Disruption of multidrug and toxin extrusion MATE1 potentiates cisplatin-induced nephrotoxicity
Male
0301 basic medicine
Cisplatin/metabolism
Organic Cation Transport Proteins
Knockout
Organic Cation Transport Proteins/deficiency
Kidney Diseases/mortality
Platinum agent
Adverse effect
Inbred C57BL
Cell Line
Mice
03 medical and health sciences
H+/organic cation antiporter
Animals
Humans
Pharmacokinetics
Renal handling
Mice, Knockout
Survival Rate/trends
0303 health sciences
Organic cation transporter
3. Good health
Mice, Inbred C57BL
Survival Rate
Kidney Diseases
Cisplatin
Kidney Diseases/metabolism
Cisplatin/toxicity
Kidney Diseases/chemically induced
Organic Cation Transport Proteins/genetics
DOI:
10.1016/j.bcp.2010.08.019
Publication Date:
2010-09-01T09:14:23Z
AUTHORS (5)
ABSTRACT
Multidrug and toxin extrusion 1 (MATE1/SLC47A1) is expressed in the brush-border membrane of renal proximal tubules and mediates the efflux of cationic drugs. In the present study, the role of MATE1 in the nephrotoxicity of cisplatin was investigated in vivo and in vitro. Cisplatin (15mg/kg) was administered intraperitoneally to wild-type (Mate1(+/+)) and Mate1 knockout (Mate1(-/-)) mice. Lifespan was significantly shorter in Mate1(-/-) mice than Mate1(+/+) mice. Three days after the administration of cisplatin, plasma creatinine and blood urea nitrogen (BUN) levels were increased in both Mate1(+/+) and Mate1(-/-) mice compared with vehicle-treated controls, and creatinine clearance was decreased. Moreover, a significant rise in creatinine and BUN levels was observed in cisplatin-treated Mate1(-/-) mice in comparison to Mate1(+/+) mice. A pharmacokinetic analysis revealed the plasma concentration and renal accumulation of cisplatin to be higher in Mate1(-/-) mice than Mate1(+/+) mice 1h after a single intravenous administration of cisplatin (0.5mg/kg). Furthermore, the combination of a selective MATE inhibitor, pyrimethamine, with cisplatin also elevated creatinine and BUN levels compared to cisplatin alone. In experiments in vitro, the cellular uptake of cisplatin was stimulated by the expression of mouse MATE1 as well as organic cation transporters OCT1 and OCT2. In conclusion, MATE1 mediates the efflux of cisplatin and is involved in cisplatin-induced nephrotoxicity.
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