Department of Experimental Pain Research, Mannheim Centre for Translational Neuroscience (MCTN), Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.
Pain. 2023 Jul 1;164(7):1524-1536. doi: 10.1097/j.pain.0000000000002849. Epub 2023 Mar 24.
Low-frequency sinusoidal current applied to human skin evokes local axon reflex flare and burning pain, indicative of C-fibre activation. Because topical cooling works well as a local analgesic, we examined the effect of cooling on human pain ratings to sinusoidal and rectangular profiles of constant current stimulation. Unexpectedly, pain ratings increased upon cooling the skin from 32 to 18°C. To explore this paradoxical observation, the effects of cooling on C-fibre responses to stimulation with sinusoidal and rectangular current profiles were determined in ex vivo segments of mouse sural and pig saphenous nerve. As expected by thermodynamics, the absolute value of electrical charge required to activate C-fibre axons increased with cooling from 32°C to 20°C, irrespective of the stimulus profile used. However, for sinusoidal stimulus profiles, cooling enabled a more effective integration of low-intensity currents over tens of milliseconds resulting in a delayed initiation of action potentials. Our findings indicate that the paradoxical cooling-induced enhancement of electrically evoked pain in people can be explained by an enhancement of C-fibre responsiveness to slow depolarization at lower temperatures. This property may contribute to symptoms of enhanced cold sensitivity, especially cold allodynia, associated with many forms of neuropathic pain.
低频正弦电流作用于人体皮肤会引起局部轴突反射性红斑和灼痛,表明 C 纤维被激活。由于局部冷却作为一种局部镇痛剂效果良好,我们研究了冷却对正弦和矩形恒定电流刺激的人体疼痛评分的影响。出乎意料的是,皮肤从 32°C 冷却到 18°C 时,疼痛评分增加。为了探究这一矛盾的观察结果,我们在离体的小鼠腓肠神经和猪隐静脉段中确定了冷却对 C 纤维对正弦和矩形电流刺激的反应的影响。按照热力学的预期,无论使用何种刺激模式,激活 C 纤维轴突所需的电荷量绝对值随冷却从 32°C 增加到 20°C 而增加。然而,对于正弦刺激模式,冷却使在数十毫秒内对低强度电流的更有效整合,导致动作电位的延迟启动。我们的研究结果表明,人们对电诱发疼痛的矛盾性冷却诱导增强可以通过 C 纤维对低温下缓慢去极化的反应性增强来解释。这种特性可能与许多形式的神经性疼痛相关的增强的冷敏感性,特别是冷触诱发痛有关。