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首页> 外文期刊>Journal of Poultry Science >Melatonin Does Not Affect Progesterone Basal Secretion but Suppresses the Luteinizing Hormone Receptor Expression in Granulosa Cells of the Japanese Quail
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Melatonin Does Not Affect Progesterone Basal Secretion but Suppresses the Luteinizing Hormone Receptor Expression in Granulosa Cells of the Japanese Quail

机译:褪黑激素不影响黄体酮基础分泌,但抑制日本鹌鹑的甘蓝细胞中的丁黄激素受体表达

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摘要

The aim of this study was to evaluate the potential effect of melatonin on progesterone production by granulosa cells of the Japanese quail. For in vitro experiments, granulosa cells were isolated from pre-ovulatory follicles (F1-F3) when the F1 follicles were predicted to be either immature or mature (at 3-6 or 18-21 h after oviposition, respectively). Granulosa cells were cultured for 12 h with or without melatonin concentration gradients of 0.0001100,ag/mL, thereby averting luteinizing hormone (LH) stimulation. The concentration of progesterone in culture medium was measured using an enzyme immunoassay. The expression of melatonin receptor subtypes in granulosa cells from F1 follicles was detected by reverse transcription-PCR. The LH receptor (LHCGR) mRNA level in cultured granulosa cells of the F1 follicles was analyzed using quantitative real-time PCR. Six quails were used in each of four groups for in vivo experiments. Each group received intraperitoneal injection of melatonin (0.67 mg/kg body weight) or mock-vehicle at 3 or 18 h after oviposition, respectively. The birds were decapitated to collect serum 3 h later (at 6 or 21 h after oviposition, respectively). The serum progesterone level was also measured using an enzyme immunoassay. We observed that melatonin receptor subtypes (Mel-la, lb, and lc) were expressed in the granulosa cells of the F1 follicles of the Japanese quail. Melatonin suppresses the LHCGR mRNA expression in granulosa cells of F1 follicles but does not affect the basal secretion of progesterone in cultured granulosa cells of the F1 F3 follicles. In addition, melatonin treatment has no influence on the serum progesterone concentration at 6h post-oviposition, but suppresses progesterone level 21 h after oviposition in the Japanese quail.
机译:本研究的目的是评估褪黑激素对日本鹌鹑颗粒细胞颗粒细胞孕酮产生的潜在影响。对于体外实验,当预测F1卵泡是不成熟的或成熟的(分别在4-6或18-21小时的情况下,从预排卵卵泡(F1-F3)中分离颗粒细胞。用0.0001100,Ag / ml的褪黑激素浓度梯度培养颗粒细胞12小时,从而避免丁黄激素(LH)刺激。使用酶免疫测定法测量培养基中孕酮的浓度。通过逆转录PCR检测来自F1卵泡的颗粒体细胞中褪黑素受体亚型的表达。使用定量实时PCR分析F1卵泡的培养颗粒细胞中的LH受体(LHCGR)mRNA水平。在体内实验中的四组中使用六个鹌鹑。每组在产卵后3或18小时分别接受腹膜内注射褪黑激素(0.67mg / kg体重)或模拟载体。鸟类被斩首以便以后收集血清3 H(分别在4或21小时,产卵后)。还使用酶免疫测定测量血清孕酮水平。我们观察到褪黑激素受体亚型(Mel-La,Lb和Lc)在日本鹌鹑的F1卵泡的颗粒细胞中表达。褪黑激素抑制F1卵泡的颗粒细胞中的LHCGR mRNA表达,但不影响F1 F3卵泡的培养颗粒细胞中孕酮的基础分泌。此外,褪黑激素治疗对产卵后6小时的血清孕酮浓度没有影响,但在日本鹌鹑中产卵后21小时抑制孕酮水平。

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