Importance of Melatonin in Assisted Reproductive Technology and Ovarian Aging

Значение мелатонина в вспомогательных репродуктивных технологиях и старении яичников
Hiroshi Tamura, Mai Jozaki, Manabu Tanabe, Yuichiro Shirafuta, Yumiko Mihara, Masahiro Shinagawa, Isao Tamura, Ryo Maekawa, Shun Sato, Toshiaki Taketani, Akihisa Takasaki, Rüssel J. Reiter, Norihiro Sugino
2020-02-08

assisted reproductive technologyin vitro fertilizationmelatoninovarian agingoxidative stress
Melatonin is probably produced in all cells but is only secreted by the pineal gland. The pineal secretion of melatonin is determined by the light-dark cycle, and it is only released at night. Melatonin regulates biological rhythms via its receptors located in the suprachiasmatic nuclei of the hypothalamus. Melatonin also has strong antioxidant activities to scavenge free radicals such as reactive oxygen species (ROS). The direct free radical scavenging actions are receptor independent. ROS play an important role in reproductive function including in the ovulatory process. However, excessive ROS can also have an adverse effect on oocytes because of oxidative stress, thereby causing infertility. It is becoming clear that melatonin is located in the ovarian follicular fluid and in the oocytes themselves, which protects these cells from oxidative damage as well as having other beneficial actions in oocyte maturation, fertilization, and embryo development. Trials on humans have investigated the improvement of outcomes of assisted reproductive technology (ART), such as in vitro fertilization and embryo transfer (IVF-ET), by way of administering melatonin to patients suffering from infertility. In addition, clinical research has examined melatonin as an anti-aging molecule via its antioxidative actions, and its relationship with the aging diseases, e.g., Alzheimer's and Parkinson's disease, is also underway. Melatonin may also reduce ovarian aging, which is a major issue in assisted reproductive technology. This review explains the relationship between melatonin and human reproductive function, as well as the clinical applications expected to improve the outcomes of assisted reproductive technology such as IVF, while also discussing possibilities for melatonin in preventing ovarian aging.
1
Excessive reactive oxygen species can damage oocytes and contribute to infertility, while melatonin may counteract this oxidative damage.
2
Human trials have investigated melatonin supplementation as a strategy to improve assisted reproductive technology outcomes, including IVF and embryo transfer.
3
Melatonin directly scavenges reactive oxygen species independently of receptors, helping protect reproductive cells from oxidative stress.
4
Melatonin is present in ovarian follicular fluid and oocytes, where it may support oocyte maturation, fertilization, and embryo development.
5
Melatonin’s antioxidative properties suggest potential for reducing ovarian aging, although this application remains an area of ongoing clinical research.

Melatonin in human reproductive function, assisted reproductive technology, and ovarian aging

Melatonin’s antioxidant and reproductive effects, including protection of oocytes, enhancement of oocyte maturation, fertilization and embryo development, improvement of ART outcomes, and prevention of ovarian aging

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2020-02-08
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Hiroshi Tamura
Mai Jozaki
Manabu Tanabe
Yuichiro Shirafuta
Yumiko Mihara
Masahiro Shinagawa
Isao Tamura
Ryo Maekawa
Shun Sato
Toshiaki Taketani
Akihisa Takasaki
Rüssel J. Reiter
Norihiro Sugino
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