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Published on: March 11, 2016
Effects of renal failure on drug transport and metabolism
Hong Sun1, Lynda Frassetto, Leslie Z Benet
1Department of Biopharmaceutical Sciences, University of California, San Francisco, CA 94143-0446, United States.
Abstract:
Renal failure not only alters the renal elimination, but also the non-renal disposition of drugs that are extensively metabolized by the liver. Although reduced metabolic enzyme activity in some cases can be responsible for the reduced drug clearance, alterations in the transporter systems may also be involved in the process. With the development of renal failure, the renal secretion of organic ions mediated by organic anion transporters (OATs) and organic cation transporters (OCTs) is decreased. 3-Carboxy-4-methyl-5-propyl-2-furanpropanoic acid (CMPF) and other organic anionic uremic toxins may directly inhibit the renal excretion of various drugs and endogenous organic acids by competitively inhibiting OATs. In addition, the expression of OAT1 and OCT2 was reduced in chronic renal failure (CRF) rats. Renal failure also impairs the liver uptake of drugs and organic anions, such as bromosulphophthalein (BSP), indocyanine green (ICG), and thyroxine, where organic anion transport polypeptides (OATPs) are the major transporters. Most previous studies have been done in animals or cell culture, very often in rat models, but these are presumed to reflect the presentation of advanced renal disease in humans as well. Recent studies demonstrate that the uremic toxins CMPF and indoxyl sulfate (IS) can directly inhibit rOatp2 and hOATP-C in hepatocytes. The protein content of the liver uptake transporters Oatp1, 2, and 4 were significantly decreased in CRF rats. Decreased activity of the intestinal efflux transporter, P-glycoprotein (P-gp), was also observed in CRF rats, with no significant change of protein content, suggesting that uremic toxins may suppress P-gp function. However, increased protein levels of multidrug resistance-associated protein (MRP) 2 in the kidney and MRP3 in the liver were found in CRF rats, suggesting an adaptive response that may serve as a protective mechanism. Increases in drug areas under the curve (AUCs) in subjects with advanced renal disease for drugs that are not renally excreted are consistent with uremic toxin effects on either intestinal or hepatic cell transporters, metabolizing enzymes, or both. In conclusion, alterations of drug transporters, as well as metabolic enzymes, in patients with renal failure can be responsible for reduced drug clearance.
Insights
Renal failure impairs drug clearance by affecting both liver metabolism and transporter systems. Uremic toxins disrupt drug transporters in the kidneys, liver, and intestines, leading to altered drug disposition.
Area of Science:
- Pharmacology
- Nephrology
- Drug Metabolism
Background:
- Renal failure significantly impacts drug disposition beyond just renal elimination.
- Both reduced metabolic enzyme activity and altered transporter systems contribute to decreased drug clearance in renal failure.
Purpose of the Study:
- To investigate the role of drug transporters in non-renal drug disposition during renal failure.
- To examine the effects of uremic toxins on various drug transporters in the liver, kidney, and intestine.
Main Methods:
- Studies were conducted in animal models (e.g., chronic renal failure rats) and cell cultures.
- Assessed changes in the expression and activity of key drug transporters like OATs, OCTs, OATPs, P-gp, and MRPs.
- Investigated the direct inhibitory effects of uremic toxins (e.g., CMPF, IS) on transporter function.
Main Results:
- Renal failure decreased the function of renal transporters (OATs, OCTs) and hepatic uptake transporters (OATPs).
- Uremic toxins like CMPF and IS were found to directly inhibit OATs and OATPs.
- Decreased P-glycoprotein activity and altered expression of MRPs were observed in chronic renal failure rats.
- Increased drug areas under the curve (AUCs) for non-renally excreted drugs suggest impaired intestinal or hepatic transport.
Conclusions:
- Alterations in drug transporters, alongside metabolic enzymes, are crucial in reducing drug clearance in renal failure patients.
- Uremic toxins play a significant role in modulating transporter function, contributing to altered drug pharmacokinetics.
- These findings highlight the complex interplay between renal disease and drug disposition, necessitating careful drug management.
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