Hostname: page-component-78c5997874-94fs2 Total loading time: 0 Render date: 2024-11-20T02:26:21.023Z Has data issue: false hasContentIssue false

Nutrition, age and drug metabolism

Published online by Cambridge University Press:  28 February 2007

J. W. T. Dickerson
Affiliation:
Department of Biochemistry, University of Surrey, Guildford GU2 5XH
R. Walker
Affiliation:
Department of Biochemistry, University of Surrey, Guildford GU2 5XH
Rights & Permissions [Opens in a new window]

Abstract

Image of the first page of this content. For PDF version, please use the ‘Save PDF’ preceeding this image.'
Type
Symposium on ‘Intraction of Drugs and Nutrition’
Copyright
Copyright © The Nutrition Society 1974

References

REFERENCES

Basu, T. K. (1971). Effect of nutrition on hepatic microsomal drug metabolizing enzymes in growing rats. PhD Thesis, University of Surrey.Google Scholar
Basu, T. K., Dickerson, J. W. T. & Parke, D. V. (1971 a). Biochem. J. 124, 19.CrossRefGoogle Scholar
Basu, T. K., Dickerson, J. W. T. & Parke, D. V. (1971 b). Biochem. J. 125, 16P.CrossRefGoogle Scholar
Basu, T. K., Dickerson, J. W. T. & Parke, D. V. (1973). Biologia Neonat. 23, 109.CrossRefGoogle Scholar
Bender, A. E., Damji, K. B. & Ismail, K. S. (1973). Proc. Nutr. Soc. 32, 74A.Google Scholar
Brandt, I. K. (1964). Devl Biol. 10, 202.Google Scholar
Brodie, B. B., Gillette, J. R. & La Du, B. N. (1958). A. Rev. Biochem. 27, 427.Google Scholar
Cawthorne, M. A., Palmer, E. D. & Green, J. (1973). Biochem. Pharmac. 22, 783.CrossRefGoogle Scholar
Chiesara, E., Clementi, F., Conti, F. & Meldolesi, J. (1967). Lab. Invest. 16, 254.Google Scholar
Conney, A. H. (1967). Pharmac. Rev. 19, 317.Google Scholar
Conney, A. H. & Klutch, A. (1963). J. biol. Chem. 238, 1611.CrossRefGoogle Scholar
Cramer, J. W., Miller, J. A. & Miller, E. C. (1960). J. bid. Chem. 235, 250.CrossRefGoogle Scholar
Darby, F. J. (1971). Biochem. J. 122. 41.CrossRefGoogle Scholar
Das, M. L., Orrenius, S. & Ernster, L. (1968). Eur. J. Biochem. 4, 519.Google Scholar
Dickerson, J. W. T., Basu, T. K. & Parke, D. V. (1971 a). Proc. Nutr. Soc. 30, 5A.Google Scholar
Dickerson, J. W. T., Basu, T. K. & Parke, D. V. (1971 b). Proc. Nutr. Soc. 30, 27A.Google Scholar
Driever, C. W., Bousquet, W. T. & Miya, T. S. (1966). Int. J. Neuro-pharmac. 5, 199.Google Scholar
Eyring, E. J., Crosfeld, J. L. & Connelly, P. A. (1973). Ann. Surg. 177, 307.CrossRefGoogle Scholar
Feuer, G. & Liscio, A. (1969). Nature, Lond. 223, 68.CrossRefGoogle Scholar
Feuer, G. & Liscio, A. (1970). Int. Z. klin. Pharmak. Ther. Toxicol. 3, 30.Google Scholar
Flint, M., Lathe, G. H., Ricketts, T. R. & Silman, G. (1964). Q. Jl exp. Physiol. 49, 66.CrossRefGoogle Scholar
