首页> 外文期刊>The European Journal of Neuroscience >Deafferentation and neurotrophin-mediated intraspinal sprouting: a central role for the p75 neurotrophin receptor.
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Deafferentation and neurotrophin-mediated intraspinal sprouting: a central role for the p75 neurotrophin receptor.

机译:脱除咖啡因和神经营养蛋白介导的脊柱内发芽:p75神经营养蛋白受体的核心作用。

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Axonal plasticity in the adult spinal cord is governed by intrinsic neuronal growth potential and by extracellular cues. The p75 receptor (p75(NTR)) binds growth-promoting neurotrophins (NTs) as well as the common receptor for growth-inhibiting myelin-derived proteins (the Nogo receptor) and so is well situated to gauge the balance of positive and negative influences on axonal plasticity. Using transgenic mice lacking the extracellular NT-binding domain of p75(NTR) (p75-/- mice), we have examined the influence of p75(NTR) on changes in the density of primary afferent (calcitonin gene-related peptide-expressing) and descending monoaminergic (serotonin- and tyrosine hydroxylase-expressing) projections to the dorsal horn after dorsal rhizotomy, with and without concomitant application of exogenous nerve growth factor and NT-3. We found that, in intact p75-/- mice, the axon density of all populations was equal to or less than that in wild-type mice but that rhizotomy-induced intraspinal sprouting was significantly augmented. Monoaminergic axon sprouting was enhanced in both nerve growth factor- and NT-3-treated p75-/- mice compared with similarly treated wild-type mice. Primary afferent sprouting was particularly robust in NT-3-treated p75-/- mice. These in vivo results illustrate the interactions of p75(NTR) with NTs, with their respective tropomyosin-related kinase receptors and with inhibitory myelin-derived molecules. Our findings illustrate the pivotal role of p75(NTR) in spinal axonal plasticity and identify it as a potential therapeutic target for spinal cord injury.
机译:成年脊髓中的轴突可塑性受内在神经元生长潜能和细胞外信号的支配。 p75受体(p75(NTR))结合促进生长的神经营养蛋白(NTs)以及抑制生长的髓磷脂衍生蛋白的通用受体(Nogo受体),因此可以很好地确定正负影响的平衡在轴突可塑性上。使用缺少p75(NTR)胞外NT结合域的转基因小鼠(p75-/-小鼠),我们检查了p75(NTR)对原发传入密度变化的影响(降钙素基因相关肽表达)背侧切开术后,在有或没有同时应用外源性神经生长因子和NT-3的情况下,向背角下降单胺能(表达5-羟色胺和酪氨酸羟化酶)。我们发现,在完整的p75-/-小鼠中,所有种群的轴突密度均等于或小于野生型小鼠的轴突密度,但根茎切开术引起的脊柱内发芽显着增加。与类似处理的野生型小鼠相比,经神经生长因子处理的小鼠和经NT-3处理的p75-/-小鼠均增强了单胺能轴突的萌发。在NT-3处理的p75-/-小鼠中,初级传入发芽尤其牢固。这些体内结果说明了p75(NTR)与NT,与其各自原肌球蛋白相关的激酶受体以及与抑制性髓磷脂衍生的分子的相互作用。我们的发现说明了p75(NTR)在脊髓轴突可塑性中的关键作用,并将其确定为脊髓损伤的潜在治疗靶标。

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