Lazzari Maurizio, Franceschini Valeria
Department of Biology, University of Bologna, 40126 Bologna, Italy.
J Morphol. 2005 Sep;265(3):325-34. doi: 10.1002/jmor.10358.
We analyzed the distribution of intermediate filament molecular markers, glial fibrillary acidic protein (GFAP), and vimentin in the brain and spinal cord of the adult brown anole lizard, Anolis sagrei. The GFAP immunoreactivity is strong and the positive structures are basically represented by fibers of different lengths and thicknesses which are arranged in a regular radial pattern throughout the central nervous system. In the brain regions that have a thicker neural wall, the radial orientation is not so evident as in the thinner areas. These fibers emerge from radial ependymoglia (tanycytes) whose cell bodies are generally GFAP-immunopositive. The glial fibers give rise to endfeet that are apposed to the subpial surface and to blood vessel walls. In the spinal cord, the optic tectum and the lateroventral regions of the mesencephalon and medulla oblongata, star-shaped astrocytes coexist with radial structures. Vimentin-immunoreactive structures are absent in the brain and spinal cord. In A. sagrei the immunohistochemical response of the astroglial intermediate filaments appears typical of a mature astroglial cell lineage, since they fundamentally express GFAP immunoreactivity. A Western-blot analysis reveals a GFAP-positive single band, common to the different nervous areas. This immunohistochemical study shows that the star-shaped astrocytes have a different distribution in saurians and while the glial pattern of A. sagrei is more evolved than in urodeles it remains immature as compared with crocodilians, avians, and mammals. This condition suggests that reptiles represent a fundamental step in the phylogenetic evolution of the vertebrate glial cells.
我们分析了成年棕色安乐蜥(安乐蜥)大脑和脊髓中中间丝分子标记物胶质纤维酸性蛋白(GFAP)和波形蛋白的分布。GFAP免疫反应性很强,阳性结构基本上由不同长度和粗细的纤维代表,这些纤维在整个中枢神经系统中呈规则的放射状排列。在神经壁较厚的脑区,放射状排列不如较薄区域明显。这些纤维起源于放射状室管膜胶质细胞(伸长细胞),其细胞体通常为GFAP免疫阳性。胶质纤维形成终足,与软膜表面和血管壁相邻。在脊髓、视顶盖以及中脑和延髓的外侧腹侧区域,星形胶质细胞与放射状结构共存。大脑和脊髓中不存在波形蛋白免疫反应性结构。在安乐蜥中,星形胶质细胞中间丝的免疫组织化学反应表现出成熟星形胶质细胞谱系的典型特征,因为它们主要表达GFAP免疫反应性。蛋白质免疫印迹分析显示不同神经区域均有一条GFAP阳性单带。这项免疫组织化学研究表明,星形胶质细胞在蜥蜴类中的分布不同,虽然安乐蜥的胶质模式比有尾目动物更进化,但与鳄类、鸟类和哺乳动物相比仍不成熟。这种情况表明,爬行动物代表了脊椎动物胶质细胞系统发育进化中的一个基本阶段。