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水剥夺后再水化过程中大鼠下丘脑 - 垂体后叶系统中血管加压素水平的变化。与后叶超微结构方面的相关性。

Evolution of vasopressin levels in the hypothalamo-posthypophysial system of the rat during rehydration following water deprivation. Correlation with ultrastructural aspects in the posterior lobe.

作者信息

Rougon-Rapuzzi G, Cau P, Boudier J A, Cupo A

出版信息

Neuroendocrinology. 1978;27(1-2):46-62. doi: 10.1159/000122800.

Abstract

Evolution of the (arginine)-vasopressin (AVP) content of the supraoptic (SON), paraventricular (PVN) and suprachiasmatic nuclei (SchN) and of the posterior lobe of the hypophysis (PLH) has been studied in rats at successive stages of rehydration after 4 days deprivation of drinking water. Particular attention has been focussed on short periods of rehydration. Evolution of the AVP content of the hypothalamo-posthypophysial system (HHS), the blood serum AVP concentration and osmolalities of serum and urine were compared. Variations of the AVP content in the different hypothalamo-hypophysial structures, are parallel. A marked depletion of AVP is observed after 2 and 4 days of dehydration. The AVP content of the PLH and of the hypothalamic nuclei shows two dramatic and short increases 15 min and 3 h after the onset of rehydration; these results are discussed in relation to the known physiological regulation mechanism of the HHS. In the PLH depleted by dehydration, reloading with neurosecretory granules (NSG) begins to be noticeable only after 24 h of rehydration, so that it does not seem to account for elevations of the AVP content occurring earlier. These could be related to a marked increase of the smooth endoplasmic reticulum (SER) network taking place in axons and nerve endings before the NSG reloading.

摘要

在剥夺饮用水4天后的大鼠补液连续阶段,研究了视上核(SON)、室旁核(PVN)、视交叉上核(SchN)以及垂体后叶(PLH)中(精氨酸)血管加压素(AVP)含量的变化。特别关注了短时间补液的情况。比较了下丘脑 - 垂体后叶系统(HHS)中AVP含量的变化、血清AVP浓度以及血清和尿液的渗透压。不同下丘脑 - 垂体结构中AVP含量的变化是平行的。脱水2天和4天后观察到AVP明显减少。补液开始后15分钟和3小时,PLH和下丘脑核中的AVP含量出现两次显著且短暂的增加;结合已知的HHS生理调节机制对这些结果进行了讨论。在因脱水而耗尽的PLH中,只有在补液24小时后重新装载神经分泌颗粒(NSG)才开始明显,因此它似乎不能解释早期AVP含量的升高。这些升高可能与在NSG重新装载之前轴突和神经末梢中光滑内质网(SER)网络的显著增加有关。

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