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Spinal processing of bee venom-induced pain and hyperalgesia

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【Author】 Jun CHEN Institute for Biomedical Sciences of Pain and Institute for Functional Brain Disorders,Tangdu Hospital,the Fourth Military Medical University,Xi’an 710038,China;Institute for Biomedical Sciences of Pain,Capital Medical University,Beijing 100069,China

【摘要】 Subcutaneous injection of bee venom causes long-term neural activation and hypersensitization in the dorsal horn of the spinal cord,which contributes to the development and maintenance of various pain-related behaviors.The unique behavioral ’phenotypes’ of nociception and hypersensitivity identified in the rodent bee venom test are believed to reflect a complex pathological state of inflammatory pain and might be appropriate to the study of phenotype-based mechanisms of pain and hyperalgesia.In this review,the spinal processing of the bee venom-induced different ’phenotypes’ of pain and hyperalgesia will be described.The accumulative electrophysiological,pharmacological,and behavioral data strongly suggest that different ’phenotypes’ of pain and hyperalgesia are mediated by different spinal signaling pathways.Unraveling the phenotype-based mechanisms of pain might be useful in development of novel therapeutic drugs against complex clinic pathological pain.

【Abstract】 Subcutaneous injection of bee venom causes long-term neural activation and hypersensitization in the dorsal horn of the spinal cord,which contributes to the development and maintenance of various pain-related behaviors.The unique behavioral ’phenotypes’ of nociception and hypersensitivity identified in the rodent bee venom test are believed to reflect a complex pathological state of inflammatory pain and might be appropriate to the study of phenotype-based mechanisms of pain and hyperalgesia.In this review,the spinal processing of the bee venom-induced different ’phenotypes’ of pain and hyperalgesia will be described.The accumulative electrophysiological,pharmacological,and behavioral data strongly suggest that different ’phenotypes’ of pain and hyperalgesia are mediated by different spinal signaling pathways.Unraveling the phenotype-based mechanisms of pain might be useful in development of novel therapeutic drugs against complex clinic pathological pain.

【基金】 grants from National Natural Science Foundation of China(No.30325023,30670692);Natural Science Foundation of Beijing Education Committee(No.KZ200510025016);National Basic Research Development Program(973)of China(No.2006CB500808);Innovation Research Team Program of Ministry of Education,China(No.IRT0560)
  • 【文献出处】 生理学报 ,Acta Physiologica Sinica , 编辑部邮箱 ,2008年05期
  • 【分类号】R363
  • 【被引频次】4
  • 【下载频次】31
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