Spinal cord mechanisms of pain

被引:310
作者
D'Mello, R. [1 ]
Dickenson, A. H. [1 ]
机构
[1] UCL, Dept Pharmacol, London WC1E 6BT, England
基金
英国医学研究理事会; 英国惠康基金;
关键词
analgesics non-opioid; pain; spinal cord;
D O I
10.1093/bja/aen088
中图分类号
R614 [麻醉学];
学科分类号
100217 ;
摘要
The spinal cord is the first relay site in the transmission of nociceptive information from the periphery to the brain. Sensory signals are transmitted from the periphery by primary afferent fibres into the dorsal horn of the spinal cord, where these afferents synapse with intrinsic spinal dorsal horn neurones. Spinal projection neurones then convey this information to higher centres in the brain, where non-noxious and noxious signals can be perceived. During nociceptive transmission, the output of the spinal cord is dependent on various spinal mechanisms which can either increase or decrease the activity of dorsal horn neurones. Such mechanisms include local excitatory and inhibitory interneurones, N-methyl-D-aspartate receptor activation, and descending influences from the brainstem, which can be both inhibitory and excitatory in nature. After nerve injury or conditions of inflammation, shifts can occur in these excitatory and inhibitory mechanisms which modulate spinal excitability, often resulting in the heightened response of dorsal neurones to incoming afferent signals, and increased output to the brain, a phenomenon known as central sensitization. In this review, we consider the ways in which spinal cord activity may be altered in chronic pain states. In addition, we discuss the spinal mechanisms which are targeted by current analgesics used in the management of chronic pain.
引用
收藏
页码:8 / 16
页数:9
相关论文
共 89 条
[1]   The role of 5HT(3) in nociceptive processing in the rat spinal cord: Results from behavioural and electrophysiological studies [J].
Ali, Z ;
Wu, G ;
Kozlov, A ;
Barasi, S .
NEUROSCIENCE LETTERS, 1996, 208 (03) :203-207
[2]  
Allen JW, 2006, TOXICOL SCI, V91, P286, DOI 10.1093/toxsci/kfj143
[3]   Gabapentin for the symptomatic treatment of painful neuropathy in patients with diabetes mellitus - A randomized controlled trial [J].
Backonja, M ;
Beydoun, A ;
Edwards, KR ;
Schwartz, SL ;
Fonseca, V ;
Hes, M ;
LaMoreaux, L ;
Garofalo, E .
JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 1998, 280 (21) :1831-1836
[4]   Rostral ventromedial medulla control of spinal sensory processing in normal and pathophysiological states [J].
Bee, L. A. ;
Dickenson, A. H. .
NEUROSCIENCE, 2007, 147 (03) :786-793
[5]   Protein kinase C phosphorylation sensitizes but does not activate the capsaicin receptor transient receptor potential vanilloid 1 (TRPV1) [J].
Bhave, G ;
Hu, HJ ;
Glauner, KS ;
Zhu, WG ;
Wang, HB ;
Brasier, DJ ;
Oxford, GS ;
Gereau, RW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (21) :12480-12485
[6]   cAMP-dependent protein kinase regulates desensitization of the capsaicin receptor (VR1) by direct phosphorylation [J].
Bhave, G ;
Zhu, WG ;
Wang, HB ;
Brasier, DJ ;
Oxford, GS ;
Gereau, RW .
NEURON, 2002, 35 (04) :721-731
[7]   Expression of α2-adrenergic receptors in rat primary afferent neurones after peripheral nerve injury or inflammation [J].
Birder, LA ;
Perl, ER .
JOURNAL OF PHYSIOLOGY-LONDON, 1999, 515 (02) :533-542
[8]   Glutamate receptors and pain [J].
Bleakman, David ;
Alt, Andrew ;
Nisenbaum, Eric S. .
SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2006, 17 (05) :592-604
[9]   Selective NMDA NR2B antagonists induce antinociception without motor dysfunction: correlation with restricted localisation of NR2B subunit in dorsal horn [J].
Boyce, S ;
Wyatt, A ;
Webb, JK ;
O'Donnell, R ;
Mason, G ;
Rigby, M ;
Sirinathsinghji, D ;
Hill, RG ;
Rupniak, NMJ .
NEUROPHARMACOLOGY, 1999, 38 (05) :611-623
[10]   EFFECTS OF NITRIC-OXIDE AVAILABILITY ON RESPONSES OF SPINAL WIDE DYNAMIC-RANGE NEURONS TO EXCITATORY AMINO-ACIDS [J].
BUDAI, D ;
WILCOX, GL ;
LARSON, AA .
EUROPEAN JOURNAL OF PHARMACOLOGY, 1995, 278 (01) :39-47