Pharmacologic Tumor PDL1 Depletion with Cefepime or Ceftazidime Promotes DNA Damage and Sensitivity to DNA-Damaging

Clare Murray1, Eva Galvan2,3, Carlos Ontiveros1

  • 1Graduate School of Biomedical Science, University of Texas Health, San Antonio, TX 78229, USA.

Insights

The antibiotic cefepime depletes tumor-intrinsic PDL1, enhancing cancer treatment. This drug increases tumor DNA damage and sensitivity to DNA-damaging agents and immunotherapy.

Area of Science:

  • Oncology
  • Immunology
  • Pharmacology

Background:

  • Tumor PDL1 interaction with immune PD1 is a target for cancer immunotherapy.
  • Tumor-intrinsic PDL1 signals contribute to resistance against various cancer treatments.
  • Genetic PDL1 depletion is not clinically feasible.

Purpose of the Study:

  • To screen FDA-approved drugs for their ability to deplete tumor PDL1.
  • To investigate the potential of identified drugs to enhance cancer treatment efficacy.

Main Methods:

  • Screening of FDA-approved drugs to identify tumor PDL1-depleting drugs (PDDs).
  • In vitro and in vivo studies using aggressive mouse and human cancer cell lines (glioblastoma, ovarian, bladder, melanoma).
  • Assessment of cefepime's effect on tumor PDL1 levels, DNA damage, and treatment sensitivity.

Main Results:

  • Cefepime was identified as a PDD, reducing tumor PDL1 post-translationally via ubiquitination.
  • Cefepime increased tumor DNA damage and sensitivity to DNA-damaging agents in vitro.
  • Cefepime improved treatment efficacy in vivo, activated immunogenic STING signals, and mimicked genetic PDL1 depletion effects.

Conclusions:

  • Cefepime and related cephalosporins can inhibit tumor-intrinsic PDL1 signals.
  • PDDs hold potential for enhancing the efficacy of DNA-damaging agents and immunotherapy.
  • This approach offers a clinically tractable strategy to overcome treatment resistance driven by tumor-intrinsic PDL1.

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