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Gonadotropin-releasing hormone in third ventricular cerebrospinal fluid: endogenous distribution and exogenous uptake.

机译:第三脑室脑脊液中促性腺激素释放激素:内源性分布和外源性摄取。

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摘要

GnRH is detectable in the cerebrospinal fluid (CSF), but its source remains unidentified. Previous studies have harvested CSF for GnRH analysis from the median eminence region, but it is unknown whether GnRH in CSF is restricted to this region. If CSF-GnRH plays a physiological role, through volume transmission, to communicate with brain regions that express GnRH receptors but are not evidently innervated by GnRH neurons, then it is essential to establish whether GnRH is more pervasive throughout the cerebroventricular system. Three cannulae were placed in the supraoptic, infundibular, and pineal recesses of the third ventricle. GnRH was undetectable in lateral ventricle CSF. GnRH pulses were detected in all ewes in infundibular recess CSF, but at sites more rostral (supraoptic) and caudal (pineal), GnRH pulse frequency and amplitude significantly (P<0.05) decreased. A GnRH surge was evident in CSF collected simultaneously from all cannulae, but the amplitude was greatest (P<0.05) at the infundibular recess. A final study established whether iv administered GnRH enters the CSF. A 250-ng GnRH dose did not affect CSF-GnRH concentrations (1.6+/-0.3 pg/ml), but 2.5 microg (2.7+/-0.2 pg/ml; P<0.001) and 1 mg (38.5+/-10.6 pg/ml; P<0.05) significantly increased CSF-GnRH concentrations. The present study shows: 1) the median eminence region is likely to be the major, if not only, source of GnRH entering the cerebroventricular system; and 2) exogenous GnRH crosses the blood-brain barrier, but extremely high doses are required to elevate CSF concentrations to physiological levels. Thus, CSF-GnRH may affect sites that are closer in proximity to the infundibular recess region than previously thought.
机译:在脑脊髓液(CSF)中可检测到GnRH,但其来源尚未确定。先前的研究已经从中值隆起区域收获了脑脊液用于GnRH分析,但尚不清楚脑脊液中的GnRH是否局限于该区域。如果CSF-GnRH通过体积传递发挥生理作用,与表达GnRH受体但不受GnRH神经元明显支配的大脑区域通讯,则必须确定GnRH是否在整个脑室系统中更普遍。将三个插管放置在第三脑室的视上,漏斗状和松果体凹处。在侧脑室CSF中检测不到GnRH。在漏斗状凹陷CSF的所有母羊中均检测到GnRH脉冲,但在鸟嘴(视上)和尾(松果)处,GnRH脉冲的频率和幅度均明显降低(P <0.05)。同时从所有套管收集的脑脊液中均出现GnRH激增,但在漏斗凹处的振幅最大(P <0.05)。最终研究确定了静脉注射GnRH是否进入脑脊液。 250 ng GnRH剂量不会影响CSF-GnRH浓度(1.6 +/- 0.3 pg / ml),但会影响2.5 microg(2.7 +/- 0.2 pg / ml; P <0.001)和1 mg(38.5 +/- 10.6) pg / ml; P <0.05)显着增加CSF-GnRH浓度。目前的研究表明:1)中位隆起区可能是进入脑室系统的主要(甚至不仅是)GnRH来源; 2)外源性GnRH穿过血脑屏障,但是需要极高的剂量才能将CSF浓度提高到生理水平。因此,CSF-GnRH可能会影响比目前所认为的更靠近漏斗凹陷区域的部位。

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