Deumens R, Koopmans G C, Honig W M M, Maquet V, Jérôme R, Steinbusch H W M, Joosten E A J
Department of Psychiatry and Neuropsychology, Division Neuroscience, European Graduate School of Neuroscience (EURON), University of Maastricht, Maastricht, The Netherlands.
J Neurosci Res. 2006 Apr;83(5):811-20. doi: 10.1002/jnr.20768.
Transplantation of mixed cultures containing olfactory ensheathing cell (OEC) and olfactory nerve fibroblasts (ONF) has been shown to stimulate regrowth of both acutely and chronically injured corticospinal (CS) axons across small spinal cord lesion gaps. Here, we used a multifactorial transplantation strategy to stimulate regrowth of chronically injured CS axons across large spinal cord lesion gaps. This strategy combined the transplantation of aligned OEC/ONF-biomatrix complexes, as described previously (Deumens et al. [2004] Neuroscience 125:591-604), within the lesion gap with additional OEC/ONF injections rostral and caudal to the lesion site. We show an enhanced presence of injured CS axons directly rostral to the lesion gap, with no effects on injured CS axons at or caudal to the lesion gap. Furthermore, injured CS axons did not penetrate the OEC/ONF-biomatrix complex within the lesion gap. The enhanced presence of CS axons rostral to the lesion gap was not accompanied by any recovery of behavioral parameters assessed with the BBB locomotor rating scale or CatWalk gait analysis. We conclude that our multifactorial transplantation strategy should be optimized to create an OEC/ONF continuum in the injured spinal cord and thereby stimulate regrowth of injured CS axons across large spinal lesion gaps.
含有嗅鞘细胞(OEC)和嗅神经成纤维细胞(ONF)的混合培养物移植已被证明可刺激急性和慢性损伤的皮质脊髓(CS)轴突在小的脊髓损伤间隙处再生。在此,我们采用多因素移植策略来刺激慢性损伤的CS轴突在大的脊髓损伤间隙处再生。该策略将如前所述(Deumens等人,[2004]《神经科学》125:591 - 604)的排列好的OEC/ONF - 生物基质复合物移植到损伤间隙内,并在损伤部位的头端和尾端额外注射OEC/ONF。我们发现损伤间隙头端直接存在更多的损伤CS轴突,而对损伤间隙处及尾端的损伤CS轴突没有影响。此外,损伤的CS轴突未穿透损伤间隙内的OEC/ONF - 生物基质复合物。损伤间隙头端CS轴突数量的增加并未伴随通过BBB运动评分量表或CatWalk步态分析评估的行为参数的任何恢复。我们得出结论,应优化我们的多因素移植策略,以在损伤脊髓中创建一个OEC/ONF连续体,从而刺激损伤的CS轴突在大的脊髓损伤间隙处再生。