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PI3K/mTOR dual inhibitor VS-5584 preferentially targets cancer stem cells
Vihren N Kolev1, Quentin G Wright1, Christian M Vidal1
1Verastem Inc., Needham, Massachusetts.
Abstract:
Cancer stem cells (CSC) have been implicated in disease recurrence, metastasis, and therapeutic resistance, but effective targeting strategies for these cells are still wanting. VS-5584 is a potent and selective dual inhibitor of mTORC1/2 and class I PI 3-kinases. Here, we report that VS-5584 is up to 30-fold more potent in inhibiting the proliferation and survival of CSC compared with non-CSC in solid tumor cell populations. VS-5584 preferentially diminished CSC levels in multiple mouse xenograft models of human cancer, as evidenced by marked reduction of tumor-initiating capacity in limiting dilution assays. Likewise, VS-5584 treatment ex vivo preferentially reduced CSC in surgically resected breast and ovarian patient tumors. In contrast, chemotherapeutics such as paclitaxel and cisplatin were less effective in targeting CSC than bulk tumor cells. Mechanistic investigations revealed that preferential targeting of CSC required inhibition of multiple components of the PI3K-mTOR pathway: coordinate RNAi-mediated silencing of PI3Kα, PI3Kβ, and mTOR phenocopied the effect of VS-5584, exhibiting the strongest preferential targeting of CSC, while silencing of individual PI3K isoforms or mTOR failed to replicate the effect of VS-5584. Consistent with CSC ablation, VS-5584 delayed tumor regrowth following chemotherapy in xenograft models of small-cell lung cancer. Taken together, the preferential targeting of CSC prompts a new paradigm for clinical testing of VS-5584: clinical trials designed with CSC-directed endpoints may facilitate demonstration of the therapeutic benefit of VS-5584. We suggest that combining VS-5584 with classic chemotherapy that debulks tumors may engender a more effective strategy to achieve durable remissions in patients with cancer.
Insights
The drug VS-5584 effectively targets cancer stem cells (CSCs), which drive recurrence and resistance, unlike traditional chemotherapy. This suggests new clinical trial designs focusing on CSCs for better cancer treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Cancer stem cells (CSCs) are crucial in tumor recurrence, metastasis, and resistance to therapy.
- Current therapeutic strategies often fail to effectively target CSCs, highlighting an unmet clinical need.
- VS-5584 is a dual inhibitor of mTORC1/2 and class I PI3-kinases.
Purpose of the Study:
- To investigate the efficacy of VS-5584 in targeting cancer stem cells (CSCs) across various solid tumors.
- To compare the CSC-targeting ability of VS-5584 with conventional chemotherapeutics.
- To elucidate the molecular mechanisms underlying VS-5584's preferential CSC targeting.
Main Methods:
- In vitro proliferation and survival assays using CSCs and non-CSCs from solid tumors.
- In vivo studies using mouse xenograft models of human cancers.
- Ex vivo analysis of patient-derived tumors (breast and ovarian).
- RNA interference (RNAi) to silence PI3K isoforms and mTOR.
Main Results:
- VS-5584 demonstrated up to 30-fold greater potency in inhibiting CSC proliferation and survival compared to non-CSCs.
- VS-5584 significantly reduced CSC levels in vivo and ex vivo, decreasing tumor-initiating capacity.
- VS-5584's preferential CSC targeting required simultaneous inhibition of PI3Kα, PI3Kβ, and mTOR, unlike conventional agents like paclitaxel and cisplatin.
- VS-5584 delayed tumor regrowth post-chemotherapy in small-cell lung cancer models.
Conclusions:
- VS-5584 exhibits potent and preferential targeting of cancer stem cells (CSCs).
- The findings support a new paradigm for clinical trials focusing on CSC-directed endpoints for VS-5584.
- Combining VS-5584 with chemotherapy may offer a more effective strategy for achieving durable cancer remission.
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