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经皮电神经刺激高频和低频均可激活腹外侧导水管周围灰质,从而减轻关节炎大鼠的机械性痛觉过敏。

Transcutaneous electrical nerve stimulation at both high and low frequencies activates ventrolateral periaqueductal grey to decrease mechanical hyperalgesia in arthritic rats.

机构信息

Department of Physical Therapy, Federal University of Sergipe, Cidade Universitária Professor José Aloísio de Campos. Av. Marechal Rondon s/n, Jardim Rosa Else, São Cristóvão/Sergipe, Brazil.

出版信息

Neuroscience. 2009 Nov 10;163(4):1233-41. doi: 10.1016/j.neuroscience.2009.06.056. Epub 2009 Jul 2.

Abstract

Transcutaneous electric nerve stimulation (TENS) is widely used for the treatment of pain. TENS produces an opioid-mediated antinociception that utilizes the rostroventromedial medulla (RVM). Similarly, antinociception evoked from the periaqueductal grey (PAG) is opioid-mediated and includes a relay in the RVM. Therefore, we investigated whether the ventrolateral or dorsolateral PAG mediates antinociception produced by TENS in rats. Paw and knee joint mechanical withdrawal thresholds were assessed before and after knee joint inflammation (3% kaolin/carrageenan), and after TENS stimulation (active or sham). Cobalt chloride (CoCl(2); 5 mM) or vehicle was microinjected into the ventrolateral periaqueductal grey (vlPAG) or dorsolateral periaqueductal grey (dlPAG) prior to treatment with TENS. Either high (100 Hz) or low (4 Hz) frequency TENS was then applied to the inflamed knee for 20 min. Active TENS significantly increased withdrawal thresholds of the paw and knee joint in the group microinjected with vehicle when compared to thresholds prior to TENS (P<0.001) or to sham TENS (P<0.001). The increases in withdrawal thresholds normally observed after TENS were prevented by microinjection of CoCl(2) into the vlPAG, but not the dlPAG prior to TENS and were significantly lower than controls treated with TENS (P<0.001). In a separate group of animals, microinjection of CoCl(2) into the vlPAG temporarily reversed the decreased mechanical withdrawal threshold suggesting a role for the vlPAG in the facilitation of joint pain. No significant difference was observed for dlPAG. We hypothesize that the effects of TENS are mediated through the vlPAG that sends projections through the RVM to the spinal cord to produce an opioid-mediated analgesia.

摘要

经皮神经电刺激(TENS)广泛用于治疗疼痛。TENS 产生阿片类介导的镇痛作用,利用了头端腹内侧髓质(RVM)。同样,来自导水管周围灰质(PAG)的镇痛作用也是阿片类介导的,包括 RVM 中的中继。因此,我们研究了腹外侧或背外侧 PAG 是否介导 TENS 在大鼠中产生的镇痛作用。在膝关节炎症(3%高岭土/角叉菜胶)前后以及 TENS 刺激(主动或假刺激)前后评估了爪和膝关节的机械撤回阈值。在接受 TENS 治疗之前,将氯化钴(CoCl(2);5 mM)或载体微注射到腹外侧导水管周围灰质(vlPAG)或背外侧导水管周围灰质(dlPAG)中。然后将高(100 Hz)或低(4 Hz)频率 TENS 应用于发炎的膝关节 20 分钟。与 TENS 之前(P<0.001)或假 TENS(P<0.001)相比,在微注射载体后,主动 TENS 显著增加了注射 CoCl(2)的组中爪和膝关节的撤回阈值(P<0.001)。在 TENS 之后通常观察到的撤回阈值的增加被 CoCl(2)微注射到 vlPAG 之前阻止,但低于用 TENS 治疗的对照(P<0.001)。在另一组动物中,CoCl(2)微注射到 vlPAG 暂时逆转了机械撤回阈值的降低,表明 vlPAG 在促进关节疼痛方面发挥作用。在 dlPAG 中未观察到显着差异。我们假设 TENS 的作用是通过 vlPAG 介导的,该作用通过 RVM 发送到脊髓以产生阿片类介导的镇痛作用。

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