Servicio de Neurocirugía, Hospital de León, León, Spain.
J Anat. 2010 Jul;217(1):1-15. doi: 10.1111/j.1469-7580.2010.01227.x. Epub 2010 Apr 26.
The normal intervertebral disc (IVD) is a poorly innervated organ supplied only by sensory (mainly nociceptive) and postganglionic sympathetic (vasomotor efferents) nerve fibers. Interestingly, upon degeneration, the IVD becomes densely innervated even in regions that in normal conditions lack innervation. This increased innervation has been associated with pain of IVD origin. The mechanisms responsible for nerve growth and hyperinnervation of pathological IVDs have not been fully elucidated. Among the molecules that are presumably involved in this process are some members of the family of neurotrophins (NTs), which are known to have both neurotrophic and neurotropic properties and regulate the density and distribution of nerve fibers in peripheral tissues. NTs and their receptors are expressed in healthy IVDs but much higher levels have been observed in pathological IVDs, thus suggesting a correlation between levels of expression of NTs and density of innervation in IVDs. In addition, NTs also play a role in inflammatory responses and pain transmission by increasing the expression of pain-related peptides and modulating synapses of nociceptive neurons at the spinal cord. This article reviews current knowledge about the innervation of IVDs, NTs and NT receptors, expression of NTs and their receptors in IVDs as well as in the sensory neurons innervating the IVDs, the proinflammatory role of NTs, NTs as nociception regulators, and the potential network of discogenic pain involving NTs.
正常的椎间盘(IVD)是一个神经支配不良的器官,仅由感觉(主要是伤害感受)和节后交感神经(血管运动传出纤维)纤维供应。有趣的是,在退化时,IVD 变得密集神经支配,即使在正常情况下缺乏神经支配的区域也是如此。这种增加的神经支配与源自 IVD 的疼痛有关。负责病理性 IVD 神经生长和过度神经支配的机制尚未完全阐明。在可能涉及这个过程的分子中,有一些神经营养因子(NTs)家族的成员,已知具有神经营养和神经营养特性,并调节周围组织中神经纤维的密度和分布。NTs 及其受体在健康的 IVD 中表达,但在病理性 IVD 中观察到更高的水平,因此表明 NTs 的表达水平与 IVD 中的神经支配密度之间存在相关性。此外,NTs 还通过增加与疼痛相关肽的表达并调节脊髓中伤害感受神经元的突触,在炎症反应和疼痛传递中发挥作用。本文综述了目前关于 IVD 神经支配、NTs 和 NT 受体、IVD 及其感觉神经元中 NTs 的表达、NTs 的促炎作用、NTs 作为伤害感受器调节剂以及涉及 NTs 的椎间盘源性疼痛的潜在网络的知识。