首页> 外文期刊>Experimental Brain Research >Increased BrdU incorporation reflecting DNA repair, neuronal de-differentiation or possible neurogenesis in the adult cochlear nucleus following bilateral cochlear lesions in the rat.
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Increased BrdU incorporation reflecting DNA repair, neuronal de-differentiation or possible neurogenesis in the adult cochlear nucleus following bilateral cochlear lesions in the rat.

机译:BrdU掺入增加,反映了大鼠双侧耳蜗损伤后成年耳蜗核中的DNA修复,神经元去分化或可能的神经发生。

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摘要

Neurogenesis is known to occur in response to injury in the brain, for example, as a result of neurodegenerative diseases. However, there have been few investigations into how the brain responds to damage to peripheral sensory nerves, in other areas such as the brainstem. Here, we report that bilateral surgical lesions of the cochlea result in increased incorporation of the DNA replication marker, bromodeoxyuridine (BrdU), in cells of the brainstem cochlear nucleus (CN) of the adult rat, suggesting either cell proliferation or DNA repair. Some of the BrdU-labelled cells colabelled for the mature neuron marker, NeuN and the GABAergic enzyme GAD-65, suggesting the possibility that neurogenesis might have occurred and resulted in the generation of new neurons with a GABAergic phenotype. However, some of the mature neurons also re-expressed immature neuronal intermediate filament and microtuble-associated proteins, without apoptotic neuronal death, which suggests that the colabelling of BrdU with NeuN and GAD-65 may not be a true reflection of neurogenesis, but injury-stimulated neuronal dedifferentiation. These results suggest the possibility that DNA repair, neuronal de-differentiation or possible neurogenesis occurs in the cochlear nucleus, in response to damage to the peripheral auditory system.
机译:已知神经发生例如由于神经退行性疾病而响应于脑部损伤而发生。但是,在诸如脑干之类的其他区域,很少有研究探讨大脑如何对周围感觉神经的损伤做出反应。在这里,我们报告说,成年大鼠的脑干耳蜗核(CN)细胞中耳蜗的双侧外科手术损伤导致DNA复制标记溴脱氧尿苷(BrdU)掺入的增加,提示细胞增殖或DNA修复。一些BrdU标记的细胞共同标记了成熟的神经元标记物NeuN和GABA能酶GAD-65,提示可能发生神经发生并导致产生具有GABA能表型的新神经元。但是,一些成熟的神经元也重新表达了未成熟的神经元中间丝和微管相关蛋白,而没有凋亡神经元死亡,这表明BrdU与NeuN和GAD-65的共标记可能不是神经发生的真实反映,而是损伤刺激的神经元去分化。这些结果表明,在对周围听觉系统的损害中,DNA修复,神经元去分化或可能的神经发生发生在耳蜗核中的可能性。

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