首页> 外文期刊>Brain research >Injury to retinal ganglion cell axons increases polysialylated neural cell adhesion molecule (PSA-NCAM) in the adult rodent superior colliculus.
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Injury to retinal ganglion cell axons increases polysialylated neural cell adhesion molecule (PSA-NCAM) in the adult rodent superior colliculus.

机译:视网膜神经节细胞轴突的损伤增加了成年啮齿动物上丘的多唾液酸化神经细胞粘附分子(PSA-NCAM)。

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摘要

The adult mammalian central nervous system (CNS) exhibits a limited regenerative response to injury. It is well established that polysialylated neural cell adhesion molecule (PSA-NCAM) contributes to nervous system plasticity. In the visual system, PSA-NCAM participates in retinal ganglion cell (RGC) axon growth during development and specifically influences RGC innervation of its principle target tissue, the superior colliculus (SC). The goals of this study were to determine whether PSA-NCAM is expressed in the normal adult mouse SC and to evaluate PSA-NCAM expression following RGC injury. In the normal rostral, but not caudal, SC we find that PSA-NCAM is present in the retinorecipient layers; however, PSA-NCAM and RGC axons do not co-localize. In the deeper collicular layers, PSA-NCAM is observed as several distinct patches that occur at the same depth along the medial-lateral axis throughout the colliculus. RGC axotomy denervates predominantly the contralateral colliculus, where increased PSA-NCAM levels are seen at 7 and 10 days after the injury. Further evaluation of the retinorecipient layers of the partially denervated SC reveals that some intact CTB-traced RGC axons (less than 5%) labeled from the ipsilateral eye do co-localize with PSA-NCAM. This study is the first characterization of PSA-NCAM expression in the normal and partially denervated adult SC and may indicate that PSA-NCAM is involved in attempted visual system remodeling after injury.
机译:成年哺乳动物中枢神经系统(CNS)对损伤的再生反应有限。众所周知,多唾液酸化的神经细胞粘附分子(PSA-NCAM)有助于神经系统的可塑性。在视觉系统中,PSA-NCAM在发育过程中参与视网膜神经节细胞(RGC)轴突的生长,并特别影响其主要靶组织上丘神经(SC)的RGC神经支配。这项研究的目的是确定PSA-NCAM是否在正常成年小鼠SC中表达,并评估RGC损伤后PSA-NCAM的表达。在正常的鼻端而不是尾端,我们发现PSA-NCAM存在于视网膜受体层中。但是,PSA-NCAM和RGC轴突并不共定位。在更深的胶体层中,PSA-NCAM被观察为沿整个胶体沿内外侧轴在相同深度处出现的几个不同的斑块。 RGC轴索切开术主要消除了对侧结肠的神经,在受伤后第7天和第10天,PSA-NCAM水平升高。对部分去神经的SC​​的视网膜受体层的进一步评估显示,从同侧眼标记的一些完整的CTB示踪的RGC轴突(少于5%)确实与PSA-NCAM共定位。这项研究是正常和部分失神经的成人SC中PSA-NCAM表达的第一个特征,可能表明PSA-NCAM参与了受伤后视觉系统的重塑。

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