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短时间重复振动对逆行轴突运输、降腰椎背根神经节中 CGRP 和 parvalbumin 表达的影响。

The impact of short-lasting repeated vibrations on retrograde axonal transport, the expression of CGRP and parvalbumin in lower lumbar dorsal root ganglia.

机构信息

Institute of Neurobiology, Slovak Academy of Sciences, Kosice, Slovak Republic.

出版信息

Brain Res. 2011 Jun 17;1396:1-10. doi: 10.1016/j.brainres.2011.04.023. Epub 2011 Apr 19.

Abstract

A prolonged exposure to vibration stimuli triggers pathological changes with many later manifested symptoms. Early vibration-induced changes are still not very well explored. Therefore, short 30 min vibration period per day with frequency 60 Hz repeated for 10 days was used, and the retrograde axonal transport from the sciatic nerve, the expression of calcitonin gene-related peptide (CGRP) and parvalbumin (PV) were studied in the dorsal root ganglia (DRGs) corresponding to lower lumbar spinal levels. Repeated vibration markedly decreased (25 and 34%) the accumulation of retrogradely transported Fluorogold to spinal motor neurons, whereas a significant increase (35 and 25%) was seen in the DRG primary sensory neurons corresponding to the L4 and L5 spinal level. Immunohistochemical studies showed a significant reduction of CGRP-positive small-sized neuronal cells in both DRGs. Fluoro-Jade labeling revealed that marked loss of CGRP-imunoreactive DRG sensory neurons is not due to neuronal degeneration. CGRP protein expression determined by Western blot analysis and optical density measurement, and NGF level measured by ELISA have been decreased, markedly only at the L4 DRG. PV protein expression was not affected by short repeated vibrations. Our results indicate that (a) short-lasting repeated vibrations affect the retrograde axonal transport in the DRG sensory neurons differently than in spinal motor neurons; (b) a decreased NGF-dependent CGRP production in the DRG primary sensory neurons plays an important role in early vibration-induced pathological mechanisms.

摘要

长期暴露于振动刺激会引发多种病理变化,这些变化会在后期表现出多种症状。早期的振动诱导变化还不是很清楚。因此,我们使用了每天 30 分钟、频率为 60 Hz 的短振动周期,重复 10 天,研究了坐骨神经逆行轴突运输、降钙素基因相关肽(CGRP)和钙调蛋白(PV)在相应的 L4 和 L5 脊髓水平的背根神经节(DRG)中的表达。重复振动显著降低了荧光金逆行运输到脊髓运动神经元的积累(减少了 25%和 34%),而 L4 和 L5 脊髓水平相应的初级感觉神经元的积累显著增加(增加了 35%和 25%)。免疫组织化学研究显示,两个 DRG 中 CGRP 阳性小神经元细胞的数量显著减少。氟金胺标记显示,CGRP 免疫反应性 DRG 感觉神经元的明显丢失不是由于神经元变性。通过 Western blot 分析和光密度测量确定的 CGRP 蛋白表达以及通过 ELISA 测量的 NGF 水平均显著降低,仅在 L4 DRG 中降低。PV 蛋白表达不受短期重复振动的影响。我们的研究结果表明:(a)短期重复振动对 DRG 感觉神经元的逆行轴突运输的影响与对脊髓运动神经元的影响不同;(b)DRG 初级感觉神经元中 NGF 依赖性 CGRP 产生减少在早期振动诱导的病理机制中起着重要作用。

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