Dickie Allen C, McCormick Barry, Lukito Veny, Wilson Kirsten L, Torsney Carole
Centre for Integrative Physiology, Edinburgh Medical School: Biomedical Sciences, The University of Edinburgh, Edinburgh EH8 9XD, United Kingdom.
Centre for Integrative Physiology, Edinburgh Medical School: Biomedical Sciences, The University of Edinburgh, Edinburgh EH8 9XD, United Kingdom
J Neurosci. 2017 Jul 5;37(27):6488-6502. doi: 10.1523/JNEUROSCI.3816-16.2017. Epub 2017 Jun 2.
C fibers display activity-dependent slowing (ADS), whereby repetitive stimulation (≥1 Hz) results in a progressive slowing of action potential conduction velocity, which manifests as a progressive increase in response latency. However, the impact of ADS on spinal pain processing has not been explored, nor whether ADS is altered in inflammatory pain conditions. To investigate, compound action potentials were made, from dorsal roots isolated from rats with or without complete Freund's adjuvant (CFA) hindpaw inflammation, in response to electrical stimulus trains. CFA inflammation significantly reduced C fiber ADS at 1 and 2 Hz stimulation rates. Whole-cell patch-clamp recordings in the spinal cord slice preparation with attached dorsal roots also demonstrated that CFA inflammation reduced ADS in the monosynaptic C fiber input to lamina I neurokinin 1 receptor-expressing neurons (1-10 Hz stimulus trains) without altering the incidence of synaptic response failures. When analyzed by sex, it was revealed that females display a more pronounced ADS that is reduced by CFA inflammation to a level comparable with males. Cumulative ventral root potentials evoked by long and short dorsal root stimulation lengths, to maximize and minimize the impact of ADS, respectively, demonstrated that reducing ADS facilitates spinal summation, and this was also sex dependent. This finding correlated with the behavioral observation of increased noxious thermal thresholds and enhanced inflammatory thermal hypersensitivity in females. We propose that sex/inflammation-dependent regulation of C fiber ADS can, by controlling the temporal relay of nociceptive inputs, influence the spinal summation of nociceptive signals contributing to sex/inflammation-dependent differences in pain sensitivity. The intensity of a noxious stimulus is encoded by the frequency of action potentials relayed by nociceptive C fibers to the spinal cord. C fibers conduct successive action potentials at progressively slower speeds, but the impact of this activity-dependent slowing (ADS) is unknown. Here we demonstrate that ADS is more prevalent in females than males and is reduced in an inflammatory pain model in females only. We also demonstrate a progressive delay of C fiber monosynaptic transmission to the spinal cord that is similarly sex and inflammation dependent. Experimentally manipulating ADS strongly influences spinal summation consistent with sex differences in behavioral pain thresholds. This suggests that ADS provides a peripheral mechanism that can regulate spinal nociceptive processing and pain sensation.
C纤维表现出活动依赖性减慢(ADS),即重复刺激(≥1Hz)会导致动作电位传导速度逐渐减慢,这表现为反应潜伏期逐渐增加。然而,ADS对脊髓疼痛处理的影响尚未得到探索,ADS在炎症性疼痛状态下是否改变也未可知。为了进行研究,从患有或未患有完全弗氏佐剂(CFA)后爪炎症的大鼠分离出的背根制作复合动作电位,以响应电刺激序列。CFA炎症在1Hz和2Hz刺激频率下显著降低了C纤维ADS。在带有附着背根的脊髓切片制备中进行的全细胞膜片钳记录也表明,CFA炎症降低了向表达I层神经激肽1受体的神经元的单突触C纤维输入中的ADS(1 - 10Hz刺激序列),而不改变突触反应失败的发生率。按性别分析时发现,雌性表现出更明显的ADS,CFA炎症将其降低到与雄性相当的水平。分别通过长和短背根刺激长度诱发的累积腹根电位,以分别最大化和最小化ADS的影响,结果表明降低ADS促进脊髓总和,并且这也是性别依赖性的。这一发现与雌性有害热阈值增加和炎症性热超敏增强的行为观察结果相关。我们提出,C纤维ADS的性别/炎症依赖性调节可以通过控制伤害性输入的时间传递,影响对疼痛敏感性的性别/炎症依赖性差异有贡献的伤害性信号的脊髓总和。有害刺激的强度由伤害性C纤维传递到脊髓的动作电位频率编码。C纤维以逐渐减慢的速度传导连续的动作电位,但这种活动依赖性减慢(ADS)的影响尚不清楚。在这里,我们证明ADS在雌性中比雄性更普遍,并且仅在雌性的炎症性疼痛模型中降低。我们还证明了C纤维向脊髓的单突触传递存在逐渐延迟,这同样是性别和炎症依赖性的。实验性地操纵ADS强烈影响脊髓总和,这与行为疼痛阈值中的性别差异一致。这表明ADS提供了一种可以调节脊髓伤害性处理和痛觉的外周机制。