The origin of urinary aromatic compounds excreted by ruminants 1. The metabolism of quinic, cyclohexanecarboxylic and non-phenolic aromatic acids to benzoic acid
- 1 January 1982
- journal article
- research article
- Published by Cambridge University Press (CUP) in British Journal of Nutrition
- Vol. 47 (1) , 139-154
- https://doi.org/10.1079/bjn19820019
Abstract
1. The contribution of dietary constituents to the large urinary output of benzoic acid characteristic of ruminants and some herbivores is not well understood.2. Methods for the analysis of quinic, cyclohexanecarboxylic, benzoic, phenylacetic, 3-phenylpropionic and cinnamic acids in urine and in rumen fluids were developed.3. The urinary output of aromatic acids by sheep given seven rations was determined: benzoic acid output varied between 2·8 and 7·8 g/d; phenylacetic acid output between 0·16 and 1·3 g/d; cinnamic acid between 0·08 and 0·25 g/d and small amounts of 3-phenylpropionic acid were found in some samples.4. Increments in urinary aromatic acid excretion were determined when the acids listed in paragraph 2 were infused via rumen or abomasal cannulas.5. When cyclohexanecarboxylic acid was infused 40% of the dose was excreted as urinary benzoic acid after either route of infusion. Quinic acid was completely metabolized in the rumen: following rumen infusion between 16 and 53% of the infused acid was recovered as urinary benzoic acid; none was so recovered after abomasal infusion.6. Urinary recoveries of rumen- and abomasally-infused aromatic acids were: benzoic acid 90 and 88% respectively as benzoic acid, phenylacetic acid 78 and 83% respectively as phenylacetic acid, 3-phenylpropionic acid 96 and 105% respectively as benzoic acid and cinnamic acid, 70 and 70% respectively as benzoic acid.7. The concentration of aromatic acids in rumen fluid varied with time after feeding: cyclohexanecarboxylic acid was maximal (7 mg/l) 1 h after feeding, benzoic acid was always a minor component (0·5 ± 0·5 mg/l), phenylacetic acid varied between 0 and 35 mg/1 and 3-phenylpropionic acid between 25 and 47 mg/l. Cinnamic acid was not found in rumen fluid but on rumen infusion of this acid the concentration of 3-phenylpropionic acid in rumen fluid increased by 10 mg/l rumen fluid per g infused per d.8. The incomplete metabolism of quinic and cyclohexanecarboxylic acids to urinary benzoic acid is discussed. It is concluded that the principal dietary precursors of urinary benzoic acid in ruminants are compounds yielding 3-phenylpropionic acid on microbial fermentation in the rumen. The small amount of cinnamic acid characteristic of ruminant urine arises as an intermediate in the β-oxidation of 3-phenylpropionic acid in the body tissues.This publication has 29 references indexed in Scilit:
- Identification of urinarym-hydroxyphenylhydracrylic acid by gas chromatography-mass spectrometryJournal of Mass Spectrometry, 1974
- Urinary aromatic acid excretion by fed and fasted sheep in relation to protein metabolism in the rumenBritish Journal of Nutrition, 1973
- Studies on Components of Mammalian UrineAgricultural and Biological Chemistry, 1971
- The urinary excretion of aromatic acids by starved sheepBritish Journal of Nutrition, 1969
- The fermentation of sugar-beet pulp and sucrose in an artificial rumen, and the effect of linseed oil fatty acids on the fermentationBritish Journal of Nutrition, 1969
- Phenylalanine biosynthesis from phenylacetic acid by anaerobic bacteria from the rumenBiochemical and Biophysical Research Communications, 1965
- A note on the collection of urine from male cattle and sheepThe Journal of Agricultural Science, 1963
- The hydroxylation of benzoic acid by rats and guinea-pigsBiochimica et Biophysica Acta, 1962
- Les acides organiques de l'urine dans quelques cas normaux et pathologiquesClinica Chimica Acta; International Journal of Clinical Chemistry, 1960
- Exogenous Sources of Urinary Phenol and Indole AcidsNature, 1958