Kahn D, Abrams G M, Zimmerman E A, Carraway R, Leeman S E
Endocrinology. 1980 Jul;107(1):47-54. doi: 10.1210/endo-107-1-47.
Neurotensin was localized in the hypothalamic tissues of adult Sprague-Dawley rats by immunoperoxidase techniques. Visualization of perikarya was greatly enhanced by intraventricular administration of colchicine. Many perikarya containing neurotensin-like immunoreactivity were seen in the medial preoptic area, the periventricular hypothalamus, the parvocellular portion of the paraventricular nucleus, the arcuate nucleus, and the lateral hypothalamus in the perifornical area. There were moderate numbers of cell bodies in the ventral portion of the anterior hypothalamus, the dorsomedial nucleus, and the posterior hypothalamus. No positive cells were seen in the suprachiasmatic, ventromedial, or mammillary nuclei. Reactive fibers were generally distributed in the same regions as cell bodies. Additional dense collections were seen in the lateral part of the zona externa of the median eminence, the pituitary stalk, the posterior mammillary nucleus, and the most lateral portions of the hypothalamus at the medial edge of the crura cerbri. There were smaller numbers of fibers found in the pre-mammillary and posterior hypothalamic nuclei and the posterior pituitary gland. These results indicate that the neurotensin system in the hypothalamus is very extensive and complex, as it is in many other brain regions. Neurons and fibers are found in many hypothalamic areas, including projections to the hypophysial portal system in the median eminence, suggesting that neurotensin may affect neuroendocrine mechanisms at several levels, including the anterior pituitary gland.
采用免疫过氧化物酶技术将神经降压素定位在成年斯普拉格-道利大鼠的下丘脑组织中。通过脑室内注射秋水仙碱可大大增强神经元胞体的可视化效果。在内侧视前区、室周下丘脑、室旁核小细胞部、弓状核以及穹窿周区的外侧下丘脑可见许多含有神经降压素样免疫反应性的神经元胞体。下丘脑前部腹侧、背内侧核以及下丘脑后部有中等数量的细胞体。在视交叉上核、腹内侧核或乳头体核中未见阳性细胞。反应性纤维通常分布在与细胞体相同的区域。在正中隆起外侧区、垂体柄、乳头体后核以及大脑脚内侧边缘下丘脑最外侧部分还可见到额外的密集纤维束。在乳头体前核、下丘脑后核以及垂体后叶中发现的纤维数量较少。这些结果表明,下丘脑的神经降压素系统非常广泛和复杂,正如在许多其他脑区一样。在许多下丘脑区域都发现了神经元和纤维,包括向正中隆起垂体门脉系统的投射,这表明神经降压素可能在多个水平影响神经内分泌机制,包括垂体前叶。