Megalin Blockade with Cilastatin Suppresses Drug-Induced Nephrotoxicity
Yoshihisa Hori1, Nobumasa Aoki1,2, Shoji Kuwahara3
1Departments of Respiratory Medicine and Infectious Diseases.
Abstract:
Nephrotoxicity induced by antimicrobial or anticancer drugs is a serious clinical problem. Megalin, an endocytic receptor expressed at the apical membranes of proximal tubules, mediates the nephrotoxicity of aminoglycosides and colistin, key antimicrobials for multidrug-resistant organisms. The mechanisms underlying the nephrotoxicity induced by vancomycin, an antimicrobial for methicillin-resistant Staphylococcus aureus, and cisplatin, an important anticancer drug, are unknown, although the nephrotoxicity of these drugs and gentamicin, an aminoglycoside, is suppressed experimentally with cilastatin. In the clinical setting, cilastatin has been used safely to suppress dehydropeptidase-I-mediated renal metabolism of imipenem, a carbapenem antimicrobial, and thereby limit tubular injury. Here, we tested the hypothesis that cilastatin also blocks megalin-mediated uptake of vancomycin, cisplatin, colistin, and aminoglycosides, thereby limiting the nephrotoxicity of these drugs. Quartz crystal microbalance analysis showed that megalin also binds vancomycin and cisplatin and that cilastatin competes with megalin for binding to gentamicin, colistin, vancomycin, and cisplatin. In kidney-specific mosaic megalin knockout mice treated with colistin, vancomycin, or cisplatin, the megalin-replete proximal tubule epithelial cells exhibited signs of injury, whereas the megalin-deficient cells did not. Furthermore, concomitant cilastatin administration suppressed colistin-induced nephrotoxicity in C57BL/6J mice. Notably, cilastatin did not inhibit the antibacterial activity of gentamicin, colistin, or vancomycin in vitro, just as cilastatin did not affect the anticancer activity of cisplatin in previous studies. In conclusion, megalin blockade with cilastatin efficiently suppresses the nephrotoxicity induced by gentamicin, colistin, vancomycin, or cisplatin. Cilastatin may be a promising agent for inhibiting various forms of drug-induced nephrotoxicity mediated via megalin in the clinical setting.
Insights
Cilastatin blocks the kidney
Area of Science:
- Nephrology and Pharmacology
- Drug-induced kidney injury mechanisms
- Molecular and cellular toxicology
Background:
- Drug-induced nephrotoxicity is a significant clinical challenge, particularly with antimicrobials and anticancer agents.
- Megalin, an endocytic receptor in proximal tubules, mediates toxicity of certain drugs like aminoglycosides and colistin.
- Mechanisms for vancomycin and cisplatin nephrotoxicity are unclear, though cilastatin shows protective effects.
Purpose of the Study:
- To investigate if cilastatin inhibits megalin-mediated uptake of nephrotoxic drugs, including vancomycin, cisplatin, colistin, and aminoglycosides.
- To determine if cilastatin can prevent drug-induced nephrotoxicity mediated by the megalin receptor.
Main Methods:
- Quartz crystal microbalance analysis to assess binding interactions between megalin, drugs, and cilastatin.
- Utilized kidney-specific mosaic megalin knockout mice to evaluate drug toxicity in megalin-deficient versus megalin-replete cells.
- Administered cilastatin concurrently with nephrotoxic drugs in mouse models to assess protective effects.
Main Results:
- Megalin binds vancomycin and cisplatin; cilastatin competes with megalin for binding of gentamicin, colistin, vancomycin, and cisplatin.
- In knockout mice, megalin-replete proximal tubule cells showed injury from colistin, vancomycin, or cisplatin, unlike megalin-deficient cells.
- Cilastatin administration suppressed colistin-induced nephrotoxicity and did not affect the antimicrobial or anticancer activity of the tested drugs.
Conclusions:
- Cilastatin effectively blocks megalin-mediated uptake of nephrotoxic drugs like gentamicin, colistin, vancomycin, and cisplatin.
- Megalin blockade by cilastatin significantly suppresses drug-induced nephrotoxicity.
- Cilastatin shows promise as a clinical agent to prevent various forms of megalin-mediated drug-induced nephrotoxicity.
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