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Neuroscience Research|August 24, 2006
Functional characterization of the brain-to-blood efflux clearance of human amyloid-beta peptide (1-40) across the rat blood-brain barrierShingo Ito, Sumio Ohtsuki, Tetsuya TerasakiBrain and Nerve = Shinkei Kenkyu No Shinpo|February 13, 2013
[Multi-disciplinary research approaches on the brain barrier transport system, a dynamic interface]Masanori Tachikawa, Yasuo Uchida, Tetsuya TerasakiInternational Journal of Pharmaceutics|November 14, 2002
Recent advances in the brain-to-blood efflux transport across the blood-brain barrierKen-ichi Hosoya, Sumio Ohtsuki, Tetsuya TerasakiAdvances in Pharmacology (San Diego, Calif.)|October 14, 2014
Pharmacological significance of prostaglandin E2 and D2 transport at the brain barriersMasanori Tachikawa, Ken-ichi Hosoya, Tetsuya TerasakiJournal of Cellular Physiology|August 28, 2003
Rat brain pericyte cell lines expressing beta2-adrenergic receptor, angiotensin II receptor type 1A, klotho, and CXCR4 mRNAs despite having endothelial cell markersTomoko Asashima, Hisashi Iizasa, Tetsuya Terasaki, et al.The Journal of Pharmacology and Experimental Therapeutics|August 11, 2011
Blood-brain barrier (BBB) pharmacoproteomics: reconstruction of in vivo brain distribution of 11 P-glycoprotein substrates based on the BBB transporter protein concentration, in vitro intrinsic transport activity, and unbound fraction in plasma and brain in miceYasuo Uchida, Sumio Ohtsuki, Junichi Kamiie, et al.Pharmaceutical Research|February 24, 2007
Establishing a method to isolate rat brain capillary endothelial cells by magnetic cell sorting and dominant mRNA expression of multidrug resistance-associated protein 1 and 4 in highly purified rat brain capillary endothelial cellsSumio Ohtsuki, Hirofumi Yamaguchi, Tomoko Asashima, et al.Journal of Pharmaceutical Sciences|May 12, 2011
Quantitative targeted absolute proteomics-based ADME research as a new path to drug discovery and development: methodology, advantages, strategy, and prospectsSumio Ohtsuki, Yasuo Uchida, Yoshiyuki Kubo, et al.Molecular Pharmaceutics|April 13, 2019
Organic Anion-Transporting Polypeptide 1a4 (Oatp1a4/Slco1a4) at the Blood-Arachnoid Barrier is the Major Pathway of Sulforhodamine-101 Clearance from Cerebrospinal Fluid of RatsYuka Yaguchi, Masanori Tachikawa, Zhengyu Zhang, et al.Journal of Neurochemistry|May 9, 2015
Quantitative targeted absolute proteomics of rat blood-cerebrospinal fluid barrier transporters: comparison with a human specimenYasuo Uchida, Zhengyu Zhang, Masanori Tachikawa, et al.Pageof 25