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Published on: June 20, 2015
B591, a novel specific pan-PI3K inhibitor, preferentially targets cancer stem cells
Hongyu Zhou1, Chunlei Yu1,2, Lingmei Kong1
1State Key Laboratory of Phytochemistry and Plant Resources in West China, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, China.
Abstract:
Cancer stem cells (CSCs) have been implicated in metastasis, relapse, and therapeutic resistance of cancer, so successful cancer therapy may therefore require the development of drugs against CSCs or combining anti-CSCs drugs with conventional therapies. The phosphoinositide 3-kinase (PI3K) signaling pathway is one of the most frequently activated signaling pathways in human cancer, playing a central role in tumorigenesis as well as the maintenance of CSCs. Here, we designed and identified B591, a dihydrobenzofuran-imidazolium salt, as a novel specific pan-PI3K inhibitor with potent inhibitory activity against class I PI3K isoforms, which showed effective inhibition of cellular PI3K/mTOR signaling pathway and robust antitumor activity in a set of cancer cell lines. Notably, compared with bulk tumor cell populations, B591 exhibited more potency in suppressing CSCs survival and inducing CSCs apoptosis, and presence of B591 effectively eliminated paclitaxel-enriched CSCs. B591 diminished self-renewal capacity and decreased the expression of epithelial-mesenchymal transition (EMT) markers of CSCs. In vivo, B591 preferentially decreased CSCs levels in mouse xenograft model of human breast cancer as evidenced especially by remarkable reduction of tumor-initiating ability. Consistent with the preferential targeting of CSCs, B591 effectively inhibited breast tumor metastasis and delayed tumor regrowth following paclitaxel treatment. Taken together, our findings establish B591, a novel PI3K inhibitor, as a strong candidate for clinical evaluation as a CSCs targeting agent.
Insights
A novel drug, B591, specifically targets cancer stem cells (CSCs) by inhibiting the PI3K pathway. This drug shows potent anti-cancer effects, reduces metastasis, and overcomes resistance, offering a promising new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Cancer stem cells (CSCs) drive metastasis, relapse, and therapeutic resistance.
- The phosphoinositide 3-kinase (PI3K) pathway is crucial for cancer development and CSC maintenance.
- Targeting CSCs is essential for effective cancer therapy.
Purpose of the Study:
- To identify and characterize a novel PI3K inhibitor targeting CSCs.
- To evaluate the efficacy of the novel inhibitor against CSCs and in preclinical cancer models.
- To explore the potential of the inhibitor as a CSC-targeting agent in cancer treatment.
Main Methods:
- Design and synthesis of B591, a novel dihydrobenzofuran-imidazolium salt.
- In vitro assessment of B591's inhibitory activity against PI3K/mTOR signaling and CSCs.
- In vivo evaluation of B591 in a human breast cancer xenograft mouse model, assessing CSC levels, metastasis, and tumor regrowth.
Main Results:
- B591 selectively inhibited class I PI3K isoforms and the PI3K/mTOR pathway.
- B591 demonstrated potent suppression of CSC survival, apoptosis induction, and diminished self-renewal capacity.
- In vivo, B591 reduced CSCs, inhibited metastasis, and delayed tumor regrowth, particularly after paclitaxel treatment.
Conclusions:
- B591 is a novel, potent pan-PI3K inhibitor with significant activity against CSCs.
- B591 effectively targets CSCs, reducing their numbers and impact on tumor progression and metastasis.
- B591 shows promise as a CSC-targeting agent for clinical development in cancer therapy.
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