Comparison of Transport Characteristics of Amino β-Lactam Antibiotics and Dipeptides Across Rat Intestinal Brush Border Membrane

Author:

Iseki Ken1,Sugawara Mitsuru1,Saitoh Hiroshi1,Miyazaki Katsumi1,Arita Takaichi2

Affiliation:

1. Department of Pharmacy, Hokkaido University Hospital, School of Medicine, Hokkaido University, Kita−14−jo, Nishi−5−chome, Kita-ku, Sapporo 060

2. Faculty of Pharmaceutical Sciences, Mukogawa Women’s University, 11-16, Koshien Kyuban-cho, Nishinomiya, Hyogo 663, Japan

Abstract

Abstract The transport characteristics of amino β-lactam antibiotics, ampicillin and cephradine, have been examined and compared with that of glycylglycine using brush border membrane vesicles isolated from rat small intestine. The initial rate of glycylglycine uptake was markedly stimulated in the presence of an inward H + gradient compared with the uptake rates in the absence of an H + gradient. With the same H + gradient the stimulation of cephradine uptake was lower and ampicillin uptake was not altered. Cephradine uptake, however, was greater than that of glycylglycine in both vesicular conditions ((pH)i > (pH)0 and (pH)i = (pH)0). Inhibitory effects of dipeptides, ampicillin and cephradine on the initial uptake of glycylglycine were also examined. Glycylglycine uptake was significantly decreased in the presence of L-phenylalanylglycine or carnosine. Ampicillin and cephradine did not alter the uptake of glycylglycine. These results suggest that the contribution of the inward H+ gradient to the permeation of ampicillin, cephradine and glycylglycine across the rat small intestinal brush border membranes is different for each of the substances examined.

Publisher

Oxford University Press (OUP)

Subject

Pharmaceutical Science,Pharmacology

Reference19 articles.

1. Dietary regulation of intestinal transport of the dipeptide carnosine;Ferraris;Am. J. Physiol.,1988

2. Is intestinal peptide transport energized by a proton gradient;Ganapathy;Ibid.,1985

3. Proton-coupled transport of organic solutes in animal cell membranes and its relation to Na+ transport;Hoshi;Jap. J. Physiol.,1985

4. Binding of amino β-lactam antibiotics to soluble protein from rat intestinal mucosa-I. Purification of drug-binding protein;Iseki;Biochem. Pharmacol.,1987

5. Binding of amino β-lactam antibiotics to soluble protein from rat intestinal mucosa-H. Mutual inhibition of binding among amino β-lactam antibiotics and binding characteristics;Iseki;Ibid.,1987

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