Solanky Kirty S, Bailey Nigel J, Beckwith-Hall Bridgette M, Bingham Sheila, Davis Adrienne, Holmes Elaine, Nicholson Jeremy K, Cassidy Aedin
Biological Chemistry, Faculty of Medicine, Imperial College of Science, Technology and Medicine, University of London, South Kensington, SW7 2AZ London, UK.
J Nutr Biochem. 2005 Apr;16(4):236-44. doi: 10.1016/j.jnutbio.2004.12.005.
A metabonomic approach to nutrition research may provide an insight into in vivo mechanisms of action following nutritional intervention. This approach was applied to investigate changes in the (1)H NMR spectral profile of urine collected from controlled dietary intervention studies conducted in premenopausal women before and following soy or miso consumption. The aim of the study was to identify the biochemical effects of a diet rich in soy isoflavones, phytochemicals which are receiving significant attention because of their potential importance to human health and wide bioactivity in vitro. By applying various chemometric techniques to the data the biochemical effects of conjugated and unconjugated isoflavones were determined. The biochemical changes observed suggest that soy isoflavone ingestion had significant effects on several metabolic pathways associated with osmolyte fluctuation and energy metabolism. These biochemical changes were more significant following ingestion of the unconjugated soy isoflavone (miso) diet suggesting that the chemical composition of the isoflavones present in soy-based foods may have an effect on their biological efficacy in vivo. This study describes a novel application for (1)H NMR analysis by determining subtle differences in biochemical profiles following dietary intervention and providing further insight into the mechanisms of action of phytochemicals in vivo.
代谢组学方法应用于营养研究,可能有助于深入了解营养干预后的体内作用机制。该方法用于研究从绝经前女性在食用大豆或味噌前后进行的对照饮食干预研究中收集的尿液的氢核磁共振(¹H NMR)光谱特征变化。本研究旨在确定富含大豆异黄酮饮食的生化效应,大豆异黄酮是一类植物化学物质,因其对人类健康的潜在重要性和广泛的体外生物活性而受到广泛关注。通过对数据应用各种化学计量学技术,确定了结合型和非结合型异黄酮的生化效应。观察到的生化变化表明,摄入大豆异黄酮对与渗透溶质波动和能量代谢相关的多个代谢途径有显著影响。摄入非结合型大豆异黄酮(味噌)饮食后,这些生化变化更为显著,这表明大豆类食品中存在的异黄酮的化学组成可能会影响其在体内的生物学功效。本研究通过确定饮食干预后生化谱的细微差异,并进一步深入了解植物化学物质在体内的作用机制,描述了氢核磁共振分析的一种新应用。