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Hypothalamic and Brainstem Sources of Pituitary Adenylate Cyclase-Activating Polypeptide Nerve Fibers Innervating the Hypothalamic Paraventricular Nucleus in the Rat

机译:下丘脑和脑干来源的垂体腺苷酸环化酶激活多肽神经纤维激活大鼠下丘脑室旁核。

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摘要

The hypothalamic paraventricular nucleus (PVN) coordinates major neuroendocrine and behavioral mechanisms, particularly responses to homeostatic challenges. Parvocellular and magnocellular PVN neurons are richly innervated by pituitary adenylate cyclase-activating polypeptide (PACAP) axons. Our recent functional observations have also suggested that PACAP may be an excitatory neuropeptide at the level of the PVN. Nevertheless, the exact localization of PACAP-producing neurons that project to the PVN is not understood. The present study examined the specific contribution of various brain areas sending PACAP innervation to the rat PVN by using iontophoretic microinjections of the retrograde neuroanatomical tracer cholera toxin B subunit (CTb). Retrograde transport was evaluated from hypothalamic and brainstem sections by using multiple labeling immunofluorescence for CTb and PACAP. PACAP-containing cell groups were found to be retrogradely labeled from the PVN in the median preoptic nucleus; preoptic and lateral hypothalamic areas; arcuate, dorsomedial, ventromedial, and supramammillary nuclei; ventrolateral midbrain periaqueductal gray; rostral and midlevel ventrolateral medulla, including the C1 catecholamine cell group; nucleus of the solitary tract; and dorsal motor nucleus of vagus. Minor PACAP projections with scattered double-labeled neurons originated from the parabrachial nucleus, pericoeruleus area, and caudal regions of the nucleus of the solitary tract and ventrolateral medulla. These observations indicate a multisite origin of PACAP innervation to the PVN and provide a strong chemical neuroanatomical foundation for interaction between PACAP and its potential target neurons in the PVN, such as parvocellular CRH neurons, controlling physiologic responses to stressful challenges and other neuroendocrine or preautonomic PVN neurons.
机译:下丘脑室旁核(PVN)协调主要的神经内分泌和行为机制,尤其是对稳态挑战的反应。垂体腺苷酸环化酶激活多肽(PACAP)轴突丰富地支配了细小细胞和大细胞PVN神经元。我们最近的功能性观察还表明,PACAP可能是PVN水平上的一种兴奋性神经肽。然而,尚不清楚投射到PVN的PACAP产生神经元的确切定位。本研究通过使用逆行神经解剖示踪剂霍乱毒素B亚基(CTb)的离子电渗显微注射检查了将PACAP神经支配给大鼠PVN的各个大脑区域的特定贡献。通过对CTb和PACAP进行多重标记免疫荧光来评估下丘脑和脑干切片的逆行转运。发现含有PACAP的细胞群在视前中位核中从PVN开始被逆行标记。视前下丘脑外侧区;弓状,背体,腹膜和上乳头核;腹外侧中脑导水管周围灰白色;腹侧和中腹外侧延髓,包括C1儿茶酚胺细胞群;孤束核;和迷走神经的背运动核。带有散布的双标签神经元的小PACAP投影起源于臂丛旁核,膜周围小核区以及孤立道和腹外侧延髓的核的尾状区域。这些观察结果表明,PACAP神经支配的多部位起源于PVN,并为PACAP及其在PVN中的潜在靶神经元(如小细胞CRH神经元)之间的相互作用提供了强大的化学神经解剖学基础,从而控制了对应激挑战和其他神经内分泌或自主神经PVN的生理反应。神经元。

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