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R Fears

Publications and source records attributed to R Fears.

59 records · Page 4Linked to original sources

The participation of ethyl 4-benzyloxybenzoate (BRL 10894) and other aryl-substituted acids in glycerolipid metabolism.

Investigation into the mechanism of action of BRL 10894 (ethyl 4-benzyloxybenzoate), a compound possessing hypolipidemic activity in the rat, disclosed participation in glycerolipid metabolism. In the presence of BRL 10894, an abnormal metabolite was synthesized in vitro using liver slices or rings of small intestine with glycerol, palmitate, or monoolein as substrate, and using adipose tissue with pyruvate as substrate. Esters related chemically to BRL 10894 and other pharmacologically active acids (e.g., ibuprofen) also produced abnormal metabolites in vitro. With BRL 10894 in the diet, a similar metabolite was produced in vivo in rats and accumulated in adipose tissue. Chemical characterization of the material synthesized in vivo showed that the metabolite was a triglyceride in which one fatty acid moiety was substituted by the acid of BRL 10894. Additional proof of this structure was obtained by comparison with reference material synthesized in our laboratories. The study of the initimate involvement of exogenous acids in glycerolipid turnover is of value in the characterization of pharmacologically important acids and may be of use in achieving a greater understanding of certain aspects of lipid metabolism.

Adipose Tissue

Hypolipidemic analogues of ethyl 4-benzyloxybenzoate.

A series of compounds related to ethyl 4-benzyloxybenzoate was synthesized and evaluated for potential hypolipidemic activity in rats. Structure--activity relationships are discussed in terms of cholesterol-lowering activity together with effects on weight gain and liver lipids. A number of the compounds inhibited cholesterol and free fatty acid biosynthesis from [1-14C]acetate in rat liver slices in vitro. Ethyl 4-benzyloxybenzoate, ethyl-4-benzyloxybenzoic acid, ethyl 4-p-bromobenzyloxybenzoates, and 4-o-methoxybenzyloxyphenyl acetate exhibited the most favorable spectrum of activity.

Animals

Studies on the response of cholesterol biogenesis in feeding in rats: evidence against the existence of diurnal rhythms.

1. The biosynthesis of cholesterol was studied, by using various precursors, in rats subjected to several dietary regimes. 2. The use of 3H2O as a substrate to demonstrate differences in cholesterogenesis under various conditions was validated by using rats fed on cholesterol or cholestyramine. Cholesterol feeding resulted in decreased cholesterogenesis, whereas cholestyramine caused an increase. 3. With acetate as precursor, the biosynthesis of both digitonin-precipitable sterol and fatty acids was increased in vitro in response to a meal. 4. In rats fed ad libitum, hepatic cholesterogenesis was increased at midnight relative to mid-morning as measured by using acetate precursor in vitro. However, no such difference was found by using 3H2O in vivo. 5. The lipogenic response was measured in meal-fed rats by using 3H2O or octanoate in vivo. In contrast with findings with acetate in vitro, no postprandial stimulation of cholesterogenesis was seen with either 3H2O or octanoate as precursor, whereas fatty acid biosynthesis from either substrate was increased. 6. These findings are discussed with respect to current theories about the circadian rhythm of cholesterogenesis. Such theories are based on experiments using isolated enzyme measurements or non-physiological precursors such as acetate. 7. It is considered that results obtained with 3H2O give an accurate representation of cholesterogenesis under various conditions, and it is therefore suggested that hepatic cholesterogenesis in rats is not subjected to the same degree of diurnal rhythm as has previously been believed.

Acetates