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通过将腰段背根与背柱相连的周围神经移植物,使初级感觉轴突再生进入成年大鼠脊髓。

Regeneration of primary sensory axons into the adult rat spinal cord via a peripheral nerve graft bridging the lumbar dorsal roots to the dorsal column.

作者信息

Dam-Hieu Phong, Liu Song, Choudhri Tanvir, Said Gérard, Tadié Marc

机构信息

Laboratory of Experimental Neurosurgery, Centre Hospitalier Universitaire de Bicêtre, Faculté de Médecine Paris-Sud, Le Kremlin-Bicêtre, France.

出版信息

J Neurosci Res. 2002 May 1;68(3):293-304. doi: 10.1002/jnr.10179.

Abstract

This study investigated the feasibility of using a peripheral nerve autograft (NAG) to promote and guide regeneration of sensory axons from the caudal lumbar dorsal roots to the rostral dorsal column following a lower thoracic cordotomy in adult rats. After a left hemicordotomy at the T13 vertebra level and ipsilateral L3 and L4 rhizotomies, a peripheral NAG (peroneal nerve) was connected to the distal roots stumps, then implanted into the left dorsal column 10 mm rostral to hemicordotomy site (n = 12). After surgery, all animals of the experimental group experienced complete anesthesia in their left hindlimb. Three months later, a slight response to nociceptive stimulation reappeared in L3 and/or L4 dermatomes in 6 of the 12 experimental animals. None of these animals exhibited self-mutilation. Nine months after surgery, we performed retrograde tracing studies by injecting horseradish peroxidase (HRP) into the left dorsal column 30 mm rostral to the NAG implantation site. In eight animals, we found HRP-stained neurons in the left L3 and/or L4 dorsal root ganglia (DRG). The mean number of HRP-stained neurons per DRG was 71 +/- 92 (range 2-259). In control groups, no HRP-stained neurons were found in L3 or L4 DRG. Histological analysis of the NAG showed evidence of axonal regeneration in all 8 animals with positive retrograde labeling of DRG neurons. However, we did not find a statistical correlation between the number of HRP-stained neurons and the degree of sensory recovery. This study demonstrates that an NAG joining dorsal roots to the dorsal column, thus shunting the original CNS-PNS junction, can support regeneration of central axons from DRG primary sensory neurons into the dorsal column over distances of at least 30 mm despite the inhibitory influence of the CNS white matter.

摘要

本研究调查了在成年大鼠下胸段脊髓横断术后,使用周围神经自体移植(NAG)促进和引导感觉轴突从腰尾侧背根向头侧背柱再生的可行性。在T13椎体水平进行左侧半脊髓横断术及同侧L3和L4神经根切断术后,将一条周围神经自体移植物(腓总神经)连接至远端神经根残端,然后植入到半脊髓横断部位头侧10 mm处的左侧背柱(n = 12)。术后,实验组所有动物的左后肢均出现完全麻醉。三个月后,12只实验动物中有6只在L3和/或L4皮节对伤害性刺激重新出现轻微反应。这些动物均未出现自残行为。术后九个月,我们通过将辣根过氧化物酶(HRP)注入到神经自体移植部位头侧30 mm处的左侧背柱进行逆行示踪研究。在8只动物中,我们在左侧L3和/或L4背根神经节(DRG)中发现了HRP染色的神经元。每个背根神经节中HRP染色神经元的平均数为71±92(范围为2 - 259)。在对照组中,L3或L4背根神经节中未发现HRP染色的神经元。对神经自体移植物的组织学分析显示,在所有8只背根神经节神经元逆行标记呈阳性的动物中均有轴突再生的证据。然而,我们未发现HRP染色神经元的数量与感觉恢复程度之间存在统计学相关性。本研究表明,将背根与背柱连接的神经自体移植物,从而绕过了原始的中枢神经系统 - 周围神经系统连接点,尽管受到中枢神经系统白质的抑制性影响,但仍能支持背根神经节初级感觉神经元的中枢轴突向背柱至少30 mm距离的再生。

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