Neuronal plasticity in dorsal root ganglia following sciatic nerve injury

Burcu Delibaş, A. A. Elamin, Süleyman Kaplan
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Abstract

It is widely known that each tissue has unique mechanisms to respond to injury and maintain homeostasis effectively. Although peripheral nerves have limited regeneration capacity, they conduct a complicated regeneration process by orchestrating multiple cell complexes after injury. In addition to drawing attention to anterograde and retrograde transportation, the absence of a cell body in the damaged area also points to the significance of immune and glial cells in the environment. Cellular reorganization following injury in the dorsal root ganglion, which takes place in the cell bodies of sensory peripheral nerve fibers, has attracted much attention. Growing research has been focused on investigating the molecular and cellular interactions occurring in sensory neurons and glial cells within the dorsal root ganglia after injury. It is clearly becoming that the sensory neurons and glial cells in the dorsal root ganglion are derived from the same embryological origins. Therefore, this information attracts attention to the potential of these two cells to differentiate into each other in case of injury. The focus of these studies is to illuminate the genes and pathways responsible for an increase in the plasticity of the neurogenic cell line following nerve injury. This review explores and discusses the underlying mechanisms responsible for maintaining homeostasis in the dorsal root ganglion and regeneration of peripheral nerves and how neuronal plasticity functions in the regeneration of the injury.
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坐骨神经损伤后背根神经节的神经元可塑性
众所周知,每个组织都有独特的机制来应对损伤并有效维持平衡。虽然周围神经的再生能力有限,但它们在损伤后通过协调多种细胞复合体来进行复杂的再生过程。受损区域没有细胞体除了引起人们对前向和逆向运输的关注外,还说明了环境中免疫细胞和神经胶质细胞的重要性。背根神经节损伤后的细胞重组发生在感觉周围神经纤维的细胞体中,这引起了广泛关注。越来越多的研究集中于调查损伤后背根神经节内感觉神经元和神经胶质细胞发生的分子和细胞相互作用。研究清楚地表明,背根神经节中的感觉神经元和神经胶质细胞源自相同的胚胎起源。因此,这一信息引起了人们对这两种细胞在受伤时相互分化的潜力的关注。这些研究的重点是阐明神经损伤后导致神经源细胞系可塑性增强的基因和途径。这篇综述探讨和讨论了负责维持背根神经节平衡和周围神经再生的基本机制,以及神经元可塑性如何在损伤再生中发挥作用。
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