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Published on: April 21, 2014
Organic cation transporter 3: expression in failing and nonfailing human heart and functional characterization
Thomas F Solbach1, Markus Grube, Martin F Fromm
1Institute of Experimental and Clinical Pharmacology and Toxicology, Friedrich-Alexander-Universität Erlangen-Nürnberg, Fahrstrasse 17, Erlangen, Germany.
Abstract:
The organic cation transporter 3 (OCT3, SLC22A3) contributes to the control of cardiac catecholamine concentrations and is important for the disposition and action of cationic drugs, such as metformin, in the myocardium. We sought to characterize the regulation of OCT3 in failing human hearts and to study commonly prescribed drugs for their potential to interact with OCT3-dependent uptake of metformin. SLC22A3 was expressed high in the human heart with strongest OCT3 immunoreactivity in vascular endothelial cells. SLC22A3/OCT3 expression was not changed in failing human left ventricular myocardium compared with nonfailing control tissues and thus is not involved in altered catecholamine homeostasis generally observed in failing hearts. Michaelis-Menten kinetics of OCT3-mediated uptake of prototypical OCT substrates 1-methyl-4-phenylpyridinium and metformin were studied in human embryonic kidney 293 cells stably overexpressing OCT3. The affinity of 1-methyl-4-phenylpyridinium for OCT3 was much higher (Km 157 ± 16 μM) than the affinity of metformin (Km 2.46 ± 0.36 mM; P < 0.01), whereas maximum transport rate of 1-methyl-4-phenylpyridinium was significantly lower than that of metformin. Verapamil, carvedilol, imipramine, and cimetidine were competitive inhibitors of OCT3-mediated metformin uptake (Ki 3.6-15.8 μM). Altogether, OCT3 might be important for the cardiac disposition of cationic drugs, and OCT3-dependent interaction with concomitantly administered compounds may limit their disposition and effect.
Insights
Organic cation transporter 3 (OCT3) in the heart is not altered in heart failure. However, common cardiovascular drugs can inhibit OCT3, potentially affecting metformin
Area of Science:
- Cardiovascular Pharmacology
- Drug Transporter Research
- Molecular Cardiology
Background:
- Organic cation transporter 3 (OCT3, SLC22A3) influences cardiac catecholamines and cationic drug disposition.
- OCT3 plays a role in the myocardial uptake and action of drugs like metformin.
Purpose of the Study:
- To investigate OCT3 regulation in failing human hearts.
- To assess interactions between commonly prescribed drugs and OCT3-mediated metformin uptake.
Main Methods:
- Quantified SLC22A3/OCT3 expression in failing and non-failing human hearts.
- Utilized human embryonic kidney 293 cells overexpressing OCT3 to study Michaelis-Menten kinetics.
- Assessed competitive inhibition of metformin uptake by various drugs.
Main Results:
- SLC22A3/OCT3 expression remained unchanged in failing human left ventricular myocardium.
- OCT3 exhibited higher affinity for 1-methyl-4-phenylpyridinium than metformin.
- Verapamil, carvedilol, imipramine, and cimetidine competitively inhibited OCT3-mediated metformin uptake.
Conclusions:
- OCT3 is not implicated in altered catecholamine homeostasis in heart failure.
- OCT3 is crucial for cardiac disposition of cationic drugs.
- Concomitant medications may interact with OCT3, potentially limiting drug disposition and efficacy.
