Hoffman J R, O'Shea K S
Department of Anatomy, The University of Michigan, Ann Arbor, USA.
Brain Res Bull. 1999 Mar 1;48(4):421-7. doi: 10.1016/s0361-9230(99)00022-2.
Expression of the extracellular matrix molecule thrombospondin (TSP) was examined following retrobulbar crush injury of the goldfish and mouse optic nerve. TSP was present within the glia limitans and surrounding axon fascicles of the control normal goldfish optic nerve, but was absent from the normal mouse optic nerve. Following crush injury of the goldfish optic nerve, TSP expression increased dramatically along the path of regenerating axons and returned to near normal levels following axonal outgrowth. In contrast, during the unsuccessful attempt at regeneration following crush injury of the mouse optic nerve, TSP expression was present only in glial fibrillary acidic protein (GFAP)-negative, macrophage-rich regions distal to ganglion cell axons. These results indicate that TSP expression is increased in a temporal pattern along the path of regenerating goldfish optic nerve axons and therefore may be involved in successful central nervous system regeneration. The absence of TSP in the environment encountered by damaged mouse optic nerve axons may correlate with the lack of regeneration observed in the mouse optic nerve.
在金鱼和小鼠视神经球后挤压损伤后,检测了细胞外基质分子血小板反应蛋白(TSP)的表达。TSP存在于对照正常金鱼视神经的神经胶质界膜和周围轴突束中,但正常小鼠视神经中不存在。金鱼视神经挤压损伤后,TSP表达沿再生轴突路径显著增加,并在轴突生长后恢复到接近正常水平。相比之下,在小鼠视神经挤压损伤后再生尝试失败期间,TSP表达仅存在于神经节细胞轴突远端的胶质纤维酸性蛋白(GFAP)阴性、富含巨噬细胞的区域。这些结果表明,TSP表达沿再生金鱼视神经轴突路径呈时间性增加,因此可能参与中枢神经系统的成功再生。受损小鼠视神经轴突所处环境中缺乏TSP可能与小鼠视神经中观察到的再生缺乏有关。