Intrathecal administration of proteinase-activated receptor-2 agonists produces hyperalgesia by exciting the cell bodies of primary sensory neurons

被引:42
作者
Alier, Kwai A. [1 ]
Endicott, Jaclyn A. [1 ]
Stemkowski, Patrick L. [1 ]
Cenac, Nicolas [2 ]
Cellars, Laurie [2 ]
Chapman, Kevin [2 ]
Andrade-Gordon, Patricia [3 ]
Vergnolle, Nathalie [2 ]
Smith, Peter A. [1 ]
机构
[1] Univ Alberta, Dept Pharmacol, Edmonton, AB T6G 2H7, Canada
[2] Univ Calgary, Dept Pharmacol & Therapeut, Calgary, AB, Canada
[3] Johnson & Johnson Pharmaceut Res & Dev, Spring House, PA USA
关键词
D O I
10.1124/jpet.107.129171
中图分类号
R9 [药学];
学科分类号
1007 [药学];
摘要
Proteinase-activated receptors (PARs) are a family of G-proteincoupled receptors that are activated by endogenous serine proteinases that cleave the N-terminal domain of the receptor unmasking a "tethered ligand" sequence. Trypsin and other agonists at PAR(2) act on peripheral nerves to augment the transfer of nociceptive information. We tested whether PAR(2) agonists also exert a spinal pronociceptive effect by i.t. administering the selective ligand, Ser-Leu-Ile-Gly-Arg-Leu-NH2 (SLIGRL). This produced thermal and mechanical hyperalgesia in rats and mice and augmented mechanical and thermal hyperalgesia seen in the formalin inflammatory pain test. Effects of SLIGRL were abrogated in PAR(2)-deficient mice and were not seen with the inactive control peptide, Leu-Arg-Gly-Ile-Leu- Ser-NH2. Surprisingly, electrophysiological studies, using whole-cell recording from rat substantia gelatinosa neurons, failed to demonstrate an increase in excitatory transmission or neuronal excitability following treatment with SLIGRL or trypsin. In fact, the actions of trypsin were consistent with a decrease in dorsal horn excitability. SLIGRL and trypsin did, however, depolarize and increase the excitability of large, medium and small primary afferent, dorsal root ganglion neurons. The effects were associated with an increase in conductance at hyperpolarized potentials and a decrease in conductance at depolarized potentials. PAR(2)-like immunoreactivity was found in DRG but not in spinal dorsal horn. These results suggest that activation of DRG neuron cell bodies may account for the pronociceptive actions of i.t. applied PAR(2) agonists. They also imply that pathophysiological release of PAR(2)-activating proteases in the vicinity of DRG neurons may produce profound effects on nociceptive processing in vivo.
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收藏
页码:224 / 233
页数:10
相关论文
共 29 条
[1]
Abdulla FA, 1997, J NEUROSCI, V17, P1633
[2]
Axotomy- and autotomy-induced changes in Ca2+ and K+ channel currents of rat dorsal root ganglion neurons [J].
Abdulla, FA ;
Smith, PA .
JOURNAL OF NEUROPHYSIOLOGY, 2001, 85 (02) :644-658
[3]
Permeability of injured and intact peripheral nerves and dorsal root ganglia [J].
Abram, Stephen E. ;
Yi, Johnny ;
Fuchs, Andreas ;
Hogan, Quinn H. .
ANESTHESIOLOGY, 2006, 105 (01) :146-153
[4]
Protease-activated receptor 2 sensitizes the capsaicin receptor transient receptor potential vanilloid receptor 1 to induce hyperalgesia [J].
Amadesi, S ;
Nie, JJ ;
Vergnolle, N ;
Cottrell, GS ;
Grady, EF ;
Trevisani, M ;
Manni, C ;
Geppetti, P ;
McRoberts, JA ;
Ennes, H ;
Davis, B ;
Mayer, EA ;
Bunnett, NW .
JOURNAL OF NEUROSCIENCE, 2004, 24 (18) :4300-4312
[5]
Proteinase-activated receptor-1 agonists attenuate nociception in response to noxious stimuli [J].
Asfaha, S ;
Brussee, V ;
Chapman, K ;
Zochodne, DW ;
Vergnolle, N .
BRITISH JOURNAL OF PHARMACOLOGY, 2002, 135 (05) :1101-1106
[6]
ASFAHA S, 2007, BRIT J PHARMACOL, V150, P76
[7]
Sciatic chronic constriction injury produces cell-type-specific changes in the electrophysiological properties of rat substantia gelatinosa neurons [J].
Balasubramanyan, Sridhar ;
Stemkowski, Patrick L. ;
Stebbing, Martin J. ;
Smith, Peter A. .
JOURNAL OF NEUROPHYSIOLOGY, 2006, 96 (02) :579-590
[8]
Proteases and protease-activated receptors (PARs): Novel signals for pain [J].
Cenac, N ;
Vergnolle, N .
CURRENT TOPICS IN MEDICINAL CHEMISTRY, 2005, 5 (06) :569-576
[9]
Neuronal hyperpolarization-activated pacemaker channels drive neuropathic pain [J].
Chaplan, SR ;
Guo, HQ ;
Lee, DH ;
Luo, L ;
Liu, CL ;
Kuei, C ;
Velumian, AA ;
Butler, MP ;
Brown, SM ;
Dubin, AE .
JOURNAL OF NEUROSCIENCE, 2003, 23 (04) :1169-1178
[10]
Proteinase-activated receptor 2-mediated potentiation of transient receptor potential vanilloid subfamily 1 activity reveals a mechanism for proteinase-induced inflammatory pain [J].
Dai, Y ;
Moriyama, T ;
Higashi, T ;
Togashi, K ;
Kobayashi, K ;
Yamanaka, H ;
Tominaga, M ;
Noguchi, K .
JOURNAL OF NEUROSCIENCE, 2004, 24 (18) :4293-4299