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Novel theory about radiosurgery’s action mechanisms on trigeminal ganglion for idiopathic trigeminal neuralgia: Role of the satellite glial cells

机译:关于发作性三叉神经痛的三叉治神经节的放射外科作用机制的新理论:卫星胶质细胞的作用

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Background: There are many theories about the cause of trigeminal neuralgia (TN). None of them satisfactorily explains how demyelination alone through the ephaptic mechanism can contribute to the development of the TN crisis. The main characteristic of TN pain is its dynamic nature, which is difficult to explain based only on anatomical findings. With these antecedents, the exact mechanism by which radiosurgery produces pain relief in TN is unknown. Methods: It is based on the trigeminal ganglion (TG) cytoarchitecture and the pathophysiological findings observed after an injury to a trigeminal branch. TG seems to have a predominant role given its cellular structure. The neuronal component in sensory ganglia is generally surrounded by a single layer of satellite glial cells (SGC), which forms a sheath around each body cell. There is increasing evidence that SGCs play a key role in nociception. This depends on their ability to influence the neuronal excitability that occurs in conditions of neuropathic and inflammatory pain; contributing to both the generation and maintenance of pain. Results: We have already published the beneficial effects of radiosurgery on the TG for the treatment of idiopathic TN and secondary to vertebrobasilar ectasia. Now, we are investigating the functioning of the TG and how radiosurgery could act on the SGC, deactivating them, and contributing to the decrease or disappearance of the painful condition. Conclusion: We are postulating a theory on how radiosurgery in TG produces changes in the SGC, with implications in the pathological mechanisms initiated by the alteration caused in the neuron after a nerve injury.
机译:背景:有关三叉神经痛(TN)的原因有很多理论。它们都不令人满意地解释了如何通过悔改的机制单独脱髓,可以有助于TN危机的发展。 TN疼痛的主要特征是其动态性质,这难以仅基于解剖结果来解释。利用这些前书,放射外科在TN中产生疼痛缓解的确切机制是未知的。方法:它基于三叉神经节(TG)细胞建筑,并在对三叉分支造成伤害后观察到的病理物理学发现。鉴于其蜂窝结构,TG似乎具有主要作用。感觉神经节中的神经元成分通常由单层卫星胶质电池(SGC)包围,其在每个体单元周围形成鞘。有越来越多的证据表明,SGCS在伤害中发挥着关键作用。这取决于它们影响神经病和炎症疼痛条件下发生的神经元兴奋的能力;为疼痛的产生和维护做出贡献。结果:我们已经公布了放射外科对椎体疗法的特性TN和继发性的TG的有益效果。现在,我们正在调查TG的运作以及放射外科如何对SGC作用,取消激活它们,并导致痛苦条件的减少或消失。结论:我们正在提出关于TG的放射外科如何产生SGC的变化的理论,具有在神经损伤后神经元在神经元发生的改变引起的病理机制的影响。

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