URINE FLOW DEPENDENCE OF RENAL CLEARANCE AND INTERRELATION OF RENAL REABSORPTION AND PHYSICOCHEMICAL PROPERTIES OF DRUGS
- 1 March 1986
- journal article
- research article
- Vol. 14 (2) , 239-245
Abstract
A physiologically based model is presented for the analysis of the reabsorption kinetics of drugs in the renal tubules. The two reabsorption parameters, AR(I) .cntdot. Pe and .sigma., expressing the permeability of a drug through lipoidal membranes and the reflection coefficient, respectively, are obtained on the basis of this model using the results of clearance experiments in rats. These two reabsorption parameters are compared among four drugs, sulfanilamide, sulfamethizole, theophylline, and ethanol. Urine flow dependence of the percentage of reabsorbed drugs is reasonably expressed by the models. Moreover, the percentage of reabsorbed drugs which are highly reflected at the membranes is affected by the change of the glomerular filtration rate. In contrast, the percentage of reabsorbed drugs, such as ethanol, having a small reflection coefficient is not sensitive to the glomerular filtration rate. A good linear relationship is obtained between AR(I) .cntdot. Pe and the n-octanol/water partition coefficient. The reflection coefficient is related to the molecular weight of the compound. The reflection coefficient of ethanol is small becuase of its low molecular weight, whereas the reflection coefficient is almost unity when the molecular weights is higher than 170. Accordingly, this physiological model approach can be acceptable to the reabsorption kinetics of drugs in the renal tubules.This publication has 3 references indexed in Scilit:
- Flow dependence of fluid transport in the isolated superficial pars recta: Evidence that osmotic disequilibrium between external solutions drives isotonic fluid absorptionKidney International, 1981
- Renal Clearance of Theophylline in ManThe Journal of Clinical Pharmacology, 1976
- Renal tubular transfer of sodium, chloride and potassiumThe American Journal of Medicine, 1964