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在大鼠脊髓和三叉神经节中,初级感觉神经元亚群显示神经肽和糖皮质激素受体共存。

Subpopulations of primary sensory neurons show coexistence of neuropeptides and glucocorticoid receptors in the rat spinal and trigeminal ganglia.

作者信息

DeLeón M, Coveñas R, Chadi G, Narváez J A, Fuxe K, Cintra A

机构信息

Department of Neuroscience, Karolinska Institute, Stockholm, Sweden.

出版信息

Brain Res. 1994 Feb 14;636(2):338-42. doi: 10.1016/0006-8993(94)91034-0.

Abstract

The coexistence of the neuropeptides substance P, calcitonin gene-related peptide, galanin, somatostatin and neuropeptide Y with glucocorticoid receptors was studied in neurons of the rat lumbar dorsal root and trigeminal ganglia by means of the double immunofluorescence technique. Based on analysis of microphotographs, about one-third of the populations of nerve cells (small and large) containing substance P or calcitonin gene-related peptide immunoreactivity (IR) showed nuclear glucocorticoid receptor IR. A similar pattern was observed within the dorsal root and trigeminal ganglia. Furthermore, within the lumbar dorsal root ganglia 50% of the small neurons, containing galanin IR, possessed nuclear glucocorticoid receptor IR of moderate intensity. Glucocorticoid receptor IR was not observed in the galanin immunoreactive neurons of the trigeminal ganglion neither in the somatostatin and NPY immunoreactive neurons of both the dorsal root and the trigeminal ganglia. The results provide a chemical anatomical basis for a direct regulation by glucocorticoids of distinct populations of substance P and calcitonin gene-related peptide immunoreactive nerve cells in the lumbar spinal and trigeminal ganglia and of galanin immunoreactive nerve cells of the spinal but not of the trigeminal ganglia.

摘要

采用双重免疫荧光技术,研究了大鼠腰段背根神经节和三叉神经节神经元中神经肽P物质、降钙素基因相关肽、甘丙肽、生长抑素和神经肽Y与糖皮质激素受体的共存情况。通过对显微照片的分析,约三分之一含有P物质或降钙素基因相关肽免疫反应性(IR)的神经细胞群体(大小神经元)显示出核糖皮质激素受体IR。在背根神经节和三叉神经节中观察到类似的模式。此外,在腰段背根神经节中,50%含有甘丙肽IR的小神经元具有中等强度的核糖皮质激素受体IR。在三叉神经节的甘丙肽免疫反应性神经元中,以及在背根神经节和三叉神经节的生长抑素和神经肽Y免疫反应性神经元中均未观察到糖皮质激素受体IR。这些结果为糖皮质激素直接调节腰段脊髓和三叉神经节中不同群体的P物质和降钙素基因相关肽免疫反应性神经细胞以及脊髓而非三叉神经节的甘丙肽免疫反应性神经细胞提供了化学解剖学基础。

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