Transformation of the output of spinal lamina I neurons after nerve injury and microglia stimulation underlying neuropathic pain

被引:189
作者
Keller, A. Florence
Beggs, Simon
Salter, Michael W.
De Koninck, Yves
机构
[1] Unité de Neurobiologie Cellulaire, Centre de Recherche Université Laval Robert-Giffard, Québec
[2] Hospital for Sick Children, University of Toronto, Toronto, ON
来源
MOLECULAR PAIN | 2007年 / 3卷
关键词
D O I
10.1186/1744-8069-3-27
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: Disinhibition of neurons in the superficial spinal dorsal horn, via microglia - neuron signaling leading to disruption of chloride homeostasis, is a potential cellular substrate for neuropathic pain. But, a central unresolved question is whether this disinhibition can transform the activity and responses of spinal nociceptive output neurons to account for the symptoms of neuropathic pain. Results: Here we show that peripheral nerve injury, local spinal administration of ATP-stimulated microglia or pharmacological disruption of chloride transport change the phenotype of spinal lamina I output neurons, causing them to 1) increase the gain of nociceptive responsiveness, 2) relay innocuous mechanical input and 3) generate spontaneous bursts of activity. The changes in the electrophysiological phenotype of lamina I neurons may account for three principal components of neuropathic pain: hyperalgesia, mechanical allodynia and spontaneous pain, respectively. Conclusion: The transformation of discharge activity and sensory specificity provides an aberrant signal in a primarily nociceptive ascending pathway that may serve as a basis for the symptoms of neuropathic pain.
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页数:11
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共 47 条
[1]   Removal of GABAergic inhibition facilitates polysynaptic A fiber-mediated excitatory transmission to the superficial spinal dorsal horn [J].
Baba, H ;
Ji, RR ;
Kohno, T ;
Moore, KA ;
Ataka, T ;
Wakai, A ;
Okamoto, M ;
Woolf, CJ .
MOLECULAR AND CELLULAR NEUROSCIENCE, 2003, 24 (03) :818-830
[2]   Neuropathic pain symptoms relative to overall pain rating [J].
Backonja, MM ;
Stacey, B .
JOURNAL OF PAIN, 2004, 5 (09) :491-497
[3]   Mechanisms of Disease: neuropathic pain - a clinical perspective [J].
Baron, R .
NATURE CLINICAL PRACTICE NEUROLOGY, 2006, 2 (02) :95-106
[4]  
Bester H, 2000, J COMP NEUROL, V428, P45, DOI 10.1002/1096-9861(20001204)428:1<45::AID-CNE5>3.0.CO
[5]  
2-A
[6]   SPINO(TRIGEMINO) PARABRACHIOHYPOTHALAMIC PATHWAY - ELECTROPHYSIOLOGICAL EVIDENCE FOR AN INVOLVEMENT IN PAIN PROCESSES [J].
BESTER, H ;
MENENDEZ, L ;
BESSON, JM ;
BERNARD, JF .
JOURNAL OF NEUROPHYSIOLOGY, 1995, 73 (02) :568-585
[7]  
Bester H, 1997, J COMP NEUROL, V383, P439
[8]   Physiological properties of the lamina I spinoparabrachial neurons in the rat [J].
Bester, H ;
Chapman, V ;
Besson, JM ;
Bernard, JF .
JOURNAL OF NEUROPHYSIOLOGY, 2000, 83 (04) :2239-2259
[9]   Mechanisms of neuropathic pain [J].
Campbell, James N. ;
Meyer, Richard A. .
NEURON, 2006, 52 (01) :77-92
[10]   QUANTITATIVE ASSESSMENT OF TACTILE ALLODYNIA IN THE RAT PAW [J].
CHAPLAN, SR ;
BACH, FW ;
POGREL, JW ;
CHUNG, JM ;
YAKSH, TL .
JOURNAL OF NEUROSCIENCE METHODS, 1994, 53 (01) :55-63