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Peripheral Nerve Regeneration Is Independent From Schwann Cell p75NTR Expression

机译:周围神经再生独立于雪旺细胞p75NTR表达

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摘要

Schwann cell reprogramming and differentiation are crucial prerequisites for neuronal regeneration and re-myelination to occur following injury to peripheral nerves. The neurotrophin receptor p75NTR has been identified as a positive modulator for Schwann cell myelination during development and implicated in promoting nerve regeneration after injury. However, most studies base this conclusion on results obtained from complete p75NTR knockout mouse models and cannot dissect the specific role of p75NTR expressed by Schwann cells. In this present study, a conditional knockout model selectively deleting p75NTR expression in Schwann cells was generated, where p75NTR expression is replaced with that of an mCherry reporter. Silencing of Schwann cell p75NTR expression was confirmed in the sciatic nerve in vivo and in vitro, without altering axonal expression of p75NTR. No difference in sciatic nerve myelination during development or following sciatic nerve crush injury was observed, as determined by quantification of both myelinated and unmyelinated nerve fiber densities, myelinated axonal diameter and myelin thickness. However, the absence of Schwann cell p75NTR reduced motor nerve conduction velocity after crush injury. Our data indicate that the absence of Schwann cell p75NTR expression in vivo is not critical for axonal regrowth or remyelination following sciatic nerve crush injury, but does play a key role in functional recovery. Overall, this represents the first step in redefining the role of p75NTR in the peripheral nervous system, suggesting that the Schwann cell-axon unit functions as a syncytium, with the previous published involvement of p75NTR in remyelination most likely depending on axonal/neuronal p75NTR and/or mutual glial-axonal interactions.
机译:雪旺氏细胞重编程和分化是神经元再生和周围神经损伤后发生髓鞘再生的关键先决条件。神经营养蛋白受体p75 NTR 已被确定为雪旺氏细胞在发育过程中髓鞘形成的正调节剂,并与促进损伤后神经再生有关。但是,大多数研究都基于从完整的p75 NTR 基因敲除小鼠模型获得的结果,并且不能剖析Schwann细胞表达的p75 NTR 的特定作用。在本研究中,产生了选择性删除雪旺氏细胞中p75 NTR 表达的条件敲除模型,其中p75 NTR 表达被mCherry报告基因取代。在体内和体外,坐骨神经中都证实了雪旺氏细胞p75 NTR 表达的沉默,而没有改变p75 NTR 的轴突表达。通过对髓鞘和非髓鞘神经纤维密度,髓鞘轴突直径和髓鞘厚度的定量测定,未观察到发育过程中或坐骨神经挤压伤后坐骨神经髓鞘化的差异。然而,不存在雪旺细胞p75 NTR 会降低挤压伤后运动神经的传导速度。我们的数据表明,体内不存在雪旺细胞p75 NTR 表达对于坐骨神经挤压伤后的轴突再生或髓鞘再生并不重要,但在功能恢复中起着关键作用。总体而言,这代表着重新定义p75 NTR 在周围神经系统中的作用的第一步,这表明雪旺氏细胞轴突单位起着合胞体的作用,而先前发表的涉及p75 NTR 的髓鞘再生最可能取决于轴突/神经元p75 NTR 和/或相互胶质-轴突相互作用。

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