Decavel C, Dubourg P, Leon-Henri B, Geffard M, Calas A
Laboratoire de Physiologie des Interactions Cellulaires, UA CNRS 339, Université de Bordeaux I, Talence, France.
Cell Tissue Res. 1989 Jan;255(1):77-80. doi: 10.1007/BF00229068.
The GABAergic innervation of vasopressin-containing cells in the magnocellular part of the paraventricular nucleus was studied at the electron-microscope level using antibodies against GABA and vasopressin. The detection of both GABA and vasopressin on the same ultrathin section, performed with a double-labeling immunogold method, revealed GABAergic terminals in symmetrical synaptic contact with vasopressin-containing neurons. These GABAergic terminals displayed mitochondria, clear synaptic vesicles and varying numbers of electron-dense vesicles. Vasopressin-immunoreactivity was associated with neurosecretory granules, whereas GABA-immunoreactivity was found above mitochondria, clear synaptic vesicles and some electron-dense vesicles. This study, demonstrating the extensive participation of GABA in the innervation of magnocellular vasopressin-secreting neurons, suggests that this inhibitory neurotransmitter regulates vasopressin secretion at the level of the paraventricular nucleus.
利用抗γ-氨基丁酸(GABA)和抗血管加压素的抗体,在电子显微镜水平研究了室旁核大细胞部含血管加压素细胞的GABA能神经支配。采用双标记免疫金法在同一超薄切片上检测GABA和血管加压素,结果显示GABA能终末与含血管加压素的神经元形成对称突触联系。这些GABA能终末含有线粒体、清亮突触小泡以及数量不等的电子致密小泡。血管加压素免疫反应性与神经分泌颗粒相关,而GABA免疫反应性则见于线粒体、清亮突触小泡及一些电子致密小泡之上。本研究表明GABA广泛参与大细胞性血管加压素分泌神经元的神经支配,提示这种抑制性神经递质在室旁核水平调节血管加压素的分泌。