Hukkanen Mika, Platts Louise A M, Corbett Steven A, Santavirta Seppo, Polak Julia M, Konttinen Yrjö T
Institute of Biomedicine/Anatomy, Biomedicum Helsinki, PO Box 63, Haartmaninkatu 8, FIN-00014 University of Helsinki, Helsinki, Finland.
Neurosci Res. 2002 Apr;42(4):251-60. doi: 10.1016/s0168-0102(02)00003-2.
Age-related changes in the expression of the growth associated protein GAP-43/B-50, and the neuropeptides substance P and calcitonin gene-related peptide (CGRP) were investigated in the sensory neurones of rat dorsal root ganglia, dorsal horns of the spinal cord and subintimal knee synovium. The two time-points studied were 2 months (young adults) and 14-month (aged)-old Sprague Dawley rats. Dorsal root ganglia: In young adults, 40 and 35% of the L4-L5 dorsal root ganglion neurones were positive for GAP-43/B-50 with a 1.5 fold increase in frequency in aged rats at the L5 ganglion. GAP-43/B-50 was strongly expressed by the non-neuronal satellite cells of some medium and many large sized neurones in aged rats. There were marked reciprocal shifts between small and medium sized sensory neurones in respect to their substance P and CGRP expression profiles. Dorsal horn of the spinal cord: there was a 1.3 fold decrease of substance P at L5 level and a 1.3 and 1.5 fold decrease of CGRP at L4-L5 levels in aged rats, respectively. Synovial membrane: There was a 2.3 fold increase in GAP-43/B-50 and a 2.5 fold decrease of CGRP with no changes in substance P expression. These results indicate that (i) primary sensory neurones undergo age-related changes already in early stages of aging, (ii) aging may result in a reduction of substance P and CGRP axonal transport, and (iii) reduced numbers of CGRP containing synovial perivascular fibres may imply a deficient regulation of the synovial microvasculature and therefore metabolic homeostasis of the joint in aged subjects.
研究了大鼠背根神经节、脊髓背角和膝滑膜内膜下感觉神经元中生长相关蛋白GAP-43/B-50以及神经肽P物质和降钙素基因相关肽(CGRP)表达的年龄相关变化。研究的两个时间点分别为2个月(年轻成年)和14个月(老年)的斯普拉格-道利大鼠。背根神经节:在年轻成年大鼠中,40%和35%的L4-L5背根神经节神经元GAP-43/B-50呈阳性,在老年大鼠的L5神经节中频率增加1.5倍。在老年大鼠中,一些中等大小和许多大尺寸神经元的非神经元卫星细胞强烈表达GAP-43/B-50。在小和中等大小的感觉神经元之间,其P物质和CGRP表达谱存在明显的相互变化。脊髓背角:老年大鼠L5水平的P物质减少1.3倍,L4-L5水平的CGRP分别减少1.3倍和1.5倍。滑膜:GAP-43/B-50增加2.3倍,CGRP减少2.5倍,P物质表达无变化。这些结果表明:(i)初级感觉神经元在衰老早期就经历了与年龄相关的变化;(ii)衰老可能导致P物质和CGRP轴突运输减少;(iii)含CGRP的滑膜血管周围纤维数量减少可能意味着老年受试者滑膜微血管调节不足,进而关节代谢稳态受损。