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  • Differential changes in functional activity of organic cation transporters in rats with uranyl nitrate-induced acute renal failure.

Differential changes in functional activity of organic cation transporters in rats with uranyl nitrate-induced acute renal failure.

Archives of pharmacal research (2012-09-04)
Han-Joo Maeng, Won-Sik Shim, Sun-Joo Ahn, Sang-Soo Yu, Dae-Duk Kim, Chang-Koo Shim, Suk-Jae Chung
ABSTRACT

We studied the impact of experimental kidney failure on the pharmacokinetics of a model organic cation and investigated the underlying mechanism(s) of the organic cation transporters. The systemic pharmacokinetics and tissue distribution of triethylmethylammonium (TEMA), a model organic cation, were characterized after intravenous doses of 0.3-30 μmol/kg in rats with or without uranyl nitrate-induced acute renal failure (UN-ARF). To study the effect of endogenous substrates in plasma from UN-ARF rats on organic cation transport, rOCT- or rOCT2-dependent uptake of tetraethylammonium (TEA) was studied in rOCT1-transfected or rOCT2-transfected LLC-PK1 cells, respectively. As a result, the AUC for TEMA was increased, probably because of decreased total clearance, and the tissue-to-plasma concentration ratio (T/P ratio) of TEMA was unchanged in the liver but decreased significantly in the kidneys of UN-ARF rats. In vitro, the uptake of TEA was decreased significantly by adding UN-ARF plasma, compared with control plasma, in rOCT2-overexpressing LLC-PK1 cells, but not in rOCT1-overexpressing LLC-PK1 cells. These observations suggest that the induction of UN-ARF leads to an accumulation of endogenous organic cation(s), probably rOCT2 substrate(s), in the plasma, thereby affecting the TEMA pharmacokinetics and distribution to the kidneys in rats.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Triethylmethylammonium chloride, 97%