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首页> 外文期刊>Reproduction, fertility, and development >The influence of dopaminergic system inhibition on biosynthesis of gonadotrophin-releasing hormone (GnRH) and GnRH receptor in anoestrous sheep; hierarchical role of kisspeptin and RFamide-related peptide-3 (RFRP-3)
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The influence of dopaminergic system inhibition on biosynthesis of gonadotrophin-releasing hormone (GnRH) and GnRH receptor in anoestrous sheep; hierarchical role of kisspeptin and RFamide-related peptide-3 (RFRP-3)

机译:多巴胺能系统抑制对吞咽植物促进激素(GNRH)和GnRH受体生物合成的影响; 基肽和rFamide相关的肽-3(RFRP-3)的分层作用

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摘要

This study aimed to explain how prolonged inhibition of central dopaminergic activity affects the cellular processes governing gonadotrophin-releasing hormone (GnRH) and LH secretion in anoestrous sheep. For this purpose, the study included two experimental approaches: first, we investigated the effect of infusion of sulpiride, a dopaminergic D2 receptor antagonist (D2R), on GnRH and GnRH receptor (GnRHR) biosynthesis in the hypothalamus and on GnRHR in the anterior pituitary using an immunoassay. This analysis was supplemented by analysis of plasma LH levels by radioimmunoassay. Second, we used real-time polymerase chain reaction to analyse the influence of sulpiride on the levels of kisspeptin (Kiss1) mRNA in the preoptic area and ventromedial hypothalamus including arcuate nucleus (VMH/ARC), and RFamide-related peptide-3 (RFRP-3) mRNA in the paraventricular nucleus (PVN) and dorsomedial hypothalamic nucleus. Sulpiride significantly increased plasma LH concentration and the levels of GnRH and GnRHR in the hypothalamic-pituitary unit. The abolition of dopaminergic activity resulted in a significant increase in transcript level of Kiss1 in VMH/ARC and a decrease of RFRP-3 in PVN. The study demonstrates that dopaminergic neurotransmission through D2R is involved in the regulatory pathways of GnRH and GnRHR biosynthesis in the hypothalamic-pituitary unit of anoestrous sheep, conceivably via mechanisms in which Kiss1 and RFRP-3 participate.
机译:本研究旨在解释中枢多巴胺能活性的延长抑制如何影响治疗毒素释放激素(GNRH)和在异形绵羊中分泌的细胞过程。为此目的,该研究包括两种实验方法:首先,我们研究了丘脑中丘脑中的GnRH和GnRH受体(GNRHR)生物合成,在壁前垂体中的GnRH和GnRHR受体(GNRHR)生物合成的硫葡萄项输注的影响使用免疫测定。通过放射免疫测定的血浆LH水平进行补充该分析。其次,我们使用实时聚合酶链反应分析硫胺对静脉内核(VMH / ARC)和RFamide相关肽-3(RFRP)和rFamide相关的肽-3(RFLP)中的氨基嘧啶(KISS1)mRNA水平的影响-3)椎间盘(PVN)和背体下丘脑中的mRNA。氨基吡啶血浆LH浓度显着增加,下丘脑 - 垂体单元中的GNRH和GNRHR水平。取消多巴胺能活性导致VMH /弧中Kiss1的转录物水平的显着增加,PVN中的RFRP-3减少。该研究表明,通过D2R的多巴胺能神经递质参与在食子羊的下丘脑 - 垂体单位中GnRH和GnRHR生物合成的调节途径,可以通过其中吻1和RFRP-3参与的机制来观察。

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