首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Reimplantation of avulsed lumbosacral ventral roots in the rat ameliorates injury-induced degeneration of primary afferent axon collaterals in the spinal dorsal columns.
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Reimplantation of avulsed lumbosacral ventral roots in the rat ameliorates injury-induced degeneration of primary afferent axon collaterals in the spinal dorsal columns.

机译:大鼠离体腰s腹根的再植可减轻损伤引起的脊髓背柱初级传入轴突侧支的退化。

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摘要

Injuries to the cauda equina/conus medullaris portion of the spinal cord can result in motor, sensory, and autonomic dysfunction, and neuropathic pain. In rats, unilateral avulsion of the motor efferents from the lumbosacral spinal cord results in at-level allodynia, along with a corresponding glial and inflammatory response in the dorsal horn of the spinal cord segments immediately rostral to the lesion. Here, we investigated the fate of intramedullary primary sensory projections following a motor efferent lesion. The lumbosacral (L6 and S1) ventral roots were unilaterally avulsed from the rat spinal cord (VRA; n=9). A second experimental group had the avulsed roots acutely reimplanted into the lateral funiculus (Imp; n=5), as this neural repair strategy is neuroprotective, and promotes the functional reinnervation of peripheral targets. A laminectomy-only group served as controls (Lam; n=7). At 8 weeks post-lesion, immunohistochemical examination showed a 42% reduction (P<0.001) in the number of RT97-positive axons in the ascending tracts of the dorsal funiculus of the L4-5 spinal segment in VRA rats. Evidence for degenerating myelin was also present. Reimplantation of the avulsed roots ameliorated axon and myelin degeneration. Axons in the descending dorsal corticospinal tract were unaffected in all groups, suggesting a specificity of this lesion for spinal primary sensory afferents. These results show for the first time that a lesion restricted to motor roots can induce the degeneration of intramedullary sensory afferents. Importantly, reimplantation of the lesioned motor roots ameliorated sensory axon degeneration. These data further support the therapeutic potential for reimplantation of avulsed ventral roots following trauma to the cauda equina/conus medullaris.
机译:脊髓的马尾/圆锥形延髓部分受伤会导致运动,感觉和自主神经功能障碍,以及神经性疼痛。在大鼠中,腰s部脊髓的单向运动性撕脱会导致全水平的异常性疼痛,并在脊髓节段的背角处出现相应的神经胶质和炎性反应,而这些神经胶质和炎性反应正好位于病变部位的鼻侧。在这里,我们调查了运动传出病变后髓内主要感觉投射的命运。腰s(L6和S1)腹侧根从大鼠脊髓单侧撕脱(VRA; n = 9)。第二个实验组将撕脱的根急性移植到外侧真菌中(Imp; n = 5),因为这种神经修复策略具有神经保护作用,并促进周围靶标的功能性神经支配。仅接受椎板切除术的组作为对照(Lam; n = 7)。病变后8周,免疫组织化学检查显示VRA大鼠L4-5脊髓节段背侧上突中RT97阳性轴突的数量减少了42%(P <0.001)。还存在使髓磷脂变性的证据。撕脱的根的再植入改善了轴突和髓鞘变性。在所有组中,背侧皮质脊髓下降道的轴突均未受影响,表明该病变对脊柱初级感觉传入神经的特异性。这些结果首次表明,局限于运动根的病变可引起髓内感觉传入神经变性。重要的是,病变运动根的再植入改善了感觉轴突变性。这些数据进一步支持了马尾/延髓圆锥创伤后撕脱的腹侧根再植的治疗潜力。

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