Megalin Blockade with Cilastatin Suppresses Drug-Induced Nephrotoxicity

Yoshihisa Hori1, Nobumasa Aoki1,2, Shoji Kuwahara3

  • 1Departments of Respiratory Medicine and Infectious Diseases.

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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