Synergistic effect of MDM2 inhibitors and radiotherapy in endometrial cancer
Roberto Vargas1,2, Aaron Petty3, Daniel J Lindner3
1Division of Gynecologic Oncology, Obstetrics and Gynecology Institute, The Cleveland Clinic, Cleveland, OH, USA. vargasr@ccf.org.
Abstract:
Endometrial cancer (EC) is the most common type of gynecologic malignancy in the United States, with over 69,120 new cases expected in 2025. The total number of mortalities surpasses that of ovarian cancer. Despite our ability to identify different biological clusters of EC, we have yet to understand the functional impact of key genomic alterations associated with varying prognoses and exploit this knowledge for therapeutic benefits. Our overarching goal is to understand how genomic alterations impact radiotherapy response in EC, and whether manipulation of these signaling pathways could be utilized as a radio-sensitization strategy. Given that TP53-mutated ECs portend the worst prognoses and seem to benefit from escalation of therapy above that of radiotherapy alone, we first focused our attention on understanding the impact of this genomic aberration on radiation response. Using high-throughput in vitro profiling, genomic manipulation, and in vivo studies, we demonstrated that p53 signaling plays a significant role in the radiotherapy response in EC, thus providing a biological rationale for observed clinical trial findings. We also leveraged this same finding to test a therapeutic approach driving p53/p21 signaling using murine double minute-2 (MDM2) inhibitors, subsequently demonstrating synergism with radiation. Thus, MDM2 inhibitors could be considered as a novel radiosensitizing approach for EC.
Insights
TP53-mutated endometrial cancer (EC) shows poor prognosis. Targeting p53 signaling with MDM2 inhibitors enhances radiotherapy, offering a new treatment strategy for EC patients.
Area of Science:
- Oncology
- Genomics
- Radiotherapy
Background:
- Endometrial cancer (EC) is a prevalent gynecologic malignancy with significant mortality.
- Understanding genomic alterations' impact on EC prognosis and treatment is crucial.
- TP53 mutations are associated with the poorest EC prognoses and potential benefit from intensified therapy.
Purpose of the Study:
- To investigate the role of genomic alterations, specifically TP53 mutations, in radiotherapy response in EC.
- To explore the therapeutic potential of targeting p53 signaling pathways for radiosensitization in EC.
Main Methods:
- High-throughput in vitro profiling of EC cells.
- Genomic manipulation techniques to alter p53 signaling.
- In vivo studies to assess treatment efficacy.
- Evaluation of murine double minute-2 (MDM2) inhibitors in combination with radiation.
Main Results:
- p53 signaling significantly influences radiotherapy response in endometrial cancer.
- Activation of p53/p21 signaling via MDM2 inhibitors demonstrates synergistic effects with radiation.
- These findings provide a biological basis for clinical observations and suggest a novel therapeutic strategy.
Conclusions:
- Targeting p53 signaling is a viable strategy for enhancing radiotherapy in endometrial cancer.
- MDM2 inhibitors show promise as radiosensitizers for EC treatment.
- Further research into MDM2 inhibitors could lead to improved outcomes for EC patients with TP53 mutations.
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