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Clinical relevance of melatonin in ovarian and placental physiology: A review

机译:褪黑素在卵巢和胎盘生理中的临床意义

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摘要

Within the last decade, the synthesis of melatonin in and its functions at the level of the peripheral reproductive organs has come into better focus. Melatonin is produced at several reproductive organ sites, e.g., the oocyte, ovarian follicular cells and the placental cytotrophoblasts. Moreover, these cells also contain membrane receptors for this indoleamine. In addition, via the free radical scavenging activity of melatonin and its metabolites, oxidative stress is reduced in all reproductive organ cells ensuring their optimal function. Enhancement of oocyte maturation and preservation of oocyte quality may be major functions of melatonin. Oocyte damage reduces successful fertilization and the development of a healthy fetus. The findings that melatonin protects the oocyte from toxic oxygen species have implications for improving the outcome of in vitro fertilization-embryo transfer procedures, as already shown in two published reports. Some actions of melatonin in the placenta may be context specific. Thus, melatonin is believed to function in the maintenance of optimal placental homeostasis by deferring apoptosis of villous cytotrophoblasts, while protecting syncytiotrophoblasts from oxidative damage. Melatonin reduces oxidative damage in the placenta and may improve hemodynamics and nutrient transfer at the placental-uterine interface. The use of melatonin to treat preeclampsia should also be considered.
机译:在过去十年中,褪黑激素的合成及其在周围生殖器官水平的功能已成为人们关注的焦点。褪黑激素是在几个生殖器官部位产生的,例如卵母细胞,卵巢滤泡细胞和胎盘滋养细胞。此外,这些细胞还含有该吲哚胺的膜受体。此外,通过褪黑激素及其代谢产物的自由基清除活性,所有生殖器官细胞中的氧化应激均得以降低,从而确保了它们的最佳功能。促进卵母细胞成熟和保持卵母细胞质量可能是褪黑激素的主要功能。卵母细胞的损伤会减少成功的受精和健康胎儿的发育。褪黑素可以保护卵母细胞免受有毒氧的影响,这一发现对于改善体外受精-胚胎移植程序的结果具有重要意义,正如两个已发表的报告所表明的那样。褪黑激素在胎盘中的某些作用可能是特定情况的。因此,褪黑素被认为通过延迟绒毛细胞滋养细胞的凋亡,同时保护合体滋养细胞免受氧化损伤而在维持最佳胎盘稳态中起作用。褪黑素可减少胎盘中的氧化损伤,并可以改善胎盘-子宫界面的血流动力学和营养转移。还应考虑使用褪黑激素治疗先兆子痫。

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