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Pharmaceutical Research|October 22, 2003
Inhibitory effect of zinc on PEPT1-mediated transport of glycylsarcosine and beta-lactam antibiotics in human intestinal cell line Caco-2Miyako Okamura, Tomohiro Terada, Toshiya Katsura, et al.
The Journal of Pharmacology and Experimental Therapeutics|February 23, 2007
Characterization of the Basal promoter element of human organic cation transporter 2 geneJun-ichi Asaka, Tomohiro Terada, Ken Ogasawara, et al.
The Journal of Pharmacology and Experimental Therapeutics|July 1, 2006
Human organic anion transporter 3 gene is regulated constitutively and inducibly via a cAMP-response elementKen Ogasawara, Tomohiro Terada, Jun-Ichi Asaka, et al.
Molecular Pharmacology|March 1, 2007
Identification of essential histidine and cysteine residues of the H+/organic cation antiporter multidrug and toxin extrusion (MATE)Jun-ichi Asaka, Tomohiro Terada, Masahiro Tsuda, et al.
Pharmaceutical Research|March 22, 2006
Androgen receptor is responsible for rat organic cation transporter 2 gene regulation but not for rOCT1 and rOCT3Jun-ichi Asaka, Tomohiro Terada, Masahiro Okuda, et al.
American Journal of Physiology. Renal Physiology|March 9, 2007
Hepatocyte nuclear factor-4{alpha} regulates the human organic anion transporter 1 gene in the kidneyKen Ogasawara, Tomohiro Terada, Jun-ichi Asaka, et al.
Drug Metabolism and Disposition: the Biological Fate of Chemicals|August 20, 2008
Significance of organic cation transporter 3 (SLC22A3) expression for the cytotoxic effect of oxaliplatin in colorectal cancerSachiko Yokoo, Satohiro Masuda, Atsushi Yonezawa, et al.
Molecular Pharmacology|April 1, 2009
Targeted disruption of the multidrug and toxin extrusion 1 (mate1) gene in mice reduces renal secretion of metforminMasahiro Tsuda, Tomohiro Terada, Tomoyuki Mizuno, et al.
Drug Metabolism and Pharmacokinetics|April 19, 2012
Renal tubular secretion of varenicline by multidrug and toxin extrusion (MATE) transportersMoto Kajiwara, Satohiro Masuda, Shingo Watanabe, et al.
American Journal of Physiology. Renal Physiology|October 19, 2006
Oppositely directed H+ gradient functions as a driving force of rat H+/organic cation antiporter MATE1Masahiro Tsuda, Tomohiro Terada, Jun-ichi Asaka, et al.
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