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Eugenol triggers apoptosis in breast cancer cells through E2F1/survivin down-regulation
Ibtehaj Al-Sharif, Adnane Remmal, Abdelilah Aboussekhra1
1Department of Molecular Oncology, King Faisal Specialist Hospital and Research Center, MBC # 03-66, PO BOX 3354, Riyadh 11211, Saudi Arabia. aboussekhra@kfshrc.edu.sa.
Background:
Breast cancer is a major health problem that threatens the lives of millions of women worldwide each year. Most of the chemotherapeutic agents that are currently used to treat this complex disease are highly toxic with long-term side effects. Therefore, novel generation of anti-cancer drugs with higher efficiency and specificity are urgently needed.
Methods:
Breast cancer cell lines were treated with eugenol and cytotoxicity was measured using the WST-1 reagent, while propidium iodide/annexinV associated with flow cytometry was utilized in order to determine the induced cell death pathway. The effect of eugenol on apoptotic and pro-carcinogenic proteins, both in vitro and in tumor xenografts was assessed by immunoblotting. While RT-PCR was used to determine eugenol effect on the E2F1 and survivin mRNA levels. In addition, we tested the effect of eugenol on cell proliferation using the real-time cell electronic sensing system.
Results:
Eugenol at low dose (2 μM) has specific toxicity against different breast cancer cells. This killing effect was mediated mainly through inducing the internal apoptotic pathway and strong down-regulation of E2F1 and its downstream antiapoptosis target survivin, independently of the status of p53 and ERα. Eugenol inhibited also several other breast cancer related oncogenes, such as NF-κB and cyclin D1. Moreover, eugenol up-regulated the versatile cyclin-dependent kinase inhibitor p21WAF1 protein, and inhibited the proliferation of breast cancer cells in a p53-independent manner. Importantly, these anti-proliferative and pro-apoptotic effects were also observed in vivo in xenografted human breast tumors.
Conclusion:
Eugenol exhibits anti-breast cancer properties both in vitro and in vivo, indicating that it could be used to consolidate the adjuvant treatment of breast cancer through targeting the E2F1/survivin pathway, especially for the less responsive triple-negative subtype of the disease.
Insights
Eugenol shows promise as a breast cancer treatment by inducing cell death and inhibiting proliferation, particularly effective against triple-negative breast cancer. This natural compound targets key cancer-promoting genes, offering a potential new avenue for adjuvant therapy.
Area of Science:
- Oncology
- Pharmacology
- Natural Products
Background:
- Breast cancer poses a significant global health challenge, necessitating novel treatments.
- Current chemotherapeutics exhibit high toxicity and undesirable long-term side effects.
- There is an urgent need for more effective and specific anti-cancer agents.
Purpose of the Study:
- To investigate the anti-cancer properties of eugenol against breast cancer.
- To elucidate the mechanisms underlying eugenol's effects on cancer cells.
- To evaluate eugenol's efficacy both in vitro and in vivo.
Main Methods:
- Cytotoxicity assays (WST-1) and apoptosis analysis (propidium iodide/annexinV flow cytometry).
- Immunoblotting to assess protein level changes (apoptotic, pro-carcinogenic proteins).
- RT-PCR for mRNA analysis (E2F1, survivin) and real-time cell sensing for proliferation.
Main Results:
- Eugenol demonstrated specific toxicity against breast cancer cells at low doses (2 μM).
- It induced apoptosis via the intrinsic pathway, down-regulating E2F1 and survivin.
- Eugenol inhibited proliferation, NF-κB, and cyclin D1, while up-regulating p21WAF1, independent of p53/ERα status.
- Anti-proliferative and pro-apoptotic effects were confirmed in vivo xenografts.
Conclusions:
- Eugenol possesses significant in vitro and in vivo anti-breast cancer activity.
- It effectively targets the E2F1/survivin pathway, showing potential for adjuvant therapy.
- Eugenol may be particularly beneficial for treating triple-negative breast cancer subtypes.
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