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description
| - wetenschappelijk artikel (nl)
- наукова стаття, опублікована в січні 1988 (uk)
- im Januar 1988 veröffentlichter wissenschaftlicher Artikel (de)
- artículu científicu espublizáu en xineru de 1988 (ast)
- artikull shkencor i botuar më 01 janar 1988 (sq)
- scientific article published on 01 January 1988 (en)
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| - Lin JH
- Duggan DE
- Ulm EH
- Los LE
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rdfs:label
| - Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (en)
- Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (nl)
- Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (sq)
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skos:prefLabel
| - Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (en)
- Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (nl)
- Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (sq)
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name
| - Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (en)
- Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (nl)
- Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (sq)
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| - Kinetic studies on the competition between famotidine and cimetidine in rats. Evidence of multiple renal secretory systems for organic cations (en)
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is cites work
of | - Effects of probenecid and cimetidine on renal disposition of ofloxacin in rats.
- Luminal transport system for H+/organic cations in the rat proximal tubule. Kinetics, dependence on pH; specificity as compared with the contraluminal organic cation-transport system
- Bisubstrates: substances that interact with renal contraluminal organic anion and organic cation transport systems. I. Amines, piperidines, piperazines, azepines, pyridines, quinolines, imidazoles, thiazoles, guanidines and hydrazines
- Contraluminal transport of organic cations in the proximal tubule of the rat kidney. I. Kinetics of N1-methylnicotinamide and tetraethylammonium, influence of K+, HCO3-, pH; inhibition by aliphatic primary, secondary and tertiary amines and mono- an
- Renal contraluminal transport systems for organic anions (paraaminohippurate, PAH) and organic cations (N1-methyl-nicotinamide, NMeN) do not see the degree of substrate ionization
- Molecular cloning and functional analyses of OAT1 and OAT3 from cynomolgus monkey kidney
- Use of in vivo animal models to assess pharmacokinetic drug-drug interactions
- Famotidine. An updated review of its pharmacodynamic and pharmacokinetic properties, and therapeutic use in peptic ulcer disease and other allied diseases
- Effects of drug transporters on volume of distribution
- Pharmacokinetic and pharmacodynamic properties of histamine H2-receptor antagonists. Relationship between intrinsic potency and effective plasma concentrations
- The Effect of Famotidine, a MATE1-Selective Inhibitor, on the Pharmacokinetics and Pharmacodynamics of Metformin
- Saturable pharmacokinetics in the renal excretion of drugs
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