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Transient, Tunable Expression of NTCP and BSEP in MDCKII Cells for Kinetic Delineation of the Rate-Determining Process and Inhibitory Effects of Rifampicin in Hepatobiliary Transport of Taurocholate

Authors :
Sumito Ito
Wooin Lee
Masa Yasunaga
Ayano Mori
Sumio Ohtsuki
Yuichi Sugiyama
Ji Eun Park
Source :
Journal of Pharmaceutical Sciences. 110:365-375
Publication Year :
2021
Publisher :
Elsevier BV, 2021.

Abstract

In predicting the hepatic elimination of compounds, the extended clearance concept has proven useful. Yet, its experimental proof was scarce partly due to the lack of models with the controlled expression of transporters. Here, the uptake and efflux transporters [NTCP (SLC10A1) and BSEP (ABCB11), respectively] were doubly and transiently expressed in MDCKII cells by electroporation-based transfection (with the BSEP plasmid amount varied and with the NTCP plasmid fixed), achieving the activity levels of NTCP and BSEP comparable to those of sandwich cultured human hepatocytes. The biliary excretion clearance for taurocholate increased proportionally to the BSEP expression level. Under the same conditions, the basal-to-apical transcellular clearance of taurocholate displayed an initial increase, and a subsequent plateau, indicating that the basolateral uptake of taurocholate became rate-limiting. The doubly transfected MDCKII cells were also used to kinetically analyze the inhibitory effects of rifampicin on BSEP and NTCP. The obtained results showed a bell-shaped profile for cell-to-medium concentration ratios over a range of rifampicin concentrations, which were quantitatively captured by kinetic modeling based on the extended clearance concept. The present study highlights the utility of the transient, tunable transporter expression system in delineating the rate-determining process and providing mechanistic insights into intracellular substrate accumulation.

Details

ISSN :
00223549
Volume :
110
Database :
OpenAIRE
Journal :
Journal of Pharmaceutical Sciences
Accession number :
edsair.doi.dedup.....2e67a5d1068fa7b0f37669d61dfc89d4
Full Text :
https://doi.org/10.1016/j.xphs.2020.10.064