首页> 外文期刊>Journal of Pain Research >Peripheral drive in Aα/β-fiber neurons is altered in a rat model of osteoarthritis: changes in following frequency and recovery from inactivation
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Peripheral drive in Aα/β-fiber neurons is altered in a rat model of osteoarthritis: changes in following frequency and recovery from inactivation

机译:在大鼠骨关节炎的模型中,Aα/β纤维神经元的周围驱动改变:跟随频率的变化和失活的恢复

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Purpose: To determine conduction fidelity of Aα/β-fiber low threshold mechanoreceptors in a model of osteoarthritis (OA).Methods: Four weeks after cutting the anterior cruciate ligament and removing the medial meniscus to induce the model, in vivo intracellular recordings were made in ipsilateral L4 dorsal root ganglion neurons. L4 dorsal roots were stimulated to determine the refractory interval and the maximum following frequency of the evoked action potential (AP). Neurons exhibited two types of response to paired pulse stimulation. Results: One type of response was characterized by fractionation of the evoked AP into an initial nonmyelinated-spike and a later larger-amplitude somatic-spike at shorter interstimulus intervals. The other type of response was characterized by an all-or-none AP, where the second evoked AP failed altogether at shorter interstimulus intervals. In OA versus control animals, the refractory interval measured in paired pulse testing was less in all low threshold mechanoreceptors. With train stimulation, the maximum rising rate of the nonmyelinated-spike was greater in OA nonmuscle spindle low threshold mechanoreceptors, possibly due to changes in fast kinetics of currents. Maximum following frequency in Pacinian and muscle spindle neurons was greater in model animals compared to controls. Train stimulation also induced an inactivation and fractionation of the AP in neurons that showed fractionation of the AP in paired pulse testing. However, with train stimulation this fractionation followed a different time course, suggesting more than one type of inactivation.Conclusion: The data suggest that joint damage can lead to changes in the fidelity of AP conduction of large diameter sensory neurons, muscle spindle neurons in particular, arising from articular and nonarticular tissues in OA animals compared to controls. These changes might influence peripheral drive of spinal excitability and plasticity, thus contributing to OA sensory abnormalities, including OA pain.
机译:目的:确定骨关节炎(OA)模型中Aα/β-纤维低阈值机械感受器的传导保真方法:方法:切割前十字韧带并去除内侧半月板以诱导模型后四周,进行体内细胞内记录在同侧L4背根神经节神经元中刺激L4背根以确定不应期和诱发动作电位(AP)的最大跟随频率。神经元对配对脉冲刺激表现出两种类型的响应。结果:一种类型的反应的特征是将诱发的AP分为初始的非髓鞘峰和随后的较大幅度的体细胞峰,间隔时间较短。另一种类型的响应的特征是全无AP,其中第二个诱发的AP在较短的刺激间隔内全部失败。在OA与对照动物中,在所有低阈值机械感受器中,配对脉冲测试中测得的不应期均较小。在列车刺激下,OA非肌肉纺锤体低阈值机械感受器中非髓鞘峰的最大上升速率更大,这可能是由于电流快速动力学的变化所致。与对照组相比,模型动物中Pacinian和肌肉梭形神经元的最大追踪频率更高。训练刺激还引起神经元中AP的失活和分级,这在配对脉冲测试中显示了AP的分级。然而,在火车刺激下,这种分级分离遵循不同的时间过程,表明存在多种失活类型。结论:数据表明关节损伤可导致大直径感觉神经元,尤其是肌肉梭形神经元的AP传导保真度发生变化。与对照组相比,它是由​​OA动物的关节和非关节组织引起的。这些变化可能会影响脊髓兴奋性和可塑性的周围驱动,从而导致OA感觉异常,包括OA疼痛。

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