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共轭亚油酸及牛乳脂肪中的其他抗癌剂。

Conjugated linoleic acid and other anticarcinogenic agents of bovine milk fat.

作者信息

Parodi P W

机构信息

Human Nutrition Program, Dairy Research and Development Corporation, Melbourne, Australia.

出版信息

J Dairy Sci. 1999 Jun;82(6):1339-49. doi: 10.3168/jds.S0022-0302(99)75358-0.

Abstract

Prevention is an important strategy for conquering cancer. Milk fat contains a number of components, such as conjugated linoleic acid, sphingomyelin, butyric acid, ether lipids, beta-carotene, and vitamins A and D that have anticancer potential. Conjugated linoleic acid inhibits the growth of a number of human cancer cell lines and suppresses chemically-induced tumor development at a number of sites in animal models. As little as 0.1% of dietary conjugated linoleic acid inhibits the development of rat mammary tumors, independent of the amount and type of fat in the diet. Sphingomyelin, through its metabolites ceramide and sphingosine, participates in multiple antiproliferative pathways associated with suppression of carcinogenesis. Dietary sphingomyelin inhibits murine colon tumor development. Butyric acid, uniquely present in ruminant milk, is a potent antineoplastic agent and may ameliorate its potency through synergy with other milk fat components. Dietary butyric acid inhibits mammary carcinoma development in rats. In humans, ether lipids, beta-carotene, and vitamins A and D are associated with anticancer effects. Cows have the ability to extract anticarcinogenic components from pasture and feed and transfer them to milk. Use of genetic engineering and other techniques to increase the range and level of anticarcinogens in pasture and supplements may increase the anticancer potential of milk.

摘要

预防是攻克癌症的一项重要策略。乳脂肪含有多种成分,如共轭亚油酸、鞘磷脂、丁酸、醚脂、β-胡萝卜素以及具有抗癌潜力的维生素A和D。共轭亚油酸可抑制多种人类癌细胞系的生长,并在动物模型中的多个部位抑制化学诱导的肿瘤发展。饮食中仅0.1%的共轭亚油酸就能抑制大鼠乳腺肿瘤的发展,与饮食中脂肪的量和类型无关。鞘磷脂通过其代谢产物神经酰胺和鞘氨醇参与多种与抑制致癌作用相关的抗增殖途径。饮食中的鞘磷脂可抑制小鼠结肠肿瘤的发展。丁酸是反刍动物乳汁中特有的一种强效抗肿瘤剂,可能通过与其他乳脂肪成分协同作用来增强其效力。饮食中的丁酸可抑制大鼠乳腺癌的发展。在人类中,醚脂、β-胡萝卜素以及维生素A和D都具有抗癌作用。奶牛有能力从牧草和饲料中提取抗癌成分并将其转移到牛奶中。利用基因工程和其他技术来增加牧草和补充剂中抗癌物质的种类和含量,可能会提高牛奶的抗癌潜力。

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