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首页> 外文期刊>Journal of pineal research >Beneficial effects of melatonin on in vitro bovine embryonic development are mediated by melatonin receptor 1
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Beneficial effects of melatonin on in vitro bovine embryonic development are mediated by melatonin receptor 1

机译:褪黑激素对体外牛胚胎发育的有益作用是由褪黑激素受体1介导的

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In the current study, a fundamental question, that is, the mechanisms related to the beneficial effects of melatonin on mammalian embryonic development, was addressed. To examine the potential beneficial effects of melatonin on bovine embryonic development, different concentrations of melatonin (10?11, 10?9, 10?7, 10?5, 10?3?m) were incubated with fertilized embryos. Melatonin in the range of 10?11 to 10?5?m significantly promoted embryonic development both in early culture medium (CR1aa?+3?mg/mL BSA) and in later culture medium (CR1aa?+?6%FBS). The most effective concentrations applied in the current studies were 109 and 107?m. Using quantitative real-time PCR with immunofluorescence and Western blot assays, the expression of melatonin receptor MT1 and MT2 genes was identified in bovine embryos. Further studies indicate that the beneficial effects of melatonin on bovine embryo development were mediated by the MT1 receptor. This is based on the facts that luzindole, a nonselective MT1 and MT2 antagonist, blocked the effect on melatonin-induced embryo development, while 4-P-PDOT, a selective MT2 antagonist, had little effect. Mechanistic explorations uncovered that melatonin application during bovine embryonic development significantly up-regulated the expression of antioxidative (Gpx4, SOD1, bcl-2) and developmentally important genes (SLC2A1, DNMT1A, and DSC2) while down-regulating expression of pro-apoptotic genes (P53, BAX, and Caspase-3). The results obtained from the current studies provide new information regarding the mechanisms by which melatonin promotes bovine embryonic development under both in vitro and in vivo conditions.
机译:在当前的研究中,解决了一个基本问题,即与褪黑激素对哺乳动物胚胎发育的有益作用有关的机制。为了检验褪黑激素对牛胚胎发育的潜在有益作用,将不同浓度的褪黑激素(10?11、10?9、10?7、10?5、10?3?m)与受精胚胎一起孵育。在早期培养液(CR1aaβ+3μg/ mL BSA)和后来的培养液(CR1aaβ+β6%FBS)中,褪黑激素在10?11至10?5?m的范围内均可显着促进胚胎发育。目前研究中使用的最有效浓度为109和107?m。使用免疫荧光定量实时PCR和Western印迹测定,褪黑素受体MT1和MT2基因在牛胚胎中的表达被确定。进一步的研究表明,褪黑激素对牛胚胎发育的有益作用是由MT1受体介导的。这是基于以下事实:非选择性MT1和MT2拮抗剂luzindole阻断了褪黑激素诱导的胚胎发育的作用,而选择性MT2拮抗剂4-P-PDOT的作用很小。机理探索发现,褪黑素在牛胚胎发育过程中的应用显着上调了抗氧化(Gpx4,SOD1,bcl-2)和重要发育基因(SLC2A1,DNMT1A和DSC2)的表达,同时下调了促凋亡基因( P53,BAX和Caspase-3)。从当前研究中获得的结果提供了有关褪黑激素在体外和体内条件下促进牛胚胎发育的机制的新信息。

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