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Relative Importance of the Arcuate and Anteroventral Periventricular Kisspeptin Neurons in Control of Puberty and Reproductive Function in Female Rats

机译:弓形和腹膜前室亲核蛋白神经元在雌性大鼠青春期和生殖功能控制中的相对重要性

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摘要

Kisspeptin plays a critical role in pubertal timing and reproductive function. In rodents, kisspeptin perikarya within the hypothalamic arcuate (ARC) and anteroventral periventricular (AVPV) nuclei are thought to be involved in LH pulse and surge generation, respectively. Using bilateral micro-injections of recombinant adeno-associated virus encoding kisspeptin antisense into the ARC or AVPV of female rats at postnatal day 10, we investigated the relative importance of these two kisspeptin populations in the control of pubertal timing, estrous cyclicity, and LH surge and pulse generation. A 37% knockdown of kisspeptin in the AVPV resulted in a significant delay in vaginal opening and first vaginal estrous, abnormal estrous cyclicity, and reduction in the occurrence of spontaneous LH surges, although these retained normal amplitude. This AVPV knockdown had no effect on LH pulse frequency, measured after ovariectomy. A 32% reduction of kisspeptin in the ARC had no effect on the onset of puberty but resulted in abnormal estrous cyclicity and decreased LH pulse frequency. Additionally, the knockdown of kisspeptin in the ARC decreased the amplitude but not the incidence of LH surges. These results might suggest that the role of AVPV kisspeptin in the control of pubertal timing is particularly sensitive to perturbation. In accordance with our previous studies, ARC kisspeptin signaling was critical for normal pulsatile LH secretion in female rats. Despite the widely reported role of AVPV kisspeptin neurons in LH surge generation, this study suggests that both AVPV and ARC populations are essential for normal LH surges and estrous cyclicity.
机译:Kisspeptin在青春期时机和生殖功能中起关键作用。在啮齿类动物中,下丘脑弓状弧(ARC)和前房室周围(AVPV)核内的基索肽周围核被认为分别与LH脉冲和激增产生有关。在出生后第10天,使用双侧显微编码腺癌相关病毒的重组腺相关病毒双边注射到雌性大鼠的ARC或AVPV中,我们研究了这两个Kisspeptin种群在控制青春期时机,发情周期和LH激增中的相对重要性和脉冲产生。在AVPV中将37%的Kisspeptin击倒会导致阴道开放和最初的阴道发情明显延迟,发情周期异常以及自发性LH激增的发生率降低,尽管这些保持正常幅度。卵巢切除后测得的这种AVPV降低对LH脉冲频率没有影响。 ARC中亲吻肽素降低32%对青春期发作没有影响,但导致异常的发情周期和LH脉冲频率降低。此外,在ARC中对Kisspeptin进行敲低可以降低幅度,但不会降低LH激增的发生率。这些结果可能表明,AVPV Kisspeptin在控制青春期时机中的作用对摄动特别敏感。根据我们之前的研究,ARC Kisspeptin信号对于雌性大鼠正常的搏动性LH分泌至关重要。尽管AVPV Kisspeptin神经元在LH激增产生中被广泛报道,但这项研究表明,AVPV和ARC群体对于正常的LH激增和发情周期都是必不可少的。

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