Cody V
Medical Foundation of Buffalo, Inc., New York 14203.
Prog Clin Biol Res. 1988;280:29-44.
Flavonoids are a broadly distributed class of plant pigments, universally present in vascular plants and responsible for much of the coloring in nature. Because of their widespread occurrence in edible plants, flavonoids are an integral part of the human diet. Therefore, the effects of these substances on human nutrition and well-being are of considerable importance, in particular in cultures where they constitute a major portion of the diet. To understand their mechanisms of action in various cellular and enzyme systems, it is important to have knowledge of their molecular properties. Structural studies have shown the three-dimensional conformations of these natural plant products, delineating their conformational preferences, showing the influence of substituents on conformation and physical properties. The results of these studies show that a single flavonoid may have more than one response, depending on enzyme site. Analysis of these flavonoid structure-activity relationships has offered insight into their mechanisms of action and will be instrumental in the design of new drugs based on these natural products. Thus, their diverse effects endow the flavonoids with an immense capacity to contribute important new therapeutic agents for the treatment of disease.
黄酮类化合物是一类广泛分布的植物色素,普遍存在于维管植物中,是自然界中许多颜色的来源。由于它们广泛存在于可食用植物中,黄酮类化合物是人类饮食中不可或缺的一部分。因此,这些物质对人类营养和健康的影响至关重要,特别是在那些它们构成饮食主要部分的文化中。为了了解它们在各种细胞和酶系统中的作用机制,了解它们的分子特性很重要。结构研究已经揭示了这些天然植物产物的三维构象,描绘了它们的构象偏好,展示了取代基对构象和物理性质的影响。这些研究结果表明,单一的黄酮类化合物可能有不止一种反应,这取决于酶的作用位点。对这些黄酮类化合物构效关系的分析有助于深入了解它们的作用机制,并将有助于基于这些天然产物设计新药。因此,它们的多种作用使黄酮类化合物有巨大的潜力为疾病治疗贡献重要的新型治疗药物。