The role of melatonin as an antioxidant in the follicle
Роль мелатонина как антиоксиданта в фолликуле
2012-01-01
SCID: 54.1/a9y7788w
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embryo developmentfollicular fluidmelatoninoocyte maturationoxidative stress
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Abstract (AI)
Melatonin (N-acetyl-5-methoxytryptamine) is secreted during the dark hours at night by pineal gland, and it regulates a variety of important central and peripheral actions related to circadian rhythms and reproduction. It has been believed that melatonin regulates ovarian function by the regulation of gonadotropin release in the hypothalamus-pituitary gland axis via its specific receptors. In addition to the receptor mediated action, the discovery of melatonin as a direct free radical scavenger has greatly broadened the understanding of melatonin's mechanisms which benefit reproductive physiology. Higher concentrations of melatonin have been found in human preovulatory follicular fluid compared to serum, and there is growing evidence of the direct effects of melatonin on ovarian function especially oocyte maturation and embryo development. Many scientists have focused on the direct role of melatonin on oocyte maturation and embryo development as an anti-oxidant to reduce oxidative stress induced by reactive oxygen species, which are produced during ovulation process. The beneficial effects of melatonin administration on oocyte maturation and embryo development have been confirmed by in vitro and in vivo experiments in animals. This review also discusses the first application of melatonin to the clinical treatment of infertile women and confirms that melatonin administration reduces intrafollicular oxidative damage and increase fertilization rates. This review summarizes our recent works and new findings related to the reported beneficial effects of melatonin on reproductive physiology in its role as a reducer of oxidative stress, especially on oocyte maturation and embryo development.
Key Findings
1
Animal in vitro and in vivo experiments confirm beneficial effects of melatonin on oocyte maturation and embryo development.
2
As a direct free-radical scavenger, melatonin may reduce reactive-oxygen-species-induced oxidative stress generated during ovulation.
3
Clinical administration of melatonin to infertile women reduced intrafollicular oxidative damage and increased fertilization rates.
4
Melatonin is present at higher concentrations in human preovulatory follicular fluid than in serum, indicating a direct ovarian role beyond endocrine receptor signaling.
5
Melatonin’s antioxidant activity is identified as an important mechanism supporting reproductive physiology, particularly oocyte maturation and embryo development.
Research Object
Ovarian follicles, including their follicular fluid, oocytes, and developing embryos
Research Subject
The antioxidant role of melatonin in reducing intrafollicular oxidative stress and its effects on oocyte maturation and embryo development
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2012-01-01
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