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大豆种子中lunasin、鲍曼-伯克抑制剂和异黄酮的含量及生物活性

Contents and bioactivities of lunasin, bowman-birk inhibitor, and isoflavones in soybean seed.

作者信息

Park Jae Ho, Jeong Hyung Jin, de Lumen Ben O

机构信息

School of Bioresources, Andong National University, Kyungpook, Korea.

出版信息

J Agric Food Chem. 2005 Oct 5;53(20):7686-90. doi: 10.1021/jf0506481.

Abstract

It has been previously demonstrated that lunasin is a novel and promising cancer preventive peptide from soybean. The Bowman-Birk protease inhibitor (BBI) and isoflavones are well-studied substances from soy. This study evaluated the levels and bioactivities of these three compounds as affected by stages of seed development and sprouting under light and dark conditions. BBI and lunasin appear at 7 and 6 weeks, respectively, after flowering and increase as the seed matures. Daidzein and genistein both decrease during seed maturation. During sprouting under light, BBI increases up to the 6th day and decreases thereafter, disappearing at the 9th day after soaking. Under dark conditions, BBI increases up to the 7th day after soaking and decreases thereafter, disappearing at the 10th day. Lunasin starts to decrease at 2 days after soaking and disappears completely at 7 days under light and dark conditions. Daidzein and genistein increase continuously during the 10 days of soaking, and both increase more in the dark than under light conditions. Protein extracts from early seed development (2-5 weeks after flowering) suppress cell viability to a greater degree than those from later stages (6-9 weeks). Inhibition of foci formation by protein extracts from later stages is greater than those from earlier stages. Lunasin and BBI suppress foci formation more than the isoflavones. Sprouting decreases lunasin and BBI contents but increases isoflavones. Protein extracts from early soaking times inhibit foci formation more and suppress cell viability less than those from later soaking times. Light and dark conditions have no influence on the bioactivities of protein extracts. These data are useful in the preparation of soy fractions enriched in lunasin, BBI, and isoflavones and in making dietary recommendations.

摘要

先前已经证明,芦那辛是一种来自大豆的新型且有前景的癌症预防肽。鲍曼-伯克蛋白酶抑制剂(BBI)和异黄酮是大豆中经过充分研究的物质。本研究评估了这三种化合物的含量和生物活性,它们受种子发育阶段以及光照和黑暗条件下发芽情况的影响。BBI和芦那辛分别在开花后7周和6周出现,并随着种子成熟而增加。大豆苷元和染料木黄酮在种子成熟过程中均减少。在光照下发芽时,BBI在浸泡后第6天前增加,之后减少,在浸泡后第9天消失。在黑暗条件下,BBI在浸泡后第7天前增加,之后减少,在浸泡后第10天消失。芦那辛在浸泡后第2天开始减少,在光照和黑暗条件下均在第7天完全消失。大豆苷元和染料木黄酮在浸泡的10天内持续增加,且在黑暗条件下的增加量比光照条件下更多。早期种子发育阶段(开花后2 - 5周)的蛋白质提取物比后期阶段(6 - 9周)的提取物对细胞活力的抑制程度更大。后期阶段的蛋白质提取物对病灶形成的抑制作用比早期阶段的提取物更强。芦那辛和BBI对病灶形成的抑制作用比异黄酮更强。发芽会降低芦那辛和BBI的含量,但会增加异黄酮的含量。早期浸泡时间的蛋白质提取物比后期浸泡时间的提取物对病灶形成的抑制作用更强,对细胞活力的抑制作用更弱。光照和黑暗条件对蛋白质提取物的生物活性没有影响。这些数据有助于制备富含芦那辛、BBI和异黄酮的大豆组分,并为饮食建议提供参考。

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