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完全脊髓横断后大鼠尾侧脊髓残端的5-羟色胺能神经支配:嗅鞘胶质细胞的作用

Serotonergic innervation of the caudal spinal stump in rats after complete spinal transection: effect of olfactory ensheathing glia.

作者信息

Takeoka Aya, Kubasak Marc D, Zhong Hui, Roy Roland R, Phelps Patricia E

机构信息

Department of Physiological Science, University of California-Los Angeles, Los Angeles, CA 90095-1606, USA.

出版信息

J Comp Neurol. 2009 Aug 20;515(6):664-76. doi: 10.1002/cne.22080.

Abstract

Spinal cord injury studies use the presence of serotonin (5-HT)-immunoreactive axons caudal to the injury site as evidence of axonal regeneration. As olfactory ensheathing glia (OEG) transplantation improves hindlimb locomotion in adult rats with complete spinal cord transection, we hypothesized that more 5-HT-positive axons would be found in the caudal stump of OEG- than media-injected rats. Previously we found 5-HT-immunolabeled axons that spanned the transection site only in OEG-injected rats but detected labeled axons just caudal to the lesion in both media- and OEG-injected rats. Now we report that many 5-HT-labeled axons are present throughout the caudal stump of both media- and OEG-injected rats. We found occasional 5-HT-positive interneurons that are one likely source of 5-HT-labeled axons. These results imply that the presence of 5-HT-labeled fibers in the caudal stump is not a reliable indicator of regeneration. We then asked if 5-HT-positive axons appose cholinergic neurons associated with motor functions: central canal cluster and partition cells (active during fictive locomotion) and somatic motor neurons (SMNs). We found more 5-HT-positive varicosities in lamina X adjacent to central canal cluster cells in lumbar and sacral segments of OEG- than media-injected rats. SMNs and partition cells are less frequently apposed. As nonsynaptic release of 5-HT is common in the spinal cord, an increase in 5-HT-positive varicosities along motor-associated cholinergic neurons may contribute to the locomotor improvement observed in OEG-injected spinal rats. Furthermore, serotonin located within the caudal stump may activate lumbosacral locomotor networks.

摘要

脊髓损伤研究将损伤部位尾侧存在5-羟色胺(5-HT)免疫反应性轴突作为轴突再生的证据。由于嗅鞘胶质细胞(OEG)移植可改善成年完全性脊髓横断大鼠的后肢运动,我们推测,与注射介质的大鼠相比,在接受OEG注射的大鼠尾侧残端会发现更多5-HT阳性轴突。此前我们发现,仅在接受OEG注射的大鼠中,5-HT免疫标记的轴突跨越了横断部位,但在注射介质和OEG的大鼠中均在损伤部位尾侧检测到了标记轴突。现在我们报告,在注射介质和OEG的大鼠尾侧残端均存在许多5-HT标记的轴突。我们偶尔发现5-HT阳性中间神经元,它们可能是5-HT标记轴突的一个来源。这些结果表明,尾侧残端中5-HT标记纤维并非再生的可靠指标。然后我们探究5-HT阳性轴突是否与运动功能相关的胆碱能神经元相邻:中央管簇和分隔细胞(在虚拟运动期间活跃)以及躯体运动神经元(SMN)。我们发现,与注射介质的大鼠相比,在接受OEG注射的大鼠腰段和骶段中央管簇细胞相邻的X层中,5-HT阳性曲张体更多。SMN和分隔细胞与之相邻的情况较少。由于5-HT在脊髓中非突触释放很常见,运动相关胆碱能神经元周围5-HT阳性曲张体的增加可能有助于在接受OEG注射的脊髓损伤大鼠中观察到的运动改善。此外,尾侧残端内的5-羟色胺可能激活腰骶部运动网络。

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