Kris-Etherton P M, Lefevre M, Beecher G R, Gross M D, Keen C L, Etherton T D
Department of Nutritional Sciences, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Annu Rev Nutr. 2004;24:511-38. doi: 10.1146/annurev.nutr.23.011702.073237.
Identifying bioactive compounds and establishing their health effects are active areas of scientific inquiry. There are exciting prospects that select bioactive compounds will reduce the risk of many diseases, including chronic diseases such as cardiovascular disease. Recent findings have established that cardiovascular disease is a disease of inflammation, and consequently is amenable to intervention via molecules that have anti-inflammatory effects. In addition, research demonstrating adverse effects of oxidants on atherogenesis raises the possibility that antioxidants can confer cardioprotective effects. This review provides an overview of research approaches that can be used to unravel the biology and health effects of bioactive compounds. Because of the number of bioactive compounds and the diversity of likely biological effects, numerous and diverse experimental approaches must be taken to increase our understanding of the biology of bioactive compounds. Recognizing the complexity of this biology, sophisticated experimental designs and analytical methodologies must be employed to advance the field. The discovery of novel health effects of bioactive compounds will provide the scientific basis for future efforts to use biotechnology to modify/fortify foods and food components as a means to improve public health.
识别生物活性化合物并确定其对健康的影响是科学研究的活跃领域。令人兴奋的是,某些生物活性化合物有望降低包括心血管疾病等慢性疾病在内的多种疾病的风险。最近的研究结果表明,心血管疾病是一种炎症性疾病,因此可以通过具有抗炎作用的分子进行干预。此外,有研究表明氧化剂对动脉粥样硬化形成有不良影响,这增加了抗氧化剂具有心脏保护作用的可能性。本综述概述了可用于揭示生物活性化合物生物学特性和健康影响的研究方法。由于生物活性化合物数量众多且可能产生的生物学效应具有多样性,因此必须采用大量不同的实验方法来增进我们对生物活性化合物生物学特性的理解。认识到这种生物学特性的复杂性,必须采用精密的实验设计和分析方法来推动该领域的发展。生物活性化合物新健康效应的发现将为未来利用生物技术改良/强化食品及食品成分以改善公众健康的努力提供科学依据。