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Elife|November 7, 2024
SLC35G1 is a highly chloride-sensitive transporter responsible for the basolateral membrane transport in intestinal citrate absorptionYoshihisa Mimura, Tomoya Yasujima, Katsuhisa Inoue, et al.Drug Metabolism and Pharmacokinetics|July 12, 2020
Pharmacokinetic functions of human induced pluripotent stem cell-derived small intestinal epithelial cellsTomoki Kabeya, Shinji Mima, Yuki Imakura, et al.Scientific Reports|October 24, 2018
Isolation of a novel glycyrrhizin metabolite as a causal candidate compound for pseudoaldosteronismOsamu Morinaga, Kan'ichiro Ishiuchi, Takeshi Ohkita, et al.Biochimica Et Biophysica Acta. Molecular Basis of Disease|May 4, 2025
The role of FLVCR1 and FLVCR2 in choline transport in the Caco-2 intestinal epithelial cell model and rat small intestineTomoya Yasujima, Chitaka Namba, Yosuke Azuma, et al.Scientific Reports|February 9, 2019
18β-glycyrrhetyl-3-O-sulfate would be a causative agent of licorice-induced pseudoaldosteronismKan'ichiro Ishiuchi, Osamu Morinaga, Takeshi Ohkita, et al.Case Reports in Oncological Medicine|February 26, 2026
Sustained Drug-Drug Interaction Between Cyclosporine and Apalutamide in a Patient With Metastatic Hormone-Sensitive Prostate Cancer: A Case Report and Evaluation of CYP3A4 Induction via Pregnane X Receptor Activation by ApalutamideYoshihisa Mimura, Takaomi Sanda, Rei Unno, et al.The Journal of Biological Chemistry|February 27, 2026
SLC52A1 Is a Neofunctionalized Primate Urate Transporter Enabling Intestinal Urate SecretionSyunsuke Yamamoto, Katsuhisa Inoue, Tomoya Yasujima, et al.Annals of the Rheumatic Diseases|December 1, 2016
GWAS of clinically defined gout and subtypes identifies multiple susceptibility loci that include urate transporter genesAkiyoshi Nakayama, Hirofumi Nakaoka, Ken Yamamoto, et al.Pageof 4