The assessment of neuronal plasticity following sciatic nerve injuries in rats using electron microscopy and stereological methods

IF 2.7 4区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of chemical neuroanatomy Pub Date : 2024-02-06 DOI:10.1016/j.jchemneu.2024.102396
Burcu Delibaş , John-Mary Vianney , Süleyman Kaplan
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Abstract

The transmission of signals to the cell body from injured axons induces significant alterations in primary sensory neurons located in the ganglion tissue, the site of the perikaryon of the affected nerve fibers. Disruption of the continuity between the proximal and distal ends leads to substantial adaptability in ganglion cells and induces macrophage-like activity in the satellite cells. Research findings have demonstrated the plasticity of satellite cells following injury. Satellite cells work together with sensory neurons to extend the interconnected surface area in order to permit effective communication. The dynamic cellular environment within the ganglion undergoes several alterations that ultimately lead to differentiation, transformation, or cell death. In addition to necrotic and apoptotic cell morphology, phenomena such as histomorphometric alterations, including the development of autophagic vacuoles, chromatolysis, cytosolic degeneration, and other changes, are frequently observed in cells following injury. The use of electron microscopic and stereological techniques for assessing ganglia and nerve fibers is considered a gold standard in terms of investigating neuropathic pain models, regenerative therapies, some treatment methods, and quantifying the outcomes of pharmacological and bioengineering interventions. Stereological techniques provide observer-independent and reliable results, which are particularly useful in the quantitative assessment of three-dimensional structures from two-dimensional images. Employing the fractionator and disector techniques within stereological methodologies yields unbiased data when assessing parameters such as number. The fundamental concept underlying these methodologies involves ensuring that each part of the structure under evaluation has an equal opportunity of being sampled. This review describes the stereological and histomorphometric evaluation of dorsal root ganglion neurons and satellite cells following nerve injury models.

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利用电子显微镜和立体学方法评估大鼠坐骨神经损伤后神经元的可塑性。
受伤轴突向细胞体传递信号时,会诱发位于神经节组织中的初级感觉神经元发生显著变化,神经节组织是受影响神经纤维的周基部位。近端和远端之间的连续性被破坏,导致神经节细胞发生巨大的适应性变化,并诱导卫星细胞产生类似巨噬细胞的活性。研究结果表明,卫星细胞在受伤后具有可塑性。卫星细胞与感觉神经元共同工作,扩大相互连接的表面积,以便进行有效的交流。神经节内的动态细胞环境会发生多种变化,最终导致分化、转化或细胞死亡。除了坏死和凋亡的细胞形态外,损伤后的细胞还经常出现组织形态改变等现象,包括出现自噬空泡、染色体溶解、细胞变性和其他变化。使用电子显微镜和立体学技术评估神经节和神经纤维被认为是研究神经病理性疼痛模型、再生疗法、某些治疗方法以及量化药物和生物工程干预结果的黄金标准。立体学技术可提供独立于观察者的可靠结果,尤其适用于从二维图像中对三维结构进行定量评估。在评估数量等参数时,在立体学方法中采用分型器和分型器技术可获得无偏见的数据。这些方法的基本概念是确保被评估结构的每个部分都有平等的取样机会。本综述介绍了神经损伤模型后背根神经节神经元和卫星细胞的立体学和组织形态学评估。
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来源期刊
Journal of chemical neuroanatomy
Journal of chemical neuroanatomy 医学-神经科学
CiteScore
4.50
自引率
3.60%
发文量
87
审稿时长
62 days
期刊介绍: The Journal of Chemical Neuroanatomy publishes scientific reports relating the functional and biochemical aspects of the nervous system with its microanatomical organization. The scope of the journal concentrates on reports which combine microanatomical, biochemical, pharmacological and behavioural approaches. Papers should offer original data correlating the morphology of the nervous system (the brain and spinal cord in particular) with its biochemistry. The Journal of Chemical Neuroanatomy is particularly interested in publishing important studies performed with up-to-date methodology utilizing sensitive chemical microassays, hybridoma technology, immunocytochemistry, in situ hybridization and receptor radioautography, to name a few examples. The Journal of Chemical Neuroanatomy is the natural vehicle for integrated studies utilizing these approaches. The articles will be selected by the editorial board and invited reviewers on the basis of their excellence and potential contribution to this field of neurosciences. Both in vivo and in vitro integrated studies in chemical neuroanatomy are appropriate subjects of interest to the journal. These studies should relate only to vertebrate species with particular emphasis on the mammalian and primate nervous systems.
期刊最新文献
Brain Mechanisms - An evolving perspective on the future of neuroscience. Editorial Board Retraction notice to “Astrocyte response to melatonin treatment in rats under high-carbohydrate high-fat diet” [J. Chem. Neuroanat. 136 (2024) 102389] Retraction notice to “Coenzyme Q10 attenuates neurodegeneration in the cerebellum induced by chronic exposure to tramadol” [J. Chem. Neuroanat. 135 (2024) 102367] Retraction notice to “Maternal diabetes-induced alterations in the expression of brain-derived neurotrophic factor in the developing rat hippocampus” [J. Chem. Neuroanat. 114(2021) 101946]
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