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Development of Acquired Resistance in Alpelisib-treated Gastric Cancer Cells With PIK3CA Mutations and Overcoming
Minsu Kang1,2, Kui-Jin Kim3, Ji Hea Sung2
1Graduate School of Translational Medicine, Seoul National University College of Medicine, Seoul, Republic of Korea.
Background/Aim:
Alpelisib has shown promise in preclinical studies for treating PIK3CA-mutant gastric cancer (GC), and its combination with chemotherapy has progressed to clinical trials. However, acquired resistance to alpelisib remains a significant challenge. This study aimed to elucidate the mechanisms underlying acquired alpelisib resistance and propose potential therapeutic strategies to overcome it.
Materials And Methods:
Acquired alpelisib-resistant GC cell lines were developed by prolonged drug exposure. Mechanistic studies included whole-exome sequencing, western blotting, immunoprecipitation, Cdc42 and Rac1 activity assays, caspase-3/7 assays, colony formation assays, and sphere formation assays to investigate resistance pathways and therapeutic interventions.
Results:
Two GC cell lines with acquired resistance to alpelisib, SNU601-R and AGS-R, were successfully developed from SNU601 and AGS. Both acquired alpelisib-resistant cell lines exhibited PTEN functional loss, leading to activation of SRC, STAT1, AKT, and PRAS40 signaling pathways. Combination treatments with pan-PI3K inhibitors or AKT inhibitors successfully overcame resistance. Among these, the combination of capivasertib, an AKT inhibitor, with SN38 demonstrated superior cytotoxic effects. Furthermore, the combination of capivasertib and SN38 significantly reduced the colony forming ability and sphere formation compared to each treatment alone in SNU601-R and AGS-R cells.
Conclusion:
In alpelisib-treated GC cells with PIK3CA mutations, PTEN functional loss and changes in the associated signaling pathway were identified as important mechanisms of acquired alpelisib resistance. The combination of capivasertib and SN38 effectively overcomes acquired resistance to alpelisib in PIK3CA-mutant GC, providing a preclinical rationale for future clinical trials targeting acquired alpelisib-resistant GC with PIK3CA mutations.
Insights
Acquired resistance to alpelisib in PIK3CA-mutant gastric cancer is linked to PTEN loss. Combining capivasertib with SN38 effectively overcomes this resistance, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Alpelisib shows preclinical promise for PIK3CA-mutant gastric cancer (GC).
- Clinical trials combine alpelisib with chemotherapy, but acquired resistance is a major hurdle.
- Understanding resistance mechanisms is crucial for developing effective treatments.
Purpose of the Study:
- To investigate the mechanisms of acquired alpelisib resistance in PIK3CA-mutant GC.
- To identify therapeutic strategies to overcome alpelisib resistance.
Main Methods:
- Developed alpelisib-resistant GC cell lines through prolonged drug exposure.
- Utilized whole-exome sequencing, western blotting, and cell-based assays.
- Evaluated combination therapies involving AKT inhibitors and cytotoxic agents.
Main Results:
- Acquired resistance was associated with PTEN functional loss and activation of SRC, STAT1, AKT, and PRAS40 pathways.
- Combination of capivasertib (AKT inhibitor) and SN38 demonstrated superior cytotoxicity.
- This combination significantly inhibited colony and sphere formation in resistant cells.
Conclusions:
- PTEN loss is a key mechanism of acquired alpelisib resistance in PIK3CA-mutant GC.
- Capivasertib plus SN38 effectively overcomes alpelisib resistance.
- This combination provides a preclinical basis for clinical trials in resistant GC.
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