首页> 外文期刊>Journal of Food Composition and Analysis >Industrially viable processes for synthesis of biologically active hydroxycarotenoids commonly found in fruits and vegetables.
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Industrially viable processes for synthesis of biologically active hydroxycarotenoids commonly found in fruits and vegetables.

机译:水果和蔬菜中常见的生物活性羟基类胡萝卜素合成的工业可行方法。

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摘要

Human plasma and tissues contain in excess of 12 dietary carotenoids and several metabolites that originate from consumption of fruits and vegetables. The major hydroxycarotenoids absorbed by humans are: (3R,3'R,6'R)-lutein (1), (3R,3'R)-zeaxanthin (2), (3R,6'R)- alpha-cryptoxanthin (3), and (3R)- beta-cryptoxanthin (4) and their E/Z-stereoisomers. In addition, several hydroxycarotenoids that result from metabolic transformation of 1 have also been identified in human plasma and ocular tissues. Epidemiological and experimental evidence to date suggest hydroxycarotenoids may protect against chronic diseases such as cancer, cardiovascular disease and age-related macular degeneration (AMD). Therefore, supplementation with these carotenoids in individuals with a low dietary intake of fruits and vegetables is essential. However, with the exception of 1 and 2, industrial production of 3 and 4 have not yet materialized. A relatively straightforward semisynthetic process has been developed that transform 1 into a mixture of 3 (12%) and 4 (80%). Hydroxycarotenoid 3 can also be directly prepared from allylic deoxygenation of 1 in a single step in an excellent yield. These two processes provide an easy access to optically active 3 and 4 that are normally prepared by numerous synthetic steps
机译:人体血浆和组织中含有超过12种饮食类胡萝卜素和几种代谢产物,这些代谢产物来自食用水果和蔬菜。人类吸收的主要羟基类胡萝卜素为:(3 R ,3' R ,6' R )-叶黄素( 1 ),(3 R ,3' R )-玉米黄质( 2 ),(3 R , 6' R )-α-隐黄质( 3 )和(3 R )-β-隐黄质( 4 )及其 E / Z -立体异构体。此外,在人体血浆和眼组织中还发现了几种 1 的代谢转化所产生的羟基类胡萝卜素。迄今为止的流行病学和实验证据表明,羟基类胡萝卜素可以预防慢性疾病,例如癌症,心血管疾病和年龄相关性黄斑变性(AMD)。因此,在饮食中水果和蔬菜摄入量低的个体中补充这些类胡萝卜素至关重要。但是,除了 1 和 2 之外, 3 和 4 的工业生产尚未实现。已开发出一种相对简单的半合成过程,该过程将 1 转换为 3 (12%)和 4 (80%)的混合物。羟基类胡萝卜素 3 也可以一步一步由 1 的烯丙基脱氧直接制得,并且产率很高。这两个过程使光学活性 3 和 4 容易获得,它们通常是通过许多合成步骤制备的

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