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三叉神经旁核在大鼠对后爪施加化学、热和机械刺激的伤害性反应中的作用。

Role of the paratrigeminal nucleus in nocifensive responses of rats to chemical, thermal and mechanical stimuli applied to the hind paw.

作者信息

Koepp Janice, Lindsey Charles Julian, Motta Emerson Marcelo, Rae Giles Alexander

机构信息

Department of Pharmacology, Biological Sciences Center, Universidade Federal de Santa Catarina, Campus, Trindade, Florianópolis, SC 88010-970, Brazil Department of Biophysics, Escola Paulista de Medicina, Universidade Federal de São Paulo, São Paulo 04023-062, Brazil.

出版信息

Pain. 2006 Jun;122(3):235-244. doi: 10.1016/j.pain.2006.01.038. Epub 2006 Apr 17.

DOI:10.1016/j.pain.2006.01.038
PMID:16616416
Abstract

Anatomical and immunohystochemical data suggest the paratrigeminal nucleus (Pa5) may play a role in nociceptive processing. The current study examines the influence of unilateral Pa5 lesion on nocifensive responses of conscious rats to noxious thermal (Hargreaves test), mechanical (electronic von Frey and Randall-Selitto tests), and chemical (formalin 2.5%; 50 microl) stimuli applied to the hind paw. Lesion of the Pa5 induced by ibotenic acid did not affect the latency for radiant heat-induced withdrawal of either paw. In contrast, the mean mechanical threshold for withdrawal of the contralateral (but not ipsilateral) paw in Pa5-lesioned rats was reduced by approximately 45% and 20%, in electronic von Frey and Randall-Selitto tests, respectively, when compared to sham-operated animals. Conversely, animals with Pa5 lesions injected with formalin in the contralateral paw spent less time engaged in focused (licking, biting or scratching the injected paw) and total nocifensive behavior (i.e., focused nocifensive behavior plus protection of the injected paw during movements) in both the first and second phases of the test [ approximately 50% inhibition of each parameter during first phase (0-5 min) and at 20, 25, and 30 min of second phase, relative to the sham-operated group], but the number of paw-jerks was unaffected. Pa5 lesion also delayed the onset of second phase focused pain induced by formalin in the ipsilateral paw. The results suggest that the Pa5 integrates the supraspinal pain control system and plays a differential modulatory role in the central processing of mechanical and chemical nociceptive information.

摘要

解剖学和免疫组织化学数据表明,三叉神经旁核(Pa5)可能在伤害性信息处理中发挥作用。本研究考察了单侧Pa5损伤对清醒大鼠后爪受到有害热刺激(哈格里夫斯试验)、机械刺激(电子von Frey和兰德尔-塞利托试验)及化学刺激(2.5%福尔马林;50微升)时伤害性防御反应的影响。由鹅膏蕈氨酸诱导的Pa5损伤并未影响任何一只爪子对辐射热诱发的撤回潜伏期。相比之下,与假手术动物相比,在电子von Frey试验和兰德尔-塞利托试验中,Pa5损伤大鼠对侧(而非同侧)爪子撤回的平均机械阈值分别降低了约45%和20%。相反,在对侧爪子注射福尔马林的Pa5损伤动物,在试验的第一阶段和第二阶段,专注于(舔、咬或抓注射爪子)和总的伤害性防御行为(即专注的伤害性防御行为加上运动过程中对注射爪子的保护)所花费的时间均减少[相对于假手术组,在第一阶段(0 - 5分钟)以及第二阶段20、25和30分钟时,每个参数均受到约50%的抑制],但爪子抽搐的次数未受影响。Pa5损伤还延迟了同侧爪子福尔马林诱发的第二阶段专注性疼痛的发作。结果表明,Pa5整合了脊髓上疼痛控制系统,并在机械性和化学性伤害性信息的中枢处理中发挥不同的调节作用。

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