Sławińska U, Majczyński H, Djavadian R
Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw.
Exp Brain Res. 2000 May;132(1):27-38. doi: 10.1007/s002219900323.
In this study, a piece of embryonic tissue from the raphe nucleus was transplanted into the spinal cord below the lesion 1 month after transection. Two months later the recovery of hindlimb motor function in rats which had received a transplant of neural tissue (ST rats) was much better than in spinal control animals without the graft (SC rats). Analysis of the electromyographic (EMG) activity showed that the timing of muscle activity during locomotor-like movement of hindlimbs in ST rats was more regular than in SC rats. In SC rats the relationships between EMG burst duration (soleus, tibialis anterior) and step cycle duration were significantly altered. The restoration of hindlimb motor function of ST rats was also reflected in the better interlimb coordination during locomotor-like hindlimb movements. The results of several behavioural tests demonstrated that the responses to stimulation of various receptors, such as tactile or proprioceptive, in ST rats were more complex than in SC rats. Additionally, unlike in SC animals, in ST rats long-lasting spontaneous episodes of air stepping movement of hindlimbs accompanied by a relatively high amplitude of EMG activity were obtained. These results confirm that grafted embryonic raphe nuclei which contain serotoninergic cells are likely to increase the excitability of neuronal circuitry in the injured spinal cord. Moreover, transplantation of embryonic raphe nuclei encourages the recovery of hindlimb motor function in adult rats even when the grafting is carried out several weeks after spinal cord injury.
在本研究中,在横断后1个月,将一块来自中缝核的胚胎组织移植到损伤部位下方的脊髓中。两个月后,接受神经组织移植的大鼠(ST大鼠)后肢运动功能的恢复情况比未接受移植的脊髓对照动物(SC大鼠)要好得多。肌电图(EMG)活动分析表明,ST大鼠后肢类似运动的运动过程中肌肉活动的时间比SC大鼠更规律。在SC大鼠中,EMG爆发持续时间(比目鱼肌、胫骨前肌)与步周期持续时间之间的关系发生了显著改变。ST大鼠后肢运动功能的恢复还体现在类似运动的后肢运动过程中更好的肢体间协调性上。多项行为测试结果表明,ST大鼠对各种感受器刺激(如触觉或本体感觉)的反应比SC大鼠更复杂。此外,与SC动物不同的是,在ST大鼠中观察到了后肢长时间的自发空中踏步运动,伴有相对较高幅度的EMG活动。这些结果证实,含有5-羟色胺能细胞的移植胚胎中缝核可能会增加受损脊髓中神经回路的兴奋性。此外,即使在脊髓损伤数周后进行移植,胚胎中缝核的移植也能促进成年大鼠后肢运动功能的恢复。