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[下丘脑-神经垂体系统与抗利尿激素(作者译)]

[The hypothalamo-neurohypophysial system and antidiuretic hormone (author's transl)].

作者信息

Fujimoto S

出版信息

Nihon Yakurigaku Zasshi. 1977 Apr;73(3):257-66. doi: 10.1254/fpj.73.257.

Abstract

Production, transport, storage and release of antidiuretic hormone (ADH) in the hypothalamo-neurohypophysial system were investigated. ADH produced by nerve cells in the paraventricular and supraoptic nuclei of the hypothalamus is present in a form bound to the specific protein neurophysin, in the neurosecretary granula. Electric and chemical stimulation of these nuclei results in evoked release of ADH in ionic association with neurophysin from the neural lobes. Acetylcholine, norepinephrine, histamine, angiotensin II, gamma-aminobutyric acid and L-glutamic acid have been regarded as candidates of chemical transmitters for the release of ADH in the hypothalamus. Prostaglandin (PG) E2 may be another important compound for central regulation of water metabolism. The possibility that PGE2 may be the transmitter or a modulator in the nuclei has to be considred. Serotonin, dopamine and taurine, however, may not be involded in the ADH releasing mechanisms in the hypothalamus. It appears that norepinephrine, histamine, angiotensin II, PGE2 and bradykinin stimulate directly the neural lobe to release ADH. The ADH release is regulated by intracellular Ca++. The existence of a "readily-releasable pool" of ADH can be ruled out and any limitation in the amount of ADH released under experimental conditions may be due to insufficient activation of the neural lobe. A physiological significance other than a carrier was proposed for neurophysin.

摘要

对下丘脑 - 神经垂体系统中抗利尿激素(ADH)的产生、运输、储存和释放进行了研究。下丘脑室旁核和视上核的神经细胞产生的ADH以与特定蛋白质神经垂体素结合的形式存在于神经分泌颗粒中。对这些核进行电刺激和化学刺激会导致ADH与神经垂体素离子结合从神经叶中释放出来。乙酰胆碱、去甲肾上腺素、组胺、血管紧张素II、γ-氨基丁酸和L-谷氨酸被认为是下丘脑释放ADH的化学递质候选物。前列腺素(PG)E2可能是水代谢中枢调节的另一种重要化合物。必须考虑PGE2可能是这些核中的递质或调节剂的可能性。然而,5-羟色胺、多巴胺和牛磺酸可能不参与下丘脑的ADH释放机制。去甲肾上腺素、组胺、血管紧张素II、PGE2和缓激肽似乎直接刺激神经叶释放ADH。ADH的释放受细胞内Ca++调节。可以排除ADH“易释放池”的存在,实验条件下ADH释放量的任何限制可能是由于神经叶激活不足。有人提出神经垂体素除了作为载体外还有其他生理意义。

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