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神经垂体激素及其载体蛋白定位的超微结构研究

Ultrastructural studies on the localization of neurohypophysial hormones and their carrier proteins.

作者信息

Silverman A J

出版信息

J Histochem Cytochem. 1976 Jul;24(7):816-27. doi: 10.1177/24.7.60434.

Abstract

Neurophysin, vasopressin and oxytocin were localized in different portions of the supraopticohypophysial tract (SHT) using the unlabeled antibody enzyme technique at the ultrastructural level. In vasopressin-positive supraoptic perikarya, vasopressin and neurophysin were present in all neurosecretory granules. Within the zona interna of the median eminence, vasopressin and neurophysin were present in two populations of axons, one with granules of 1300-1500 A and one with granules of 900-1300 A. Following exposure of thin sections of median eminence to antiserum to neurophysin, reaction products were present in granules and in the extragranular cytoplasm in the axons with larger granules; in all other cases reaction product was confined to the granules. Vasopressin-positive fibers were also presented in large numbers of the zona externa of the median eminence and many terminated on the pituitary primary portal plexus. A few oxytocin fibers were present on the portal capillaries in the infundibular stalk. In the posterior pituitary all axon profiles were neurophysin positive. Neurophysin was present as both a granular and cytoplasmic pool. Vasopressin-containing axons account for 90% of the neuronal elements in the posterior pituitary and oxytocin for the remaining 10%. Findings on the subcellular distribution of these peptides are related to current theories on transport and release of neurohormones.

摘要

运用超微结构水平的非标记抗体酶技术,在视上垂体束(SHT)的不同部位定位了神经垂体素、血管加压素和催产素。在血管加压素阳性的视上核周体中,所有神经分泌颗粒均含有血管加压素和神经垂体素。在正中隆起的内侧带内,血管加压素和神经垂体素存在于两类轴突中,一类轴突含有直径为1300 - 1500埃的颗粒,另一类含有直径为900 - 1300埃的颗粒。将正中隆起的薄切片用抗神经垂体素抗血清处理后,反应产物存在于较大颗粒轴突的颗粒内和颗粒外细胞质中;在所有其他情况下,反应产物局限于颗粒内。大量血管加压素阳性纤维也出现在正中隆起的外侧带,许多终止于垂体初级门静脉丛。在漏斗柄的门静脉毛细血管上有少量催产素纤维。在垂体后叶,所有轴突轮廓均为神经垂体素阳性。神经垂体素以颗粒池和细胞质池两种形式存在。含血管加压素的轴突占垂体后叶神经元成分的90%,含催产素的轴突占其余10%。这些肽类在亚细胞水平分布的研究结果与当前关于神经激素运输和释放的理论相关。

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