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膀胱内注射二甲基亚砜和辣椒素对大鼠镇痛作用的脊髓神经生理学关联

Spinal neurophysiologic correlates of the analgesic actions of intravesical dimethyl sulfoxide and capsaicin in the rat.

作者信息

Castroman Pablo J, Ness Timothy J

机构信息

Departmento de Fisiopatología, Facultad de Medicina, Universidad de la República, Montevideo, Uruguay.

出版信息

J Pain. 2002 Oct;3(5):394-400. doi: 10.1054/jpai.2002.126789.

Abstract

Peripheral analgesia produced by the intravesical instillation of dimethyl sulphoxide (DMSO) and capsaicin has been used to treat visceral pain originating in the urinary bladder. The present study sought to determine the neurophysiologic consequences of the intravesical instillation of these compounds by measuring spinal neuronal responses evoked by urinary bladder distension (UBD) in the rat. Subjects were spinally transected, decerebrate female Sprague-Dawley rats. The effect of 0.5 mL of solution of 10% or 50% DMSO, 100 micromol/L capsaicin, or the same volume of saline instilled into the bladder on excitatory neuronal responses to UBD was studied by using single-unit extracellular recordings of L6-S2 dorsal horn spinal cord neurons. Fifty-six dorsal horn neurons that were excited by UBD in a graded fashion were identified. All neurons were also excited by noxious or non-noxious cutaneous stimuli. Two hours after intravesical instillation, solutions of 50% DMSO or 100 micromol/L of capsaicin produced a reduction of the slope of stimulus-response functions for neuronal activity evoked by graded UBD. These data support a local effect of intravesical 50% DMSO or capsaicin and suggest the use of this model to study novel peripheral treatment strategies for bladder pain.

摘要

膀胱内灌注二甲基亚砜(DMSO)和辣椒素所产生的外周镇痛作用已被用于治疗源于膀胱的内脏疼痛。本研究旨在通过测量大鼠膀胱扩张(UBD)诱发的脊髓神经元反应,来确定膀胱内灌注这些化合物的神经生理学后果。实验对象为脊髓横断、去大脑的雌性Sprague-Dawley大鼠。通过对L6-S2背角脊髓神经元进行单单位细胞外记录,研究向膀胱内灌注0.5 mL 10%或50% DMSO溶液、100 μmol/L辣椒素溶液或相同体积的生理盐水对UBD诱发的兴奋性神经元反应的影响。确定了56个对UBD呈分级兴奋反应的背角神经元。所有神经元也对有害或无害的皮肤刺激产生兴奋反应。膀胱内灌注两小时后,50% DMSO溶液或100 μmol/L辣椒素溶液使分级UBD诱发的神经元活动的刺激-反应函数斜率降低。这些数据支持膀胱内50% DMSO或辣椒素的局部作用,并表明可利用该模型研究膀胱疼痛的新型外周治疗策略。

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