Assessment of the contribution of alpha 1-acid glycoprotein to the serum binding of basic drugs using serum treated with sulphosalicylic acid and DEAE-cellulose

Suzuki, Y.; Sugiyama, Y.; Sawada, Y.; Iga, T.; Hanano, M.

Journal of Pharmacy and Pharmacology 37(10): 712-717

1985


ISSN/ISBN: 0022-3573
PMID: 2867139
Document Number: 241969
Treatment of human serum with DEAE-cellulose in acid conditions almost completely removed .alpha.1-acid glycoprotein (.alpha.1-AG) with little change in the concentration of albumin and .beta.-lipoprotein, while treatment with sulphosalicylic acid removed almost all the proteins except .alpha.1-AG. The binding of various drugs to serum treated as above was measured by equilibrium dialysis and the contribution of .alpha.1-AG to drug binding by human serum was assessed. Sulphosalicylic acid-treated serum exhibited a saturable binding for propranolol, which was considered to be due to the binding to .alpha.1-AG while DEAE-cellulose-treated serum mostly exhibited non-saturable binding, for which albumin and .beta.-lipoprotein may be responsible. With this treated serum, .alpha.1-AG was estimated to contribute approximately 40% to the binding of therapeutic concentrations of propranolol, 15% to that of imipramine and 15-20% to that of desipramine, respectively, in serum samples pooled from healthy adults. However, no contribution of .alpha.1-AG was observed in the binding of salicylic acid to the serum. Dissociation constants of the propranolol binding to the high affinity site in control serum, sulphosalicylic acid-treated serum and purified .alpha.1-AG showed similar values (3.7-6.7 .mu.M). These results suggest that treatment of serum with sulphosalicylic acid and DEAE cellulose is useful in assessing the contribution of .alpha.1-AG to the serum binding of basic drugs.

Document emailed within 1 workday
Secure & encrypted payments