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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.
Abstract:
The interaction between tumor surface-expressed PDL1 and immune cell PD1 for the evasion of antitumor immunity is well established and is targeted by FDA-approved anti-PDL1 and anti-PD1 antibodies. Nonetheless, recent studies highlight the immunopathogenicity of tumor-intrinsic PDL1 signals that can contribute to the resistance to targeted small molecules, cytotoxic chemotherapy, and αPD1 immunotherapy. As genetic PDL1 depletion is not currently clinically tractable, we screened FDA-approved drugs to identify those that significantly deplete tumor PDL1. Among the candidates, we identified the β-lactam cephalosporin antibiotic cefepime as a tumor PDL1-depleting drug (PDD) that increases tumor DNA damage and sensitivity to DNA-damaging agents in vitro in distinct aggressive mouse and human cancer lines, including glioblastoma multiforme, ovarian cancer, bladder cancer, and melanoma. Cefepime reduced tumor PDL1 post-translationally through ubiquitination, improved DNA-damaging-agent treatment efficacy in vivo in immune-deficient and -proficient mice, activated immunogenic tumor STING signals, and phenocopied specific genetic PDL1 depletion effects. The β-lactam ring and its antibiotic properties did not appear contributory to PDL1 depletion or to these treatment effects, and the related cephalosporin ceftazidime produced similar effects. Our findings highlight the rapidly translated potential for PDDs to inhibit tumor-intrinsic PDL1 signals and improve DNA-damaging agents and immunotherapy efficacy.
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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