Recent evidence for activity-dependent initiation of sympathetic sprouting and neuropathic pain

被引:19
作者
Judith A.Strong
机构
[1] DepartmentofAnesthesiology,UniversityofCincinnatiCollegeofMedicineAlbertSabinWay,Cincinnati,OH-,USA
关键词
D O I
暂无
中图分类号
R741 [神经病学];
学科分类号
100204 [神经病学];
摘要
Traumatic injury or inflammatory irritation of the peripheral nervous system often leads to persistent pathophysiological pain states.It has been well-documented that,after peripheral nerve injury or inflammation,functional and anatomical alterations sweep over the entire peripheral nervous system including the peripheral nerve endings,the injured or inflamed afferent fibers,the dorsal root ganglion(DRG),and the central afferent terminals in the spinal cord.Among all the changes,ectopic discharge or spontaneous activity of primary sensory neurons is of great clinical interest,as such discharges doubtless contribute to the develop-ment of pathological pain states such as neuropathic pain.Two key sources of abnormal spontaneous activity have been identified following peripheral nerve injury:the injured afferent fibers(neuroma) leading to the DRG,and the DRG somata.The purpose of this review is to provide a global account of the abnormal spontaneous activity in various animal models of pain.Particular attention is focused on the consequence of peripheral nerve injury and localized inflammation.Further,mechanisms involved in the generation of spontaneous activity are also reviewed;evidence of spontaneous activity in contributing to abnormal sympathetic sprouting in the axotomized DRG and to the initiation of neuropathic pain based on new findings from our research group are discussed.An improved understanding of the causes of spontaneous activity and the origins of neuropathic pain should facilitate the development of novel strategies for effective treatment of pathological pain.
引用
收藏
页码:617 / 627
页数:11
相关论文
共 29 条
[1]
Systemic antiinflammatory corticosteroid reduces mechanical pain behavior, sympathetic sprouting and elevation of proinflammatory cytokines in a rat model of neuropathic pain [J].
Li, Huiqing ;
Xie, Wenrui ;
Strong, Judith A. ;
Zhang, Jun-Ming .
ANESTHESIOLOGY, 2007, 107 (03) :469-477
[2]
Robust increase of cutaneous sensitivity, cytokine production and sympathetic sprouting in rats with localized inflammatory irritation of the spinal ganglia [J].
Xie, W. -R. ;
Deng, H. ;
Li, H. ;
Bowen, T. L. ;
Strong, J. A. ;
Zhang, J. -M. .
NEUROSCIENCE, 2006, 142 (03) :809-822
[3]
Hyperpolarization-Activated; Cation-Nonselective; Cyclic Nucleotide-Modulated Channel Blockade Alleviates Mechanical Allodynia and Suppresses Ectopic Discharge in Spinal Nerve Ligated Rats.[J].Doo H. Lee;Leon Chang;Linda S. Sorkin;Sandra R. Chaplan.Journal of Pain.2005, 7
[4]
Neuropathic pain: Early spontaneous afferent activity is the trigger [J].
Xie, WR ;
Strong, JA ;
Meij, JTA ;
Zhang, JM ;
Yu, L .
PAIN, 2005, 116 (03) :243-256
[5]
Sympathetic Fiber Sprouting in Chronically Compressed Dorsal Root Ganglia Without Peripheral Axotomy.[J].Shelby Q. Chien;Chunling Li;Huiqing Li;Wenrui Xie;Carmelita S. Pablo;Jun-Ming Zhang.Journal Of Neuropathic Pain & Symptom Palliation.2005, 1
[6]
Decreasing sympathetic sprouting in pathologic sensory ganglia: a new mechanism for treating neuropathic pain using lidocaine.[J].Jun-Ming Zhang;Huiqing Li;Muhammad A Munir.Pain.2004, 1
[7]
Regulation of recombinant and native hyperpolarization-activated cation channels [J].
Frère, SGA ;
Kuisle, M ;
Lüthi, A .
MOLECULAR NEUROBIOLOGY, 2004, 30 (03) :279-305
[8]
Coupling gene chip analyses and rat genetic variances in identifying potential target genes that may contribute to neuropathic allodynia development [J].
Valder, CR ;
Liu, JJ ;
Song, YH ;
Luo, ZD .
JOURNAL OF NEUROCHEMISTRY, 2003, 87 (03) :560-573
[9]
Chronic neuropathic pain is accompanied by global changes in gene expression and shares pathobiology with neurodegenerative diseases [J].
Wang, H ;
Sun, H ;
Della Penna, K ;
Benz, RJ ;
Xu, J ;
Gerhold, DL ;
Holder, DJ ;
Koblan, KS .
NEUROSCIENCE, 2002, 114 (03) :529-546
[10]
Inhibition of neuropathic pain by decreased expression of the tetrodotoxin-resistant sodium channel; NaV1.8.[J].Josephine Lai;Michael S Gold;Chang-Sook Kim;Di Bian a;Michael H Ossipov;John C Hunter c;Frank Porreca.Pain.2002, 1