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Clinical uses of melatonin: evaluation of human trials
E J Sánchez-Barceló1, M D Mediavilla, D X Tan
1Department of Physiology & Pharmacology, School of Medicine, University of Cantabria, 39011 Santander, Spain. barcelo@unican.es
Abstract:
During the last 20 years, numerous clinical trials have examined the therapeutic usefulness of melatonin in different fields of medicine. The objective of this article is to review, in depth, the science regarding clinical trials performed to date. The efficacy of melatonin has been assessed as a treatment of ocular diseases, blood diseases, gastrointestinal tract diseases, cardiovascular diseases, diabetes, rheumatoid arthritis, fibromyalgia, chronic fatigue syndrome, infectious diseases, neurological diseases, sleep disturbances, aging and depression. Melatonin has been also used as a complementary treatment in anaesthesia, hemodialysis, in vitro fertilization and neonatal care. The conclusion of the current review is that the use of melatonin as an adjuvant therapy seems to be well funded for macular degeneration, glaucoma, protection of the gastric mucosa, irritable bowel syndrome, arterial hypertension, diabetes, side effects of chemotherapy and radiation in cancer patients or hemodialysis in patients with renal insufficiency and, especially, for sleep disorders of circadian etiology (jet lag, delayed sleep phase syndrome, sleep deterioration associated with aging, etc.) as well as in those related with neurological degenerative diseases (Alzheimer, etc.,) or Smith-Magenis syndrome. The utility of melatonin in anesthetic procedures has been also confirmed. More clinical studies are required to clarify whether, as the preliminary data suggest, melatonin is useful for treatment of fibromyalgia, chronic fatigue syndrome, infectious diseases, neoplasias or neonatal care. Preliminary data regarding the utility of melatonin in the treatment of ulcerative colitis, Crohn's disease, rheumatoid arthritis are either ambiguous or negative. Although in a few cases melatonin seems to aggravate some conditions, the vast majority of studies document the very low toxicity of melatonin over a wide range of doses.
Insights
Melatonin shows promise as an adjuvant therapy for various conditions, particularly sleep disorders, macular degeneration, and glaucoma. While generally safe, more research is needed for fibromyalgia and certain infectious diseases.
Area of Science:
- Endocrinology
- Pharmacology
- Ophthalmology
- Neurology
- Sleep Medicine
Background:
- Melatonin, a hormone regulating sleep-wake cycles, has been investigated for diverse therapeutic applications.
- Numerous clinical trials over two decades have explored melatonin's efficacy across multiple medical fields.
Purpose of the Study:
- To conduct an in-depth review of scientific literature on clinical trials assessing melatonin's therapeutic utility.
- To synthesize evidence for melatonin's effectiveness in treating a wide range of diseases and conditions.
Main Methods:
- Comprehensive literature search of clinical trials on melatonin.
- Systematic review and analysis of efficacy data across various medical disciplines.
Main Results:
- Strong evidence supports melatonin as an adjuvant therapy for macular degeneration, glaucoma, gastric protection, irritable bowel syndrome, hypertension, diabetes, chemotherapy side effects, and hemodialysis.
- Melatonin is particularly effective for circadian rhythm sleep disorders (jet lag, delayed sleep phase syndrome, age-related sleep decline) and neurological conditions like Alzheimer's disease.
- Its utility in anesthesia is confirmed, but data for fibromyalgia, chronic fatigue syndrome, infectious diseases, and cancer are inconclusive, while results for inflammatory bowel disease and rheumatoid arthritis are ambiguous or negative.
Conclusions:
- Melatonin is a well-supported adjuvant therapy for specific conditions, notably sleep disorders and certain chronic diseases.
- Its low toxicity profile is a significant advantage, though further clinical studies are required for several conditions.
- Melatonin's role in anesthetic procedures is established, but its efficacy in other areas requires more investigation.
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