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实验性中枢敏化对时效和幅度的镇痛消退的差异影响。

Differential effects of experimental central sensitization on the time-course and magnitude of offset analgesia.

机构信息

Department of Neurobiology and Anatomy, Wake Forest School of Medicine, Winston-Salem, NC, USA.

出版信息

Pain. 2012 Feb;153(2):463-472. doi: 10.1016/j.pain.2011.11.010. Epub 2011 Dec 6.

Abstract

Pain perception is temporally altered during states of chronic pain and acute central sensitization; however, the mechanisms contributing to temporal processing of nociceptive information remain poorly understood. Offset analgesia is a phenomenon that reflects the presence of temporal contrast mechanisms for nociceptive information and can provide an end point to study temporal aspects of pain processing. In order to investigate whether offset analgesia is disrupted during sensitized states, 23 healthy volunteers provided real-time continuous visual analogue scale responses to noxious heat stimuli that evoke offset analgesia. Responses to these stimuli were evaluated during capsaicin-heat sensitization (45°C stimulus, capsaicin cream 0.1%) and heat-only sensitization (40°C stimulus, placebo cream). Capsaicin-heat sensitization produced significantly larger regions of secondary mechanical allodynia compared to heat-only sensitization. Although areas of mechanical allodynia were positively related to individual differences in heat pain sensitivity, this relationship was altered at later time points after capsaicin-heat sensitization. Heat hyperalgesia was observed in the secondary region following both capsaicin-heat and heat-only sensitization. Increased latencies to maximal offset analgesia and prolonged aftersensations were observed only in the primary regions directly treated by capsaicin-heat or heat alone. However, contrary to the hypothesis that offset analgesia would be reduced following capsaicin-heat sensitization, the magnitude of offset analgesia remained remarkably intact after both capsaicin-heat and heat-only sensitization in zones of both primary and secondary mechanical allodynia. These data indicate that offset analgesia is a robust phenomenon and engages mechanisms that interact minimally with those supporting acute central sensitization.

摘要

疼痛感知在慢性疼痛和急性中枢敏化状态下会发生时间变化;然而,导致伤害性信息时间处理的机制仍知之甚少。偏移镇痛是一种反映伤害性信息存在时间对比机制的现象,可以作为研究疼痛处理时间方面的终点。为了研究在敏化状态下偏移镇痛是否会受到干扰,23 名健康志愿者对引起偏移镇痛的有害热刺激提供实时连续视觉模拟量表反应。在辣椒素-热敏化(45°C 刺激,辣椒素乳膏 0.1%)和热敏化(40°C 刺激,安慰剂乳膏)期间评估对这些刺激的反应。与热敏化相比,辣椒素-热敏化产生的继发性机械性痛觉过敏区域明显更大。尽管机械性痛觉过敏区域与热痛觉敏感性的个体差异呈正相关,但这种关系在辣椒素-热敏化后更晚的时间点发生了变化。在辣椒素-热和热敏化后,在次级区域都观察到热痛觉过敏。仅在直接用辣椒素-热或热处理的原发性区域观察到最大偏移镇痛潜伏期增加和后感觉延长。然而,与辣椒素-热敏化后偏移镇痛会减少的假设相反,在原发性和继发性机械性痛觉过敏区域,无论是在辣椒素-热敏化还是热敏化后,偏移镇痛的幅度都保持明显完整。这些数据表明,偏移镇痛是一种强大的现象,它涉及与支持急性中枢敏化的机制最小相互作用的机制。

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