通过抑制蛋鸡肝脏胆固醇合成和促进胆汁酸合成,膳食中的卡拉亚皂苷和荚膜罗氏菌具有降胆固醇作用

Cholesterol Pub Date : 2010-01-01 Epub Date: 2010-06-30 DOI:10.1155/2010/272731
Sadia Afrose, Md Sharoare Hossain, Ummay Salma, Abdul Gaffar Miah, Hirotada Tsujii
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引用次数: 0

摘要

本研究旨在阐明卡拉亚皂苷或罗氏杆菌(R. capsulatus)降血脂作用的机制。研究人员将 40 只蛋鸡(20 周龄)分成 4 个日粮处理组,分别饲喂基础日粮(对照组)或添加卡拉亚皂苷、荚膜杆菌或两者的基础日粮 60 天。所有添加剂都降低了血清低密度脂蛋白胆固醇水平以及血清、肝脏和蛋黄中胆固醇和甘油三酯的水平(P < .05)。补充卡拉亚皂苷、蒴果莓以及卡拉亚皂苷和蒴果莓的组合可同时提高肝脏胆汁酸浓度和粪便中胆固醇、三酰甘油和胆汁酸的浓度(P < .05)。补充卡拉亚皂苷、蒴果莓以及卡拉亚皂苷和蒴果莓的组合能抑制肝脏体外总脂、磷脂、三酰甘油和胆固醇组分中 1-(14)C 棕榈酸的 (14)C 结合(P < .05)。这些研究结果表明,卡拉亚皂苷和蒴果莓的降胆固醇作用是通过抑制肝脏中胆固醇的合成和促进胆固醇的分解代谢而产生的。
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Dietary Karaya Saponin and Rhodobacter capsulatus Exert Hypocholesterolemic Effects by Suppression of Hepatic Cholesterol Synthesis and Promotion of Bile Acid Synthesis in Laying Hens.

This study was conducted to elucidate the mechanism underlying the hypolipidemic action of karaya saponin or Rhodobacter (R.) capsulatus. A total of 40 laying hens (20-week-old) were assigned into four dietary treatment groups and fed a basal diet (as a control) or basal diets supplemented with either karaya saponin, R. capsulatus, or both for 60 days. The level of serum low-density-lipoprotein cholesterol and the levels of cholesterol and triglycerides in the serum, liver, and egg yolk were reduced by all the supplementations (P < .05). Liver bile acid concentration and fecal concentrations of cholesterol, triacylglycerol, and bile acid were simultaneously increased by the supplementation of karaya saponin, R. capsulatus, and the combination of karaya saponin and R. capsulatus (P < .05). The supplementation of karaya saponin, R. capsulatus, and the combination of karaya saponin and R. capsulatus suppressed the incorporation of (14)C from 1-(14)C-palmitic acid into the fractions of total lipids, phospholipids, triacylglycerol, and cholesterol in the liver in vitro (P < .05). These findings suggest that the hypocholesterolemic effects of karaya saponin and R. capsulatus are caused by the suppression of the cholesterol synthesis and the promotion of cholesterol catabolism in the liver.

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