松果体对急性ACTH注射的快速形态动力学反应的特征。

J Milin, M Demajo, R Milin
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引用次数: 0

摘要

研究单次注射ACTH后5 ~ 30min松果体的形态动力学反应。在5分钟内,生理盐水注射作为对照,引起松果体活性化合物的迅速释放,这些化合物被主张包含在透明囊泡和传统标记为脂滴的结构中。在随后的15分钟内,颗粒内质网(GER)和高尔基体以及分泌颗粒的相对体积增加被解释为松果体细胞活性增加的迹象,导致松果体内分泌潜能的恢复。在30分钟内,这种膜性精细室的增加质量下降,可以理解为松果体细胞应激诱发反应稳定的例证。ACTH注射在5分钟内并没有明显改变生理盐水注射促进的松果体细胞形态动力学反应模式。然而,从15分钟开始,两个松果体细胞群的GER和高尔基体的质量都显著增加。与注射盐水的动物相比,分泌颗粒和脂滴的存在增加,以及松果体细胞分泌活性缺乏明显可观察到的证据,这表明ACTH对松果体细胞膜精细室的刺激作用促进了松果体细胞内分泌恢复,而不是支持其当前的分泌活性。从功能的角度来看,所获得的结果表明,应激诱导的ACTH爆发可以调节先前应激激活的松果体细胞内分泌电位的分泌后恢复。
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Characteristics of a prompt morphodynamic response of the pineal gland to an acute ACTH injection.

The morphodynamic response of the pineal gland in the period 5-30 min after a single ACTH injection was studied. In 5 min a saline injection, functioning as a control, elicited a prompt release of the pineal active compounds advocated to be contained in clear vesicles and structures traditionally labeled lipid droplets. In the subsequent time period, 15 min, a rise in the relative volume of the granular endoplasmic reticulum (GER) and the Golgi apparatus, as well as prosecretory granules, was interpreted as a sign of an increased pinealocyte activity which leads to the restoration of the pineal gland endocrine potential. A decline in the increased mass of this membranous elaborative compartment in 30 min could be understood as an illustration of the stabilisation of the pinealocyte stress-evoked response. The ACTH injection did not apparently change the pattern of the morphodynamic pinealocyte response promoted by the saline injection in 5 min. However, starting from 15 min, a significant increase of the mass of GER and the Golgi apparatus was found in both pinealocyte populations. The augmented presence of prosecretory granules and lipid droplets, in comparison with the saline-injected animals in the respective time period, as well as the absence of a clearly observable evidence of the pinealocyte secretory activity pointed out that the ACTH stimulative action on the pinealocyte membranous elaborative compartment rather facilitated the pinealocyte endocrine recovery than supported their current secretory activity. From the functional viewpoint, the results obtained suggest that a stress-induced ACTH burst could modulate the post-secretory restitution of the endocrine potential of previously stress-activated pinealocytes.

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