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首页> 外文期刊>Restorative neurology and neuroscience >FGF1 containing biodegradable device with peripheral nerve grafts induces corticospinal tract regeneration and motor evoked potentials after spinal cord resection
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FGF1 containing biodegradable device with peripheral nerve grafts induces corticospinal tract regeneration and motor evoked potentials after spinal cord resection

机译:含有FGF1的可生物降解装置和周围神经移植物可在脊髓切除后诱导皮质脊髓束再生和运动诱发电位

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摘要

Purpose: Repairing the spinal cord with peripheral nerve grafts (PNG) and adjuvant acidic fibroblast growth factor (FGF1) has previously resulted in partial functional recovery. To aid microsurgical placement of PNGs, a graft holder device was previously developed by our group. In hope for a translational development we now investigate a new biodegradable graft holder device containing PNGs with or without FGF1. Methods: Rats were subjected to a T11 spinal cord resection with subsequent repair using twelve white-to-grey matter oriented PNGs prepositioned in a biodegradable device with or without slow release of FGF1. Animals were evaluated with BBB-score, electrophysiology and immunohistochemistry including anterograde BDA tracing. Results: Motor evoked potentials (MEP) in the lower limb reappeared at 20 weeks after grafting. MEP responses were further improved in the group treated with adjuvant FGF1. Reappearance of MEPs was paralleled by NF-positive fibers and anterogradely traced corticospinal fibers distal to the injury. BBB-scores improved in repaired animals. Conclusions: The results continue to support that the combination of PNGs and FGF1 may be a regeneration strategy to reinnervate the caudal spinal cord. The new device induced robust MEPs augmented by FGF1, and may be considered for translational research.
机译:目的:用周围神经移植物(PNG)和辅助酸性成纤维细胞生长因子(FGF1)修复脊髓以前已导致部分功能恢复。为了帮助PNG的显微外科手术放置,我们小组先前开发了一种移植物固定器装置。为了实现翻译开发的希望,我们现在研究一种新型的可生物降解的移植物支架设备,其中包含带有或不带有FGF1的PNG。方法:对大鼠进行T11脊髓切除术,然后使用预先放置在可生物降解的装置中的十二种灰白取向的PNG进行修复,无论是否缓慢释放FGF1。用BBB评分,电生理学和免疫组织化学(包括顺行BDA追踪)对动物进行评估。结果:移植后20周,下肢的运动诱发电位(MEP)重新出现。在用FGF1佐剂治疗的组中,MEP反应得到了进一步改善。 MEP的再出现与损伤远端的NF阳性纤维和顺行性皮质脊髓纤维平行。修复动物的血脑屏障分数得到改善。结论:研究结果继续支持PNG和FGF1的组合可能是一种重新激活尾脊髓的再生策略。该新设备诱导了由FGF1增强的健壮的MEP,并且可以考虑用于翻译研究。

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