A novel hPepT1 stably transfected cell line: establishing a correlation between expression and function.
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G. Knipp | D. Wall | Ronald L Smith | Ronald L. Smith | O. Gudmundsson | Julita Timoszyk | Dea Herrera-Ruiz | Rajinder K Bhardwaj | Olafur S Gudmundsson | Paul Moench | D. Herrera-Ruiz | R. Bhardwaj | Teresa N Faria | Doris A Wall | Gregory T Knipp | T. Faria | J. Timoszyk | Paul A Moench
[1] J. Noël,et al. Functional expression of tagged human Na+—glucose cotransporter in Xenopus laevis oocytes , 1999, The Journal of physiology.
[2] K. Audus,et al. The Use of Cultured Epithelial and Endothelial Cells for Drug Transport and Metabolism Studies , 1990, Pharmaceutical Research.
[3] H. Saito,et al. Effects of glibenclamide on glycylsarcosine transport by the rat peptide transporters PEPT1 and PEPT2 , 1999, British journal of pharmacology.
[4] J. Beaulieu,et al. Clonal analysis of sucrase-isomaltase expression in the human colon adenocarcinoma Caco-2 cells. , 1991, The Biochemical journal.
[5] R. Wood,et al. Vitamin D-inducible calcium transport and gene expression in three Caco-2 cell lines. , 2002, American journal of physiology. Gastrointestinal and liver physiology.
[6] Per Artursson,et al. Intestinal Drug Absorption and Metabolism in Cell Cultures: Caco-2 and Beyond , 1997, Pharmaceutical Research.
[7] T. Nakanishi,et al. The Predominant Contribution of Oligopeptide Transporter PepT1 to Intestinal Absorption of β‐Lactam Antibiotics in the Rat Small Intestine , 1997, The Journal of pharmacy and pharmacology.
[8] H. Saito,et al. Characterization of stably transfected kidney epithelial cell line expressing rat H+/peptide cotransporter PEPT1: localization of PEPT1 and transport of beta-lactam antibiotics. , 1997, The Journal of pharmacology and experimental therapeutics.
[9] I. Pastan,et al. A retrovirus carrying an MDR1 cDNA confers multidrug resistance and polarized expression of P-glycoprotein in MDCK cells. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[10] F. Suchy,et al. Sorting of rat liver and ileal sodium-dependent bile acid transporters in polarized epithelial cells. , 1998, American journal of physiology. Gastrointestinal and liver physiology.
[11] A. Dantzig,et al. Peptide transporter function and prolidase activities in Caco-2 cells: a lack of coordinated expression. , 1995, Journal of drug targeting.
[12] P Langguth,et al. P-Glycoprotein (P-gp) mediated efflux in Caco-2 cell monolayers: the influence of culturing conditions and drug exposure on P-gp expression levels. , 1998, Journal of pharmaceutical sciences.
[13] L. Benet,et al. Comparison of Bidirectional Cephalexin Transport Across MDCK and Caco-2 Cell Monolayers: Interactions with Peptide Transporters , 2004, Pharmaceutical Research.
[14] G. Knipp,et al. Current perspectives on established and putative mammalian oligopeptide transporters. , 2003, Journal of pharmaceutical sciences.
[15] A. Guo,et al. Direct evidence for peptide transporter (PepT1)-mediated uptake of a nonpeptide prodrug, valacyclovir. , 1998, Biochemical and biophysical research communications.
[16] D. Meredith,et al. Structure and function of eukaryotic peptide transporters , 2000, Cellular and Molecular Life Sciences CMLS.
[17] V. Ganapathy,et al. Valacyclovir: a substrate for the intestinal and renal peptide transporters PEPT1 and PEPT2. , 1998, Biochemical and biophysical research communications.
[18] J. Finley,et al. The Influence of Culture Time and Passage Number on the Morphological and Physiological Development of Caco-2 Cells , 1997, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[19] W. Sadee,et al. An oligopeptide transporter is expressed at high levels in the pancreatic carcinoma cell lines AsPc-1 and Capan-2. , 1998, Cancer research.
[20] Fermín Sánchez de Medina,et al. Development of an endogenous epithelial Na+/H+exchanger (NHE3) in three clones of Caco-2 cells. , 1999, American journal of physiology. Gastrointestinal and liver physiology.
[21] M. Caplan,et al. Expression of neurotransmitter transport systems in polarized cells. , 1998, Methods in enzymology.
[22] P J Sinko,et al. Interactions of a nonpeptidic drug, valacyclovir, with the human intestinal peptide transporter (hPEPT1) expressed in a mammalian cell line. , 1999, The Journal of pharmacology and experimental therapeutics.
[23] R T Borchardt,et al. Paracellular diffusion in Caco-2 cell monolayers: effect of perturbation on the transport of hydrophilic compounds that vary in charge and size. , 1997, Journal of pharmaceutical sciences.
[24] V. Ganapathy,et al. H(+)-peptide cotransport in Madin-Darby canine kidney cells: expression and calmodulin-dependent regulation. , 1995, The American journal of physiology.
[25] G. Amidon,et al. Correlation between epithelial cell permeability of cephalexin and expression of intestinal oligopeptide transporter. , 2001, Journal of Pharmacology and Experimental Therapeutics.
[26] G. Amidon,et al. CHO/hPEPT1 cells overexpressing the human peptide transporter (hPEPT1) as an alternative in vitro model for peptidomimetic drugs. , 1999, Journal of pharmaceutical sciences.
[27] A. Barbat,et al. Presence and differential expression of SGLT1, GLUT1, GLUT2, GLUT3 and GLUT5 hexose-transporter mRNAs in Caco-2 cell clones in relation to cell growth and glucose consumption. , 1994, The Biochemical journal.