Combined inhibition of CDK4/6 and PI3K pathways exhibit highly synergistic activity and translational potential in
Helen F Gloege1, Maria Ana Isabel C De Los Santos1, Advaita Chakraborty1
1Dana-Farber/Boston Children's Cancer and Blood Disorders Center, Boston, USA.
Abstract:
Ewing sarcoma is a highly aggressive solid malignancy affecting children and young adults. Ewing sarcoma is driven primarily by EWSR1::FLI1, a fusion oncoprotein that has been notoriously difficult to target with traditional pharmacologic agents. There are numerous examples of promising preclinical combinations of small molecules that are never tested in pediatric clinical trials because agents fail to reach the market due to limited efficacy for common adult cancers. Moreover, the effectiveness of single-agent therapies for cancer treatment is often limited. To address these limitations, we selected 28 compounds that were FDA approved at the time of the study or in late stages of clinical development and known to regulate important pathways in Ewing sarcoma. We performed a drug screen in Ewing sarcoma cell lines with 180 combinations of tyrosine kinase inhibitors, cell cycle inhibitors, and conventional chemotherapy. The results of the screen revealed that a PI3K inhibitor, copanlisib, combined with a CDK4/6 inhibitor, ribociclib, exhibited strong synergistic anti-Ewing sarcoma activity. Using proteomic methods such as a reverse-phase protein array and western immunoblotting, we demonstrated that this combination induced a downregulation of the PI3K/AKT pathway as well as proteins involved in cell cycle regulation. We further confirmed these in vitro data using bulk RNA-sequencing. To evaluate the phenotypic effect of the PI3K/CDK4/6 inhibition in Ewing sarcoma lines, we performed apoptosis and cell cycle analyses using flow cytometry and demonstrated that ribociclib primarily induced a G0/G1 arrest with minimal effect on Ewing cell viability but significantly enhanced the apoptotic effect of copanlisib treatment. In two xenograft models of Ewing sarcoma, we demonstrated that the combination significantly prolonged survival compared to treatment with either vehicle or single-agent therapy alone. Our findings identify a new candidate therapy combination for Ewing sarcoma and provide a resource of additional potential synergistic combinations for future validation.
Insights
A combination of PI3K inhibitor copanlisib and CDK4/6 inhibitor ribociclib shows strong synergistic activity against Ewing sarcoma. This novel therapy combination significantly improved survival in preclinical models, offering new hope for treating this aggressive pediatric cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Ewing sarcoma is a rare, aggressive pediatric cancer driven by the EWSR1::FLI1 oncoprotein, which is challenging to target with conventional therapies.
- Single-agent treatments often have limited efficacy, and promising preclinical drug combinations may not reach pediatric clinical trials due to development hurdles.
- Identifying effective therapeutic strategies for Ewing sarcoma is critical due to its aggressive nature and limited treatment options.
Purpose of the Study:
- To identify novel synergistic drug combinations for Ewing sarcoma treatment.
- To evaluate the efficacy of combining FDA-approved or late-stage clinical development compounds targeting key Ewing sarcoma pathways.
- To investigate the molecular mechanisms underlying the synergistic effects of promising drug combinations.
Main Methods:
- A drug screen of 180 combinations involving tyrosine kinase inhibitors, cell cycle inhibitors, and chemotherapy was performed on Ewing sarcoma cell lines.
- Proteomic analyses (reverse-phase protein array, western immunoblotting) and bulk RNA-sequencing were used to elucidate molecular mechanisms.
- Flow cytometry was employed for apoptosis and cell cycle analyses, and efficacy was validated in two Ewing sarcoma xenograft models.
Main Results:
- The combination of copanlisib (a PI3K inhibitor) and ribociclib (a CDK4/6 inhibitor) demonstrated significant synergistic anti-Ewing sarcoma activity.
- This combination downregulated the PI3K/AKT pathway and proteins involved in cell cycle regulation.
- In vivo studies showed that the combination significantly prolonged survival in Ewing sarcoma xenograft models compared to single-agent therapies.
Conclusions:
- The combination of copanlisib and ribociclib represents a promising new therapeutic strategy for Ewing sarcoma.
- This study provides a valuable resource of potential synergistic drug combinations for future validation in Ewing sarcoma treatment.
- Targeting the PI3K and CDK4/6 pathways simultaneously offers a viable approach to overcome therapeutic limitations in Ewing sarcoma.
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