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促性腺激素释放激素分泌至牛第三脑室脑脊液:与促黄体生成素的持续性和峰值释放的对应关系及其受哺乳和神经肽Y的持续性抑制作用

Gonadotropin-releasing hormone secretion into third-ventricle cerebrospinal fluid of cattle: correspondence with the tonic and surge release of luteinizing hormone and its tonic inhibition by suckling and neuropeptide Y.

作者信息

Gazal O S, Leshin L S, Stanko R L, Thomas M G, Keisler D H, Anderson L L, Williams G L

机构信息

Animal Reproduction Laboratory, Texas A&M University Agricultural Research Station, Beeville, Texas 78102, USA.

出版信息

Biol Reprod. 1998 Sep;59(3):676-83. doi: 10.1095/biolreprod59.3.676.

Abstract

Objectives of the current studies were to characterize the pattern of GnRH secretion in the cerebrospinal fluid of the bovine third ventricle, determine its correspondence with the tonic and surge release of LH in ovariectomized cows, and examine the dynamics of GnRH pulse generator activity in response to known modulators of LH release (suckling; neuropeptide Y [NPY]). In ovariectomized cows, both tonic release patterns and estradiol-induced surges of GnRH and LH were highly correlated (0.95; p < 0.01). Collectively, LH pulses at the baseline began coincident with (84%) or within one sampling point after (100%) the onset of a GnRH pulse, and all estradiol-induced LH surges were accompanied by corresponding surges of GnRH. A 500- microg dose of NPY caused immediate cessation of LH pulses and lowered (p < 0.001) plasma concentrations of LH for at least 4 h. This corresponded with declines (p < 0.05) in both GnRH pulse amplitude and frequency, but GnRH pulses were completely inhibited for only 1.5-3 h. In intact, anestrous cows, GnRH pulse frequency did not differ before and 48-54 h after weaning on Day 18 postpartum, but concentrations of GnRH (p < 0.05) and amplitudes of GnRH pulses (4 of 7 cows) increased in association with weaning and heightened secretion of LH. We conclude that the study of GnRH secretory dynamics in third-ventricle CSF provides a reasonable approach for examining the activity and regulation of the hypothalamic pulse generator in adult cattle. However, data generated using this approach must be interpreted in their broadest context. Although strong neurally mediated inhibitors of LH pulsatility (suckling; NPY) had robust effects on one or more GnRH secretory characteristics in CSF, only high doses of NPY briefly abolished GnRH pulses. This implies that the GnRH signal received at the hypophyseal portal vessels under these conditions may differ quantitatively or qualitatively from those in CSF, and theoretically would be undetectable or below a biologically effective threshold when LH pulses are absent.

摘要

当前研究的目的是描绘牛第三脑室脑脊液中促性腺激素释放激素(GnRH)的分泌模式,确定其与去卵巢母牛促黄体生成素(LH)的持续性释放和激增释放的对应关系,并研究GnRH脉冲发生器活性对已知的LH释放调节剂(哺乳;神经肽Y [NPY])的反应动态。在去卵巢母牛中,GnRH和LH的持续性释放模式以及雌二醇诱导的激增高度相关(0.95;p < 0.01)。总体而言,基线时的LH脉冲在GnRH脉冲开始时同时出现(84%)或在一个采样点之后出现(100%),并且所有雌二醇诱导的LH激增都伴随着相应的GnRH激增。500微克剂量的NPY导致LH脉冲立即停止,并使LH的血浆浓度降低(p < 0.001)至少4小时。这与GnRH脉冲幅度和频率的下降(p < 0.05)相对应,但GnRH脉冲仅在1.5 - 3小时内被完全抑制。在产后第18天断奶的完整、处于乏情期的母牛中,断奶前和断奶后48 - 54小时GnRH脉冲频率没有差异,但GnRH浓度(p < 0.05)和GnRH脉冲幅度(7头母牛中的4头)随着断奶和LH分泌增加而升高。我们得出结论,对第三脑室脑脊液中GnRH分泌动态的研究为检查成年牛下丘脑脉冲发生器的活性和调节提供了一种合理的方法。然而,使用这种方法产生的数据必须在最广泛的背景下进行解释。尽管强烈的神经介导的LH脉冲性抑制剂(哺乳;NPY)对脑脊液中一种或多种GnRH分泌特征有强烈影响,但只有高剂量的NPY能短暂消除GnRH脉冲。这意味着在这些条件下垂体门脉血管接收到的GnRH信号在数量或质量上可能与脑脊液中的不同,并且理论上在没有LH脉冲时将无法检测到或低于生物有效阈值。

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