Fouts, J. R. & Adamson, R. H. (1959). Science, N.Y. 129, 897.Google Scholar
Fouts, J. R. & Hart, L. G. (1965). Ann. N.Y. Acad. Sci. 123, 245.Google Scholar
Hart, L. G., Adamson, R. H., Dixon, R. L. & Fouts, J. R. (1962). J. Pharmac. exp. Ther. 137, 103.Google Scholar
Holt, P. G. & Oliver, I. T. (1968). Biochem. J. 108, 339.CrossRefGoogle Scholar
Hurwitz, N. (1969). Br. med. J. i, 536.CrossRefGoogle Scholar
Jondorf, W. R., Maickel, R. P. & Brodie, B. B. (1959). Biochem. Pharmac. 1, 352.Google Scholar
Juchau, M. R. (1971). Toxic. appl. Pharmac. 18, 665.Google Scholar
Kardish, R. & Feuer, G. (1972). Biologia Neonat. 20, 58.Google Scholar
Kato, R., Oshima, T. & Tomizawa, S. (1968). Jap. J. Pharmac. 18, 356.Google Scholar
Kato, R. & Takanaka, A. (1968). J. Biochem., Tokyo 63, 406.Google Scholar
Kato, R., Vassanelli, P., Frontino, G. & Chiesara, E. (1964). Biochem. Pharmac. 13, 1037.CrossRefGoogle Scholar
McLean, A. E. M. & McLean, E. K. (1966). Biochem. J. 100, 564.Google Scholar
McLean, A. E. M. & Verschuuren, H. G. (1969). Br. J. exp. Path. 50, 22.Google Scholar
McLeod, S. M., Renton, K. W. & Eade, N. R. (1972). J. Pharmac. exp. Ther. 183, 489.Google Scholar
Marshall, W. J. & McLean, A. E. M. (1969). Biochem. J. 115, 27P.CrossRefGoogle Scholar
Mueller, D., Reichenbach, F. & Klinger, W. (1971). Acta biol. med. germ. 27, 605.Google Scholar
Murphy, B. E. P. & Diez d'Aux, R. C. (1972). J. clin. Endocr. Metab. 35, 678.Google Scholar
O'Malley, K., Crooks, J., Duke, E. & Stevenson, I. H. (1971). Br. med. J. iii, 607.Google Scholar
Omura, T. & Sato, R. (1964). J. biol. Chem. 239, 2370.CrossRefGoogle Scholar
Parke, D. V. (1968). The Biochemistry of Foreign Compounds. Oxford: Pergamon Press.Google Scholar
Paulini, K., Beneke, G. & Kulka, R. (1971). Beitr. Path. Anat. 144, 319.Google Scholar
Pelkonen, O. (1973). Archs. int. Pharmacodyn. Thér. 202, 281.Google Scholar
Rane, A., Berggren, M., Yaffe, S. & Ericsson, L. E. (1973). Xenobiotica. 3, 27.CrossRefGoogle Scholar
Schlede, E. & Merker, H.-J. (1972). Naunyn-Schmiedebergs Arch. exp. Path. Pharmak. 272, 89.CrossRefGoogle Scholar
Short, C. R. & Davis, L. E. (1970). J. Pharmac. exp. Ther. 174, 185.Google Scholar
Trolle, D. (1968). Lancet ii, 705.CrossRefGoogle Scholar
Villee, D. B. (1973). Clin. Pharmac. Ther. 14, 705.CrossRefGoogle Scholar
Walker, R., Rahim, A. & Parke, D. V. (1973). Proc. R. Soc. Med. 66, 780.Google Scholar
Weiss, C. F., Glazko, A. J. & Weston, J. K. (1960). New Engl. J. Med. 262, 787.Google Scholar
Williams, R. T.. (1967). Fedn Proc. Fedn Am. Socs exp. Biol. 26, 1029.Google Scholar
Wilson, J. T. (1968). Paediat. Res. 2, 514.Google Scholar
Wilson, J. T. (1970). Nature, Lond. 225, 861.Google Scholar
Wilson, J. T. (1972). A. Rev. Pharmac. 12, 423.Google Scholar