Bryan D J, Wang K K, Chakalis-Haley D P
Department of Plastic Surgery, Lahey Hitchcock Medical Center, Burlington, Massachusetts 01805, USA.
J Reconstr Microsurg. 1996 Oct;12(7):439-6. doi: 10.1055/s-2007-1006616.
Schwann cells appear to stimulate the early phases of axon regeneration. The reported study investigated whether nerve guides with Schwann-cell monolayers can help regenerating nerves span gaps larger than 1 cm. Schwann-cell cultures were established by resecting 1-cm segments of sciatic nerves of adult female Sprague-Dawley rats, establishing cell monolayers in 24-mm nerve guides, and then reinserting these "living guides" into 20-mm nerve gaps of the rats from which they were developed. Control groups had plain guides (no Schwann cells) inserted between the same 20-mm gaps. In the experimental group, resected nerves regrew progressively. At 8 weeks, regrowth had spanned the entire gap in 60 percent of the animals. Axon counts increased at each successive time point. Regeneration did begin to occur in the control group but by 8 weeks, those cables had atrophied. The experimental groups displayed more central connections and higher nerve conduction velocity. Explant organ cultures of rat sciatic nerve can be used to develop nonneural conduits with Schwann-cell monolayers. These living artificial nerve guides permit the spanning of gaps of at least 20 mm.
雪旺细胞似乎能刺激轴突再生的早期阶段。该报道的研究调查了带有雪旺细胞单层的神经导管是否有助于再生神经跨越超过1厘米的间隙。通过切除成年雌性斯普拉格-道利大鼠坐骨神经的1厘米节段,在24毫米的神经导管中建立细胞单层,然后将这些“活导管”重新插入其来源大鼠的20毫米神经间隙中,从而建立雪旺细胞培养物。对照组在相同的20毫米间隙之间插入普通导管(无雪旺细胞)。在实验组中,切除的神经逐渐再生。在8周时,60%的动物的再生神经跨越了整个间隙。在每个连续的时间点,轴突数量都有所增加。对照组确实开始出现再生,但到8周时,那些神经索已经萎缩。实验组显示出更多的中央连接和更高的神经传导速度。大鼠坐骨神经的外植体器官培养可用于开发带有雪旺细胞单层的非神经导管。这些活的人工神经导管能够跨越至少20毫米的间隙。