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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Dependence of regenerated sensory axons on continuous neurotrophin-3 delivery
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Dependence of regenerated sensory axons on continuous neurotrophin-3 delivery

机译:再生的感觉轴突对连续Neurotrophin-3传递的依赖性。

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摘要

Previous studies have shown that injured dorsal column sensory axons extend across a spinal cord lesion site if axons are guided by a gradient of neurotrophin-3 (NT-3) rostral to the lesion. Here we examined whether continuous NT-3 delivery is necessary to sustain regenerated axons in the injured spinal cord. Using tetracycline-regulated (tet-off) lentiviral gene delivery, NT-3 expression was tightly controlled by doxycycline administration. To examine axon growth responses to regulated NT-3 expression, adult rats underwent a C3 dorsal funiculus lesion. The lesion site was filled with bone marrow stromal cells, tet-off-NT-3 virus was injected rostral to the lesion site, and the intrinsic growth capacity of sensory neurons was activated by a conditioning lesion. When NT-3 gene expression was turned on, cholera toxin-subunit-labeled sensory axons regenerated into and beyond the lesion/graft site. Surprisingly, the number of regenerated axons significantly declined when NT-3 expression was turned off, whereas continued NT-3 expression sustained regenerated axons. Quantification of axon numbers beyond the lesion demonstrated a significant decline of axon growth in animals with transient NT-3 expression, only some axons that had regenerated over longer distance were sustained. Regenerated axons were located in white matter and did not form axodendritic synapses but expressed presynaptic markers when closely associated with NG2-labeled cells. A decline in axon density was also observed within cellular grafts after NT-3 expression was turned off possibly via reduction in L1 and laminin expression in Schwann cells. Thus, multiple mechanisms underlie the inability of transient NT-3 expression to fully sustain regenerated sensory axons.
机译:先前的研究表明,如果轴突受神经色蛋白3(NT-3)的峰状渐变引导,则受损的背柱感觉轴突会延伸穿过脊髓病变部位。在这里,我们检查了连续NT-3传递是否必要以维持受损脊髓中的再生轴突。使用四环素调节的(tet-off)慢病毒基因传递,通过强力霉素的给药可以严格控制NT-3的表达。为了检查轴突对调节的NT-3表达的生长反应,成年大鼠经历了C3背侧真菌病灶。病变部位充满骨髓基质细胞,将tet-off-NT-3病毒向病变部位注射,并通过条件性病变激活感觉神经元的内在生长能力。当NT-3基因表达打开时,霍乱毒素亚基标记的感觉轴突再生进入病变/移植部位,甚至超出病变/移植部位。令人惊讶地,当关闭NT-3表达时,再生轴突的数目显着减少,而继续的NT-3表达持续维持再生轴突。病灶以外的轴突数量的定量显示,在具有瞬时NT-3表达的动物中,轴突的生长显着下降,只有一些长距离再生的轴突得以维持。再生的轴突位于白质中,不形成轴突突触,但与NG2标记的细胞密切相关时表达突触前标记。 NT-3表达被关闭后,在细胞移植物中也可观察到轴突密度的下降,这可能是由于Schwann细胞中L1和层粘连蛋白表达的减少。因此,多种机制是瞬时NT-3表达不能完全维持再生的感觉轴突的基础。

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