Literature DB >> 16802693

Dietary 5-campestenone (campest-5-en-3-one) enhances fatty acid oxidation in perfused rat liver.

Shizuka Tamaru1, Yo Suzuki, Masanobu Sakono, Nobuhiro Fukuda, Ikuo Ikeda, Rie Konno, Takeshi Shimizu, Kunio Suzuki.   

Abstract

The effect of dietary 5-campestenone (campest-5-en-3-one), a chemical modification product of a naturally-occurring plant sterol, campesterol, on lipid metabolism was examined using a rat liver perfusion system. Male Sprague-Dawley rats weighing about 140 g were fed a diet supplemented with or without 0.2% 5-campestenone for 14 d. 5-Campestenone feeding resulted in a marked reduction in the concentrations of serum lipids, such as triacylglycerol (TG), cholesterol, phospholipid, and free fatty acid, without influencing food intake or growth. Then, isolated livers from both groups were perfused for 4 h in the presence of an exogenous linoelaidic acid substrate. Dietary 5-campestenone markedly elevated hepatic ketone body production, while cumulative secretions of TG, cholesterol, and phospholipid by the livers of rats fed 5-campestenone were all significantly lowered as compared to those fed without the compound: the extent of the reduction was more prominent in the secretion of TG than other lipid components. In addition, the reduction of TG secretion was concomitantly accompanied by the reduced incorporation of both exogenous and endogenous fatty acids into this lipid molecule. These results suggest that dietary 5-campestenone exerts its hypotriglyceridemic effect, at least, in part through an enhanced metabolism of endogenous and exogenous fatty acids to oxidation at the expense of esterification in rat liver.

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Year:  2006        PMID: 16802693     DOI: 10.3177/jnsv.52.127

Source DB:  PubMed          Journal:  J Nutr Sci Vitaminol (Tokyo)        ISSN: 0301-4800            Impact factor:   2.000


  1 in total

1.  The Cholesterol Metabolite Cholest-5-en-3-One Alleviates Hyperglycemia and Hyperinsulinemia in Obese (db/db) Mice.

Authors:  Koji Nagao; Nao Inoue; Kunio Suzuki; Takeshi Shimizu; Teruyoshi Yanagita
Journal:  Metabolites       Date:  2021-12-29
  1 in total

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