4.6 Review

Melatonin-Loaded Nanocarriers: New Horizons for Therapeutic Applications

期刊

MOLECULES
卷 26, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/molecules26123562

关键词

melatonin; nanocarriers; melatonin-loaded nanocarriers; nanoparticles; drug-delivery system

资金

  1. Sao Paulo Research Foundation (FAPESP) [2019/00906-6]
  2. National Council for Scientific and Technological Development, CNPq [304108/2020-0]

向作者/读者索取更多资源

The use of nanosized particles in drug delivery systems has shown promise in enhancing the therapeutic efficacy of drugs like melatonin. Incorporation of melatonin into nanocarriers has demonstrated superior effectiveness in various diseases, suggesting potential clinical applications.
The use of nanosized particles has emerged to facilitate selective applications in medicine. Drug-delivery systems represent novel opportunities to provide stricter, focused, and fine-tuned therapy, enhancing the therapeutic efficacy of chemical agents at the molecular level while reducing their toxic effects. Melatonin (N-acetyl-5-methoxytriptamine) is a small indoleamine secreted essentially by the pineal gland during darkness, but also produced by most cells in a non-circadian manner from which it is not released into the blood. Although the therapeutic promise of melatonin is indisputable, aspects regarding optimal dosage, biotransformation and metabolism, route and time of administration, and targeted therapy remain to be examined for proper treatment results. Recently, prolonged release of melatonin has shown greater efficacy and safety when combined with a nanostructured formulation. This review summarizes the role of melatonin incorporated into different nanocarriers (e.g., lipid-based vesicles, polymeric vesicles, non-ionic surfactant-based vesicles, charge carriers in graphene, electro spun nanofibers, silica-based carriers, metallic and non-metallic nanocomposites) as drug delivery system platforms or multilevel determinations in various in vivo and in vitro experimental conditions. Melatonin incorporated into nanosized materials exhibits superior effectiveness in multiple diseases and pathological processes than does free melatonin; thus, such information has functional significance for clinical intervention.

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