Objective: To investigate the role of spinal glial cells activation in neuropathic pain in a recently developed spared nerve injury (SNI) animal model by Decosterd and Woolf. Methods: A lesion was made to two of the t...Objective: To investigate the role of spinal glial cells activation in neuropathic pain in a recently developed spared nerve injury (SNI) animal model by Decosterd and Woolf. Methods: A lesion was made to two of the three terminal branches of the sciatic nerve of rats (tibial and common peroneal nerves) leaving the sural nerve intact. Continuous intrathe-cal administration of propentofylline, a glial modulating agent, 1 d before and 5 d after operation, was performed to disrupt spinal cord glia function. The vehicle was intrathecally administrated as control. The paw withdrawal threshold to mechanical stimulation (paw withdrawal mechaical threshold PWMT), body mass and motor function were determined pre- and post-surgery. Results: It produced a prolonged mechanical allodynia in the medial and lateral part of the ipsilateral hind paw in SNL models. The treatment with propentofylline significantly prevented the development of mechanical allodynia located in either medial or lateral plantar surface. Rats in two groups showed normal motor function and body weight increase. Conclusion: SNI model can be applied as a useful method with little variance in searching the mechanism of neuropathic pain. These study suggest that spinal glia activation may contribute to mechanical allodynia induced by SNI.展开更多
目的:观察高迁移率族蛋白-1(high mobility group box-1,HMGB1)在糖尿病大鼠脊髓内的表达变化,探索其参与糖尿病性机械性痛觉过敏的具体机制,进一步阐明糖尿病性痛的机制,为糖尿病疼痛的治疗提供新的思路。方法:(1)36只SD大鼠随机分成6...目的:观察高迁移率族蛋白-1(high mobility group box-1,HMGB1)在糖尿病大鼠脊髓内的表达变化,探索其参与糖尿病性机械性痛觉过敏的具体机制,进一步阐明糖尿病性痛的机制,为糖尿病疼痛的治疗提供新的思路。方法:(1)36只SD大鼠随机分成6组(n=6),分别为正常大鼠组、糖尿病大鼠对照组、糖尿病7 d组、14 d、21 d和28 d组。通过Real-time PCR法检测各组大鼠脊髓内HMGB1 m RNA的表达情况。(2)24只SD大鼠分成4组(n=6)制作糖尿病大鼠模型,在造模后第28 d鞘内给予生理盐水、HMGB1的中和抗体10、30和100μg,检测糖尿病大鼠模型在各时间点的机械性缩足阈值。(3)30只SD大鼠随机分成5组(n=6),其中4组给予链尿佐菌素制作糖尿病大鼠模型。模型制作28 d后鞘内给予生理盐水、HMGB1的中和抗体10、30和100μg。另一组大鼠腹腔给予生理盐水,作为糖尿病大鼠的对照组。检测各组大鼠脊髓的TNF-α、IL-1β和IL-6 m RNA的表达。结果:(1)糖尿病大鼠模型制作21 d和28 d,脊髓内HMGB1 m RNA的表达显著上调(P<0.05)。(2)糖尿病大鼠鞘内给予HMGB1中和抗体30和100μg后,可以在长达24 h的时间内扭转模型大鼠的机械性痛敏(P<0.05)。(3)糖尿病大鼠造模28 d后,鞘内给予HMGB1的中和抗体30和100μg可以明显逆转糖尿病大鼠脊髓内的TNF-α、IL-1β和IL-6 m RNA的表达(P<0.05)。结论:糖尿病大鼠脊髓内HMGB1显著上调,鞘内给予HMGB1的中和抗体可以通过抑制脊髓内TNF-α等细胞因子的表达而扭转糖尿病大鼠的机械性痛敏。以上结果提示,脊髓HMGB1可能参与了糖尿病机械性痛敏状态的维持过程。我们的研究对脊髓HMGB1参与糖尿病大鼠的疼痛的机制进行初步的探讨,为糖尿病性痛的治疗提供新的思路。展开更多
To investigate the neurotoxicity of intrathecal injections of dexmedetomidine,Sprague-Dawley rats were intrathecally injected with dexmedetomidine at doses of 0.75,1.50 and 3.00μg/kg into the spinal dorsal horn.We fo...To investigate the neurotoxicity of intrathecal injections of dexmedetomidine,Sprague-Dawley rats were intrathecally injected with dexmedetomidine at doses of 0.75,1.50 and 3.00μg/kg into the spinal dorsal horn.We found that c-Fos expression in the rat spinal dorsal horn peaked at 7 hours following the 3.00μg/kg dexmedetomidine injection,while the levels of c-Fos expression following 0.75 and 1.50μg/kg dexmedetomidine were similar to those in the spinal dorsal horn of normal rats. At 48 hours following administration,the level of c-Fos expression was similar to normal levels.In addition,the intrathecal injections of dexmedetomidine increased paw withdrawal mechanical thresholds and prolonged thermal tail flick latencies.These results indicate that dexmedetomidine has pronounced antinociceptive effects.However,dexmedetomidine appears to have neurotoxic effects in the spinal cord because it increased c-Fos expression in the spinal dorsal horn within 7 hours following administration.展开更多
