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Updated: Mar 4, 2026

Experimental Metastasis Assay
Published on: August 24, 2010
Melatonin, a Full Service Anti-Cancer Agent: Inhibition of Initiation, Progression and Metastasis
Russel J Reiter1, Sergio A Rosales-Corral2, Dun-Xian Tan3
1Department of Cell Systems and Anatomy, UT Health, San Antonio, TX 78229, USA. reiter@uthscsa.edu.
Abstract:
There is highly credible evidence that melatonin mitigates cancer at the initiation, progression and metastasis phases. In many cases, the molecular mechanisms underpinning these inhibitory actions have been proposed. What is rather perplexing, however, is the large number of processes by which melatonin reportedly restrains cancer development and growth. These diverse actions suggest that what is being observed are merely epiphenomena of an underlying more fundamental action of melatonin that remains to be disclosed. Some of the arresting actions of melatonin on cancer are clearly membrane receptor-mediated while others are membrane receptor-independent and involve direct intracellular actions of this ubiquitously-distributed molecule. While the emphasis of melatonin/cancer research has been on the role of the indoleamine in restraining breast cancer, this is changing quickly with many cancer types having been shown to be susceptible to inhibition by melatonin. There are several facets of this research which could have immediate applications at the clinical level. Many studies have shown that melatonin's co-administration improves the sensitivity of cancers to inhibition by conventional drugs. Even more important are the findings that melatonin renders cancers previously totally resistant to treatment sensitive to these same therapies. Melatonin also inhibits molecular processes associated with metastasis by limiting the entrance of cancer cells into the vascular system and preventing them from establishing secondary growths at distant sites. This is of particular importance since cancer metastasis often significantly contributes to death of the patient. Another area that deserves additional consideration is related to the capacity of melatonin in reducing the toxic consequences of anti-cancer drugs while increasing their efficacy. Although this information has been available for more than a decade, it has not been adequately exploited at the clinical level. Even if the only beneficial actions of melatonin in cancer patients are its ability to attenuate acute and long-term drug toxicity, melatonin should be used to improve the physical wellbeing of the patients. The experimental findings, however, suggest that the advantages of using melatonin as a co-treatment with conventional cancer therapies would far exceed improvements in the wellbeing of the patients.
Insights
Melatonin (indoleamine) shows significant potential in mitigating cancer across all stages. It enhances conventional cancer treatments and reduces drug toxicity, suggesting broad clinical applications.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Melatonin (indoleamine) is increasingly recognized for its multifaceted role in cancer, acting at initiation, progression, and metastasis.
- While numerous mechanisms are proposed, a fundamental, unifying action of melatonin in cancer remains elusive.
- Research is expanding beyond breast cancer to investigate melatonin's effects on various cancer types.
Purpose of the Study:
- To review the evidence for melatonin's anti-cancer effects.
- To explore the diverse molecular mechanisms, both receptor-mediated and independent, through which melatonin influences cancer.
- To highlight potential clinical applications of melatonin in cancer therapy.
Main Methods:
- Review of existing scientific literature on melatonin and cancer.
- Analysis of proposed molecular mechanisms of melatonin's action.
- Evaluation of clinical implications and therapeutic potential.
Main Results:
- Melatonin mitigates cancer at initiation, progression, and metastasis phases.
- Its actions are both membrane receptor-mediated and receptor-independent.
- Melatonin co-administration enhances sensitivity to conventional drugs and overcomes resistance.
- It inhibits metastasis by preventing cancer cell vascular entry and secondary tumor formation.
- Melatonin reduces anti-cancer drug toxicity while increasing efficacy.
Conclusions:
- Melatonin exhibits significant anti-cancer properties with broad clinical potential.
- Its ability to resensitize resistant tumors and reduce treatment toxicity is clinically relevant.
- Further exploitation of melatonin as a co-treatment is warranted to improve patient outcomes and well-being.
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