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震颤小鼠髓鞘缺陷神经中神经营养因子表达的独特模式:施万细胞提供营养支持的意义。

A distinct pattern of trophic factor expression in myelin-deficient nerves of Trembler mice: implications for trophic support by Schwann cells.

作者信息

Friedman H C, Jelsma T N, Bray G M, Aguayo A J

机构信息

Centre for Research in Neuroscience, Montréal General Hospital Research Institute, Québec, Canada.

出版信息

J Neurosci. 1996 Sep 1;16(17):5344-50. doi: 10.1523/JNEUROSCI.16-17-05344.1996.

Abstract

Distal to a peripheral nerve transection, myelin degradation and Schwann cell (SC) proliferation are accompanied by a marked upregulation of brain-derived neurotrophic factor (BDNF) and a decrease of ciliary neurotrophic factor (CNTF) in non-neuronal cells. To investigate the role of SC differentiation in trophic factor regulation, we studied BDNF and CNTF expression in sciatic nerves from Trembler-J (Tr-J) mice. In these animals, a mutation in the pmp-22 gene causes a failure of myelination and continuous SC proliferation, but axonal continuity is preserved. In spite of the severe abnormalities in Tr-J nerves, BDNF levels remained as low as in the intact controls. Thus, the primary SC disorder in Tr-J produces a different pattern of BDNF expression from that caused by axonal breakdown due to nerve transection. Furthermore, the upregulation of BDNF mRNA triggered by transection was 70-fold in control nerves, but only 30-fold in Tr-J sciatic nerves. Because these results raised the possibility that axonal loss may influence neurotrophin expression only in SCs that have differentiated toward a myelinating phenotype, we measured BDNF mRNA after axotomy in the cervical sympathetic trunk (CST), a predominantly unmyelinated autonomic nerve. In contrast to the sciatic nerves, the BDNF mRNA level barely increased in the injured CST, supporting the idea that not all SCs are equal sources of trophic molecules. In Tr-J sciatic nerves, CNTF mRNA levels were fourfold lower than normal, implying that the downregulation of this cytokine is a sensitive indicator of a spectrum of SC perturbations that affect myelinating cells.

摘要

在周围神经横断的远侧端,髓磷脂降解和施万细胞(SC)增殖伴随着脑源性神经营养因子(BDNF)在非神经元细胞中的显著上调以及睫状神经营养因子(CNTF)的减少。为了研究SC分化在营养因子调节中的作用,我们研究了震颤-J(Tr-J)小鼠坐骨神经中BDNF和CNTF的表达。在这些动物中,pmp-22基因的突变导致髓鞘形成失败和SC持续增殖,但轴突连续性得以保留。尽管Tr-J神经存在严重异常,但BDNF水平仍与完整对照组一样低。因此,Tr-J中的原发性SC疾病产生的BDNF表达模式与神经横断导致的轴突断裂所引起的模式不同。此外,横断引发的BDNF mRNA上调在对照神经中为70倍,但在Tr-J坐骨神经中仅为30倍。由于这些结果增加了轴突损失可能仅在已分化为髓鞘形成表型的SC中影响神经营养素表达的可能性,我们在颈交感干(CST)(一种主要无髓鞘的自主神经)切断轴突后测量了BDNF mRNA。与坐骨神经相反,受损CST中的BDNF mRNA水平几乎没有增加,这支持了并非所有SC都是营养分子同等来源的观点。在Tr-J坐骨神经中,CNTF mRNA水平比正常水平低四倍,这意味着这种细胞因子的下调是影响髓鞘形成细胞的一系列SC扰动的敏感指标。

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High ciliary neuronotrophic specific activity in rat peripheral nerve.
Int J Dev Neurosci. 1984;2(2):177-80. doi: 10.1016/0736-5748(84)90009-1.
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Schwann cell development, differentiation and myelination.施万细胞的发育、分化和髓鞘形成。
Curr Opin Neurobiol. 1996 Feb;6(1):89-96. doi: 10.1016/s0959-4388(96)80013-4.
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Reciprocal Schwann cell-axon interactions.
Curr Opin Neurobiol. 1993 Oct;3(5):683-93. doi: 10.1016/0959-4388(93)90139-p.

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