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Micellar solubilization of fatty acids in aqueous media containing bile salts and phospholipids

Published online by Cambridge University Press:  25 March 2008

A. Smith
Affiliation:
Rowett Research Institute, Bucksburn, Aberdeen AB2 9SB
A. K. Lough
Affiliation:
Rowett Research Institute, Bucksburn, Aberdeen AB2 9SB
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Abstract

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1. The solubility of fatty acids in aqueous media containing bile salts alone and in admixture with either lecithin (phosphatidylcholine) or phosphatidylethanolamine was determined.

2. Over the pH range 2.0–7.4, the order of fatty acid solubility in aqueous solutions containing bile salts was linoleic > oleic > elaidic > palmitic > stearic. The solubility of each fatty acid increased as the pH of the micellar solution increased.

3. Addition of lecithin to aqueous solutions of bile salts greatly increased the solubility of palmitic acid and stearic acid.

4. In the presence of bile salts and lecithin, the solubility of oleic acid and elaidic acid decreased with increasing pH of the micellar solution, indicating a competitive effect between the fatty acid anions and lecithin. The solubility of linoleic acid increased linearly with lecithin concentration.

5. Phosphatidylethanolamine as an additive to bile salts increased the solubility of both saturated and unsaturated fatty acids in the pH range 2.0–7.4. The effectiveness of phosphatidylethanolamine as an amphiphile was similar to that of lecithin, although at pH 3.0 fatty acid solubility was greater in the presence of phosphatidylethanolamine.

6. The significance of these findings is discussed in relation to the intestinal absorption of fatty acids in sheep.

Type
Papers on General Nutrition
Copyright
Copyright © The Nutrition Society 1976

References

Bangham, A. D. (1968). Prog. Biophys. mol. Biol. 18, 29.CrossRefGoogle Scholar
Dittmer, J. C. & Lester, R. L. (1964). J. Lipid Res. 5, 126.CrossRefGoogle Scholar
Elving, P. J., Markowitz, J. M. & Rosenthal, I. (1956). Analyt. Chem. 28, 1179.CrossRefGoogle Scholar
Freeman, C. P. (1969). Br. J. Nutr. 23, 249.CrossRefGoogle Scholar
Garton, G. A. (1967). Wld Rev. Nutr. Diet. 7, 225.CrossRefGoogle Scholar
Hartley, G. S. (1938). J. chem. Soc. p. 1968.CrossRefGoogle Scholar
Heath, T. J. & Hill, L. N. (1969). Aust. J. biol. Sci. 22, 1015.CrossRefGoogle Scholar
Heath, T. J. & Morris, B. (1963). Br. J. Nutr. 17, 465.CrossRefGoogle Scholar
Hendler, R. W. (1964). Analyt. Biochem. 7, 110.CrossRefGoogle Scholar
Hofmann, A. F. (1963). Biochem. J. 89, 57.CrossRefGoogle Scholar
Hofmann, A. F. (1964). In Naw Biochemical Separations, p. 266 [James, A. T. and Morris, L. J., editors]. London: van Nostrand.Google Scholar
Hofmann, A. F. & Borgström, B. (1962). Fedn Proc. Fedn Am. Socs exp. Biol. 21, 43.Google Scholar
Hofmann, A. F. & Small, D. M. (1967). A. Rev. Med. 18, 333.CrossRefGoogle Scholar
John, L. M. & McBain, J. W. (1948). J. Am. Oil Chem. Soc. 25, 40.CrossRefGoogle Scholar
Kunsman, J. E. (1966). Characterisation of the lipids from pure cultures of rumen bacteria. PhD Thesis, University of Maryland, USA.Google Scholar
Leat, W. M. F. & Harrison, F. A. (1969). Q. Jl exp. Physiol. 54, 187.CrossRefGoogle Scholar
Lennox, A. M. & Garton, G. A. (1968). Br.J. Nutr. 22, 247.CrossRefGoogle Scholar
Lennox, A. M., Lough, A. K. & Garton, G. A. (1968). Br. J. Nutr. 22, 237.CrossRefGoogle Scholar
McBain, J. W. & Sierichs, W. C. (1948). J. Am. Oil Chem. Soc. 25, 221.CrossRefGoogle Scholar
Malins, D. C. & Mangold, H. K. (1960). J. Am. Oil Chem. Soc. 37, 576.CrossRefGoogle Scholar
Rhodes, D. N. & Lea, C. H. (1957). Biochem. J. 65, 526.CrossRefGoogle Scholar
Rouser, G. (1968). Biochem. Prep. 12, 73.Google Scholar
Savary, P. (1966). Biochim. biophys. Acta 125, 328.CrossRefGoogle Scholar
Scott, A. M. & Lough, A. K. (1971). Br. J. Nutr. 25, 307.Google Scholar
Small, D. M. (1971). In The Bile Acids, Chemistry, Physiology and Metabolism, vol. 1, p. 249 [Nair, D. P. and Kritchevsky, D., editors]. New York: Plenum Publishing Co.CrossRefGoogle Scholar
Smith, A., Anderson, L. J. & Lough, A. K. (1973). Chemry Ind. p. 484.Google Scholar
Smith, A. & Lough, A. K. (1973). Proc. Nutr. Soc. 32, 62A.Google Scholar