Persson Stefan, Boulland Jean-Luc, Aspling Marie, Larsson Max, Fremeau Robert T, Edwards Robert H, Storm-Mathisen Jon, Chaudhry Farrukh A, Broman Jonas
Department of Experimental Medical Science, Division for Neuroscience, and Lund University Pain Research Center, Lund University, S-221 84 Lund, Sweden.
J Comp Neurol. 2006 Aug 10;497(5):683-701. doi: 10.1002/cne.20987.
To evaluate whether the organization of glutamatergic fibers systems in the lumbar cord is also evident at other spinal levels, we examined the immunocytochemical distribution of vesicle glutamate transporters 1 and 2 (VGLUT1, VGLUT2) at several different levels of the rat spinal cord. We also examined the expression of VGLUTs in an ascending sensory pathway, the spinocervical tract, and colocalization of VGLUT1 and VGLUT2. Mainly small VGLUT2-immunoreactive varicosities occurred at relatively high densities in most areas, with the highest density in laminae I-II. VGLUT1 immunolabeling, including small and medium-sized to large varicosities, was more differentiated, with the highest density in the deep dorsal horn and in certain nuclei such as the internal basilar nucleus, the central cervical nucleus, and the column of Clarke. Lamina I and IIo displayed a moderate density of small VGLUT1 varicosities at all spinal levels, although in the spinal enlargements a uniform density of such varicosities was evident throughout laminae I-II in the medial half of the dorsal horn. Corticospinal tract axons displayed VGLUT1, indicating that the corticospinal tract is an important source of small VGLUT1 varicosities. VGLUT1 and VGLUT2 were cocontained in small numbers of varicosities in laminae III-IV and IX. Anterogradely labeled spinocervical tract terminals in the lateral cervical nucleus were VGLUT2 immunoreactive. In conclusion, the principal distribution patterns of VGLUT1 and VGLUT2 are essentially similar throughout the rostrocaudal extension of the spinal cord. The mediolateral differences in VGLUT1 distribution in laminae I-II suggest dual origins of VGLUT1-immunoreactive varicosities in this region.
为了评估腰段脊髓中谷氨酸能纤维系统的组织在其他脊髓节段是否也很明显,我们检测了大鼠脊髓几个不同节段中囊泡谷氨酸转运体1和2(VGLUT1、VGLUT2)的免疫细胞化学分布。我们还检测了VGLUTs在一条上行感觉通路——脊髓颈髓束中的表达,以及VGLUT1和VGLUT2的共定位情况。大多数区域主要是小的VGLUT2免疫反应性曲张体以相对较高的密度出现,在I-II层密度最高。VGLUT1免疫标记,包括小、中到大型曲张体,更具差异性,在背角深部以及某些核团如基底内侧核、颈中央核和克拉克柱中密度最高。在所有脊髓节段,I层和IIo层显示小VGLUT1曲张体的密度适中,尽管在脊髓膨大处,背角内侧半区的I-II层整个区域这种曲张体的密度是均匀的。皮质脊髓束轴突显示VGLUT1,表明皮质脊髓束是小VGLUT1曲张体的重要来源。VGLUT1和VGLUT2共存在III-IV层和IX层的少量曲张体中。在外侧颈核中顺行标记的脊髓颈髓束终末是VGLUT2免疫反应性的。总之,VGLUT1和VGLUT2的主要分布模式在脊髓的头尾延伸中基本相似。I-II层中VGLUT1分布的内外侧差异表明该区域VGLUT1免疫反应性曲张体有双重来源。