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家鸽大脑中血管活性肠肽结合位点与纤维:放射自显影和免疫组织化学研究

Vasoactive intestinal peptide binding sites and fibers in the brain of the pigeon Columba livia: an autoradiographic and immunohistochemical study.

作者信息

Hof P R, Dietl M M, Charnay Y, Martin J L, Bouras C, Palacios J M, Magistretti P J

机构信息

Fishberg Research Center for Neurobiology, Mount Sinai School of Medicine, New York, New York 10029.

出版信息

J Comp Neurol. 1991 Mar 15;305(3):393-411. doi: 10.1002/cne.903050304.

Abstract

The distribution of vasoactive intestinal peptide (VIP) binding sites in the pigeon brain was examined by in vitro autoradiography on slide-mounted sections. A fully characterized monoiodinated form of VIP, which maintains the biological activity of the native peptide, was used throughout this study. The highest densities of binding sites were observed in the hyperstriatum dorsale, archistriatum, auditory field L of neostriatum, area corticoidea dorsolateralis and temporo-parieto-occipitalis, area parahippocampalis, tectum opticum, nucleus dorsomedialis anterior thalami, and in the periventricular area of the hypothalamus. Lower densities of specific binding occurred in the neostriatum, hyperstriatum ventrale and nucleus septi lateralis, dorsolateral area of the thalamus, and lateral and posteromedial hypothalamus. Very low to background levels of VIP binding were detected in the ectostriatum, paleostriatum primitivum, paleostriatum augmentatum, lobus parolfactorius, nucleus accumbens, most of the brainstem, and the cerebellum. The distribution of VIP-containing fibers and terminals was examined by indirect immunofluorescence using a polyclonal antibody against porcine VIP. Fibers and terminals were observed in the area corticoidea dorsolateralis, area parahippocampalis, hippocampus, hyperstriatum accessorium, hyperstriatum dorsale, archistriatum, tuberculum olfactorium, nuclei dorsolateralis and dorsomedialis of the thalamus, and throughout the hypothalamus and the median eminence. Long projecting fibers were visualized in the tractus septohippocampalis. In the brainstem VIP immunoreactive fibers and terminals were observed mainly in the substantia grisea centralis, fasciculus longitudinalis medialis, lemniscus lateralis, and in the area surrounding the nuclei of the 7th, 9th, and 10th cranial nerves. The correlation between the distribution of VIP binding sites and immunoreactive fibers and terminals was assessed in a restricted number of regions. A qualitatively good matching was found in the area corticoidea dorsolateralis, hyperstriatum dorsale, hyperstriatum accessorium, nucleus septi lateralis, nuclei dorsomedialis and dorsolateralis thalami, and in some hypothalamic areas. A striking mismatch occurred in the hyperstriatum ventrale, neostriatum, tectum opticum (high to moderate density of binding sites but only few immunoreactive profiles), and in the tuberculum olfactorium, median eminence, and spinal cord (lower density of binding sites but abundant immunoreactive profiles). The paleostriatum, lobus parolfactorius, and ectostriatum were virtually devoid of both binding sites and immunoreactive profiles. The results are discussed in relation to the known actions of VIP in the rodent and avian brain and are compared with previous observations on the distribution of VIP binding sites in the central nervous system of other vertebrates.

摘要

通过对载玻片上的脑切片进行体外放射自显影,研究了血管活性肠肽(VIP)结合位点在鸽脑内的分布情况。在本研究中,全程使用了一种经过充分表征的单碘化形式的VIP,它保留了天然肽的生物活性。在背侧上纹状体、古纹状体、新纹状体听觉区L、背外侧皮质样区和颞顶枕区、海马旁区、视顶盖、丘脑前背内侧核以及下丘脑室周区观察到了最高密度的结合位点。在新纹状体、腹侧上纹状体和外侧隔核、丘脑背外侧区以及下丘脑外侧和后内侧,特异性结合密度较低。在外纹状体、原始苍白球、增大苍白球、嗅叶、伏隔核、大部分脑干和小脑中,检测到的VIP结合水平极低,接近背景水平。使用抗猪VIP的多克隆抗体,通过间接免疫荧光法研究了含VIP的纤维和终末的分布。在背外侧皮质样区、海马旁区、海马、副上纹状体、背侧上纹状体、古纹状体、嗅结节、丘脑背外侧核和背内侧核以及整个下丘脑和正中隆起中观察到了纤维和终末。在隔海马束中可见长投射纤维。在脑干中,VIP免疫反应性纤维和终末主要见于中央灰质、内侧纵束、外侧丘系以及第7、9和10对脑神经核周围区域。在数量有限的区域评估了VIP结合位点的分布与免疫反应性纤维和终末之间的相关性。在背外侧皮质样区、背侧上纹状体、副上纹状体、外侧隔核、丘脑背内侧核和背外侧核以及一些下丘脑区域发现定性上良好的匹配。在腹侧上纹状体、新纹状体、视顶盖(结合位点密度高至中等,但免疫反应性轮廓很少)以及嗅结节、正中隆起和脊髓(结合位点密度较低,但免疫反应性轮廓丰富)出现了明显的不匹配。苍白球、嗅叶和外纹状体实际上既没有结合位点也没有免疫反应性轮廓。结合啮齿动物和鸟类脑中VIP的已知作用对结果进行了讨论,并与先前关于其他脊椎动物中枢神经系统中VIP结合位点分布的观察结果进行了比较。

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