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猫体内释放催产素和抗利尿激素的下丘脑神经分泌途径。

The hypothalamic neurosecretory pathways for the release of oxytocin and vasopressin in the cat.

作者信息

Bisset G W, Clark B J, Errington M L

出版信息

J Physiol. 1971 Aug;217(1):111-31. doi: 10.1113/jphysiol.1971.sp009562.

Abstract
  1. The neurones of the supraoptic nucleus (SON) and paraventricular nucleus (PVN) were stimulated electrically in lactating cats under chloralose anaesthesia. Milk-ejection responses were used to monitor the release of oxytocin and vasopressin and both hormones were assayed in samples of blood collected during stimulation. The position of the tip of the stimulating electrode was confirmed from brain sections stained selectively for cystine-rich neurosecretory material.2. A previous finding that stimulation of the SON in the cat releases vasopressin without oxytocin was confirmed.3. Stimulation of the PVN caused both hormones to be released. The ratio of their concentrations in blood was variable; this suggests release from separate neurones.4. Both hormones were also released on stimulation of the median eminence but not of the zone lying vertically between this structure and the PVN. No neurosecretory material was detected in this zone. These findings argue against the existence of a direct or medial paraventriculo-hypophysial pathway running downwards along the wall of the third ventricle.5. Study of sections from unstimulated brains confirmed that the tractus paraventricularis cinereus of Greving which runs ventro-laterally from the PVN towards the SON, represents the principal efferent pathway for neurosecretory fibres from the PVN.6. The results are discussed in relation to the problem of the independent release of oxytocin and vasopressin in response to physiological stimulation of the neurohypophysis.
摘要
  1. 在水合氯醛麻醉下,对泌乳猫的视上核(SON)和室旁核(PVN)神经元进行电刺激。用乳汁喷射反应来监测催产素和血管加压素的释放,并对刺激期间采集的血样中的这两种激素进行测定。通过对富含胱氨酸的神经分泌物质进行选择性染色的脑切片来确定刺激电极尖端的位置。

  2. 先前关于刺激猫的视上核释放血管加压素而不释放催产素的发现得到了证实。

  3. 刺激室旁核导致两种激素都释放。它们在血液中的浓度比是可变的;这表明是从不同的神经元释放的。

  4. 刺激正中隆起时两种激素也会释放,但刺激位于该结构和室旁核之间垂直区域时则不会。在该区域未检测到神经分泌物质。这些发现反对存在沿着第三脑室壁向下延伸的直接或内侧室旁核 - 垂体通路。

  5. 对未受刺激大脑切片的研究证实,格雷温的室旁灰质束从室旁核向腹外侧延伸至视上核,代表了室旁核神经分泌纤维的主要传出通路。

  6. 结合神经垂体生理刺激时催产素和血管加压素独立释放的问题对结果进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0975/1331547/2236691ad56c/jphysiol01015-0136-a.jpg

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