文摘Objective: To investigate the role of spinal glial cells activation in neuropathic pain in a recently developed spared nerve injury (SNI) animal model by Decosterd and Woolf. Methods: A lesion was made to two of the three terminal branches of the sciatic nerve of rats (tibial and common peroneal nerves) leaving the sural nerve intact. Continuous intrathe-cal administration of propentofylline, a glial modulating agent, 1 d before and 5 d after operation, was performed to disrupt spinal cord glia function. The vehicle was intrathecally administrated as control. The paw withdrawal threshold to mechanical stimulation (paw withdrawal mechaical threshold PWMT), body mass and motor function were determined pre- and post-surgery. Results: It produced a prolonged mechanical allodynia in the medial and lateral part of the ipsilateral hind paw in SNL models. The treatment with propentofylline significantly prevented the development of mechanical allodynia located in either medial or lateral plantar surface. Rats in two groups showed normal motor function and body weight increase. Conclusion: SNI model can be applied as a useful method with little variance in searching the mechanism of neuropathic pain. These study suggest that spinal glia activation may contribute to mechanical allodynia induced by SNI.
文摘目的:观察高迁移率族蛋白-1(high mobility group box-1,HMGB1)在糖尿病大鼠脊髓内的表达变化,探索其参与糖尿病性机械性痛觉过敏的具体机制,进一步阐明糖尿病性痛的机制,为糖尿病疼痛的治疗提供新的思路。方法:(1)36只SD大鼠随机分成6组(n=6),分别为正常大鼠组、糖尿病大鼠对照组、糖尿病7 d组、14 d、21 d和28 d组。通过Real-time PCR法检测各组大鼠脊髓内HMGB1 m RNA的表达情况。(2)24只SD大鼠分成4组(n=6)制作糖尿病大鼠模型,在造模后第28 d鞘内给予生理盐水、HMGB1的中和抗体10、30和100μg,检测糖尿病大鼠模型在各时间点的机械性缩足阈值。(3)30只SD大鼠随机分成5组(n=6),其中4组给予链尿佐菌素制作糖尿病大鼠模型。模型制作28 d后鞘内给予生理盐水、HMGB1的中和抗体10、30和100μg。另一组大鼠腹腔给予生理盐水,作为糖尿病大鼠的对照组。检测各组大鼠脊髓的TNF-α、IL-1β和IL-6 m RNA的表达。结果:(1)糖尿病大鼠模型制作21 d和28 d,脊髓内HMGB1 m RNA的表达显著上调(P<0.05)。(2)糖尿病大鼠鞘内给予HMGB1中和抗体30和100μg后,可以在长达24 h的时间内扭转模型大鼠的机械性痛敏(P<0.05)。(3)糖尿病大鼠造模28 d后,鞘内给予HMGB1的中和抗体30和100μg可以明显逆转糖尿病大鼠脊髓内的TNF-α、IL-1β和IL-6 m RNA的表达(P<0.05)。结论:糖尿病大鼠脊髓内HMGB1显著上调,鞘内给予HMGB1的中和抗体可以通过抑制脊髓内TNF-α等细胞因子的表达而扭转糖尿病大鼠的机械性痛敏。以上结果提示,脊髓HMGB1可能参与了糖尿病机械性痛敏状态的维持过程。我们的研究对脊髓HMGB1参与糖尿病大鼠的疼痛的机制进行初步的探讨,为糖尿病性痛的治疗提供新的思路。
文摘To investigate the neurotoxicity of intrathecal injections of dexmedetomidine,Sprague-Dawley rats were intrathecally injected with dexmedetomidine at doses of 0.75,1.50 and 3.00μg/kg into the spinal dorsal horn.We found that c-Fos expression in the rat spinal dorsal horn peaked at 7 hours following the 3.00μg/kg dexmedetomidine injection,while the levels of c-Fos expression following 0.75 and 1.50μg/kg dexmedetomidine were similar to those in the spinal dorsal horn of normal rats. At 48 hours following administration,the level of c-Fos expression was similar to normal levels.In addition,the intrathecal injections of dexmedetomidine increased paw withdrawal mechanical thresholds and prolonged thermal tail flick latencies.These results indicate that dexmedetomidine has pronounced antinociceptive effects.However,dexmedetomidine appears to have neurotoxic effects in the spinal cord because it increased c-Fos expression in the spinal dorsal horn within 7 hours following administration.