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Published on: June 9, 2023
Melatonin enhances everolimus efficacy in breast cancer by suppressing mTOR pathway activation and promoting
Şeyma Demirkesen1, Yakup İriağaç2, Erdoğan Selçuk Şeber3
1Department of Molecular Biology and Genetics, Faculty of Science and Arts, Namık Kemal University, Tekirdağ, Turkey.
Background:
Everolimus is used in the treatment of breast cancer by targeting the PI3K/AKT/mTOR pathway, particularly during anti-hormonal therapy. The efficacy of everolimus is limited due to a feedback loop that supresses mTOR while simultaneously enhancing Akt activation in endocrine-resistant breast cancer. Melatonin (N-acetyl-5-methoxytryptamine) regulates mitochondrial activity, cell death, and autophagy due to its strong free radical scavenging, antioxidant, and anti-inflammatory characteristics. Melatonin, a naturally occurring oncostatic agent, slows tumor growth in a range of malignancies, including breast cancer. Due to its ability to protect healthy cells from oxidative stress and inflammation, along with its anti-cancer properties, melatonin has the potential to serve asan effective adjuvant in breast cancer therapy. It also inhibits the phosphorylation of mTOR and Akt, two essential pathways implicated in breast cancer growth, which may aid in overcoming resistance to targeted treatments like everolimus. The combination effects of melatonin and everolimus on hormone receptor-positive breast cancer remains unexplored. This study examined the effectiveness of melatonin when combined with everolimus for the treatment of hormone receptor-positive breast cancer.
Methods:
To investigate the effects of melatonin and everolimus combination, we divided MCF-7 cells into four experimental groups: the control, Melatonin (3 mM), Everolimus (30 nM), and a combination of Melatonin and Everolimus (3 mM + 30 nM). Cell viability, apoptosis, autophagy activation, and mitochondrial function were evaluated using established techniques.
Results:
Based on the cell viability test, the combination of 30 nM everolimus and 3 mM melatonin inhibited phosphorylation of 4E-BP1 and p70S6K, which are downstream effectors of the mTOR pathway, and reduced cell growth. In addition, co-administration of melatonin and everolimus increased apoptosis and led to Sub-G1 phase accumulation. LC3 protein expression and LC3 puncta analysis demonstrated autophagic activity. In terms of mitochondrial function, co-administration of melatonin with everolimus did not cause proton leakage or mitochondrial uncoupling, but did restore everolimus-induced respiratory inhibition.
Conclusions:
In conclusion, melatonin is thought to improve the effectiveness of everolimus by inhibiting mTOR downstream effectors, enhancing apoptosis, activating autophagy, improving mitochondrial respiration, and reducing MCF-7 growth.
Insights
Melatonin enhances everolimus efficacy in hormone receptor-positive breast cancer by inhibiting key growth pathways and boosting cell death. This combination therapy shows promise for overcoming treatment resistance and improving outcomes.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Everolimus targets the PI3K/AKT/mTOR pathway in breast cancer treatment, but its efficacy is limited by feedback mechanisms causing resistance.
- Melatonin, a natural oncostatic agent, possesses antioxidant and anti-inflammatory properties, potentially acting as an adjuvant in breast cancer therapy.
- Melatonin may overcome everolimus resistance by inhibiting mTOR and Akt pathways, but its combined effects on hormone receptor-positive breast cancer are unexplored.
Purpose of the Study:
- To investigate the combined therapeutic effects of melatonin and everolimus on hormone receptor-positive breast cancer.
- To evaluate the impact of this combination on cell viability, apoptosis, autophagy, and mitochondrial function in MCF-7 cells.
Main Methods:
- MCF-7 cells were divided into four groups: control, melatonin alone, everolimus alone, and a combination of melatonin and everolimus.
- Cell viability was assessed, alongside measurements of apoptosis, autophagy activation (LC3 protein expression and puncta), and mitochondrial function.
Main Results:
- The combination of melatonin and everolimus significantly inhibited phosphorylation of mTOR downstream effectors (4E-BP1 and p70S6K), reducing cell growth.
- Co-administration increased apoptosis, leading to Sub-G1 phase accumulation, and demonstrated autophagic activity.
- Mitochondrial function was preserved, with no proton leakage or uncoupling, and restored everolimus-induced respiratory inhibition.
Conclusions:
- Melatonin enhances everolimus effectiveness by inhibiting mTOR downstream signaling, promoting apoptosis, and activating autophagy.
- The combination improves mitochondrial respiration and reduces the growth of MCF-7 breast cancer cells.
- Melatonin shows potential as an adjuvant to everolimus for treating hormone receptor-positive breast cancer.
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