Oral absorption of ampicillin:: role of paracellular route vs. PepT1 transporter

被引:16
作者
Lafforgue, Guylene [1 ]
Arellano, Cecile [1 ]
Vachoux, Christelle [1 ]
Woodley, John [1 ]
Philibert, Claude [1 ]
Dupouy, Veronique [2 ]
Bousquet-Melou, Alain [2 ]
Gandia, Peggy [1 ,3 ]
Houin, Georges [1 ,3 ]
机构
[1] Fac Pharmaceut Sci, Lab Cinet Xenobiot, F-31062 Toulouse 4, France
[2] Ecole Natl Vet Toulouse, UMR 181, INRA ENVT Physiopathol & Toxicol Expt, F-31076 Toulouse, France
[3] Hop Purpan, Inst Fed Biol, Lab Pharmacocinet & Toxicol Clin, F-31059 Toulouse 9, France
关键词
ampicillin; gut sacs; paracellular transport; PepT1;
D O I
10.1111/j.1472-8206.2008.00572.x
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The beta-lactam antibiotic ampicillin has a relatively poor oral bioavailability in animals and man (30-40%), and its widespread agricultural use in livestock may be contributing to the emergence of antibiotic resistance in the environment. The aim of this study was to define the absorption mechanism by which ampicillin crosses the small intestinal epithelium. The improved rat everted gut sac system was used, with an emphasis on the role of the PepT1 transporter. The absorption kinetics, effects of pH and the use of competitive substrates failed to provide any substantive evidence that the transporter played a major role in ampicillin absorption. Ethylenediaminetetraacetic acid enhanced the absorption, and tissue levels remained low, suggesting that paracellular transport was predominant. pH and competition studies with glycylsarcosine, the widely used PepT1 substrate, also failed to show any transporter activity. Despite evidence from studies with Caco-2 cells that beta-lactam antibiotics are transported by the PepT1 transporter in rat small intestine, the results rather suggest that paracellular diffusion is the major mechanism of absorption, at least for beta-lactam antibiotics with poor bioavailability, such as ampicillin. We suggest that the use of Caco-2 cells underestimates the role of the paracellular route in the absorption of hydrophilic drugs in vivo, and may exaggerate the role of influx transporters.
引用
收藏
页码:189 / 201
页数:13
相关论文
共 49 条
[1]   Cell culture-based models for intestinal permeability: a critique [J].
Balimane, PV ;
Chong, S .
DRUG DISCOVERY TODAY, 2005, 10 (05) :335-343
[2]   The improved everted gut sac: a simple method to study intestinal P-glycoprotein [J].
Barthe, L ;
Bessouet, M ;
Woodley, JF ;
Houin, G .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 1998, 173 (1-2) :255-258
[3]   Gastrointestinal absorption of drugs: methods and studies [J].
Barthe, L ;
Woodley, J ;
Houin, G .
FUNDAMENTAL & CLINICAL PHARMACOLOGY, 1999, 13 (02) :154-168
[4]   An improved everted gut sac as a simple and accurate technique to measure paracellular transport across the small intestine [J].
Barthe, L ;
Woodley, JF ;
Kenworthy, S ;
Houin, G .
EUROPEAN JOURNAL OF DRUG METABOLISM AND PHARMACOKINETICS, 1998, 23 (02) :313-323
[5]   Variation of peptide transporter (PepT1 expression in Caco-2 cells as a function and HPT1) of cell origin [J].
Behrens, I ;
Kamm, W ;
Dantzig, AH ;
Kissel, T .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2004, 93 (07) :1743-1754
[6]   Three-dimensional quantitative structure-activity relationship analyses of β-lactam antibiotics and tripeptides as substrates of the mammalian H+/peptide cotransporter PEPT1 [J].
Biegel, A ;
Gebauer, S ;
Hartrodt, B ;
Brandsch, M ;
Neubert, K ;
Thondorf, I .
JOURNAL OF MEDICINAL CHEMISTRY, 2005, 48 (13) :4410-4419
[7]   The intestinal H+/peptide symporter PEPT1:: structure-affinity relationships [J].
Brandsch, M ;
Knütter, I ;
Leibach, FH .
EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2004, 21 (01) :53-60
[8]   Influence of proton and essential histidyl residues on the transport kinetics of the H+/peptide cotransport systems in intestine (PEPT 1) and kidney (PEPT 2) [J].
Brandsch, M ;
Brandsch, C ;
Ganapathy, ME ;
Chew, CS ;
Ganapathy, V ;
Leibach, FH .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 1997, 1324 (02) :251-262
[9]   Intestinal transport of β-lactam antibiotics:: Analysis of the affinity at the H+/peptide symporter (PEPT1), the uptake into Caco-2 cell monolayers and the transepithelial flux [J].
Bretschneider, B ;
Brandsch, M ;
Neubert, R .
PHARMACEUTICAL RESEARCH, 1999, 16 (01) :55-61
[10]   Linear correlation of the fraction of oral dose absorbed of 64 drugs between humans and rats [J].
Chiou, WL ;
Barve, A .
PHARMACEUTICAL RESEARCH, 1998, 15 (11) :1792-1795