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Melatonin in Integrative Oncology: Biological Mechanisms, Therapeutic Evidence and Implementation Strategies
Jarosław Nuszkiewicz1, Joanna Wróblewska1, Marek Jóźwiak2
1Department of Medical Biology and Biochemistry, Faculty of Medicine, Ludwik Rydygier Collegium Medicum in Bydgoszcz, Nicolaus Copernicus University in Toruń, 24 Karłowicza Street, Bydgoszcz, Poland.
Abstract:
Melatonin, an endogenous indoleamine primarily synthesized in the pineal gland, has emerged as a promising adjunctive agent within integrative oncology due to its pleiotropic biological actions. Beyond its well-known chronobiological functions, melatonin exerts potent redox-regulatory, anti-inflammatory, oncostatic, and immune-modulating effects that are relevant across multiple stages of carcinogenesis and cancer therapy. Oxidative stress (OS), defined as an imbalance between reactive oxygen and nitrogen species (ROS/RNS) generation and antioxidant defenses, plays a central role in DNA damage, protein adduct formation, and lipid peroxidation, ultimately contributing to mutation accumulation, treatment resistance, and tumor progression. Melatonin modulates these OS-related processes through both receptor-dependent and receptor-independent mechanisms, including mitochondrial stabilization, enhancement of antioxidant enzyme activity, inhibition of pro-oxidant pathways, regulation of cell-cycle checkpoints, and promotion of apoptosis in malignant cells while protecting healthy tissues. Preclinical studies demonstrate synergistic interactions between melatonin and chemotherapy, radiotherapy, targeted agents, and immunotherapies, with consistent reductions in treatment toxicity and improvements in tumor control. Emerging clinical evidence supports its potential benefits in quality of life, sleep regulation, fatigue, and selected oncologic outcomes, although heterogeneity in dosing, formulations, and study design remains a key limitation. At the organizational and system levels, successful integration of melatonin into oncology practice requires interdisciplinary collaboration, standardized protocols, clinician awareness, regulatory clarity, and evidence-based implementation strategies. The aim of this narrative review is to synthesize current molecular, experimental, and clinical evidence on melatonin in integrative oncology, with particular emphasis on redox-related mechanisms, therapeutic interactions, and implementation challenges.
Insights
Melatonin shows promise in integrative oncology by regulating oxidative stress and inflammation. It enhances cancer treatments, reduces toxicity, and improves patient quality of life, though more research is needed for widespread use.
Area of Science:
- Integrative Oncology
- Molecular Biology
- Redox Biology
Background:
- Melatonin, an indoleamine from the pineal gland, has diverse biological actions relevant to cancer.
- Oxidative stress (OS) is central to cancer development, treatment resistance, and progression.
- Melatonin's redox-regulatory, anti-inflammatory, and immune-modulating effects are key in oncology.
Purpose of the Study:
- To review molecular, experimental, and clinical evidence of melatonin in integrative oncology.
- To emphasize melatonin's redox-related mechanisms and therapeutic interactions.
- To discuss challenges in integrating melatonin into cancer care.
Main Methods:
- Narrative review of existing literature.
- Synthesis of preclinical and clinical data on melatonin's role in cancer.
- Analysis of melatonin's impact on oxidative stress and treatment outcomes.
Main Results:
- Melatonin modulates OS via receptor-dependent and -independent pathways, protecting healthy cells and targeting cancer cells.
- Preclinical studies show synergy between melatonin and various cancer therapies, reducing toxicity and improving tumor control.
- Clinical evidence suggests benefits for quality of life, sleep, and fatigue, but study heterogeneity is a limitation.
Conclusions:
- Melatonin holds significant potential as an adjunctive therapy in oncology, particularly through its antioxidant and anti-inflammatory actions.
- Further research with standardized protocols is needed to optimize melatonin's integration into cancer treatment paradigms.
- Successful implementation requires interdisciplinary collaboration and clear regulatory guidelines.
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