 10.1016/0022-4731(87)90200-7.
A brief account of our present knowledge on the enterohepatic metabolism of estrogens and on the origin, metabolism and biological effects of mammalian lignans and phytoestrogens is undertaken. Furthermore, recently published results on the effects of dietary fiber, fat and carbohydrates on estrogen metabolism are reviewed. New preliminary results are presented on quantitative assays of lignans and phytoestrogens in urine of women belonging to various dietary and population groups and in a group of chimpanzees. The highest values of lignans and phytoestrogens were found in the non-human primates, and in macrobiotic, lactovegetarian and Japanese women, all groups considered having a low risk for the development of breast and other hormone-dependent cancer. New results on correlations between intake of various fibers, lignan and phytoestrogen excretion and plasma levels of estrogens, free testosterone and SHBG in women are presented. There is a significant positive correlation between the intake of fiber and urinary excretion of lignans and phytoestrogens, and the concentration of plasma SHBG. Fiber intake and urinary excretion of lignans and equol correlated negatively with plasma percentage free estradiol. Enterolactone excretion correlated negatively with plasma free testosterone. It is concluded that dietary macro- and micronutrients seem to play an important role in estrogen metabolism.
本文简要介绍了我们目前对雌激素肝肠循环代谢以及哺乳动物木脂素和植物雌激素的起源、代谢和生物学效应的认识。此外,还综述了最近发表的关于膳食纤维、脂肪和碳水化合物对雌激素代谢影响的研究结果。本文还展示了关于不同饮食和人群组别的女性以及一组黑猩猩尿液中木脂素和植物雌激素定量分析的新初步结果。在非人类灵长类动物、遵循长寿饮食法者、乳素食者和日本女性中发现了最高水平的木脂素和植物雌激素,所有这些群体被认为患乳腺癌和其他激素依赖性癌症的风险较低。本文还展示了关于女性摄入各种纤维、木脂素和植物雌激素排泄与雌激素、游离睾酮和性激素结合球蛋白血浆水平之间相关性的新结果。纤维摄入量与木脂素和植物雌激素的尿排泄量以及血浆性激素结合球蛋白浓度之间存在显著正相关。纤维摄入量以及木脂素和雌马酚的尿排泄量与血浆游离雌二醇百分比呈负相关。肠内酯排泄量与血浆游离睾酮呈负相关。研究得出结论,膳食中的宏量和微量营养素似乎在雌激素代谢中起着重要作用。