Differential action potentials and firing patterns in injured and uninjured small dorsal root ganglion neurons after nerve injury

被引:53
作者
Zhang, XF [1 ]
Zhu, CZ
Thimmapaya, R
Choi, WS
Honore, P
Scott, VE
Kroeger, PE
Sullivan, JP
Faltynek, CR
Gopalakrishnan, M
Shieh, CC
机构
[1] Global Pharmaceut Res & Dev, Abbott Labs, Neurosci Res, Abbott Pk, IL 60064 USA
[2] Global Pharmaceut Res & Dev, Abbott Labs, Adv Technol, Abbott Pk, IL 60064 USA
关键词
action potential; firing pattern; TTX-R sodium current; spinal nerve ligation; pain;
D O I
10.1016/j.brainres.2004.02.057
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The profile of tetrodotoxin sensitive (TTX-S) and resistant (TTX-R) Na+ channels and their contribution to action potentials and firing patterns were studied in isolated small dorsal root ganglion (DRG) neurons after L5/L6 spinal nerve ligation (SNL). Total TTX-R Na+ currents and Na-v 1.8 mRNA were reduced in injured L5 DRG neurons 14 days after SNL. In contrast, TTX-R Na+ currents and Nav 1.8 mRNA were upregulated in uninjured L4 DRG neurons after SNL. Voltage-dependent inactivation of TTX-R Na+ channels in these neurons was shifted to hyperpolarized potentials by 4 mV. Two types of neurons were identified in injured L5 DRG neurons after SNL. Type I neurons (57%) had significantly lower threshold but exhibited normal resting membrane potential (RMP) and action potential amplitude. Type II neurons (43%) had significantly smaller action potential amplitude but retained similar RMP and threshold to those from sham rats. None of the injured neurons could generate repetitive firing. In the presence of TTX, only 26% of injured neurons could generate action potentials that had smaller amplitude, higher threshold, and higher rheobase compared with sham rats. In contrast, action potentials and firing patterns in uninjured L4 DRG neurons after SNL, in the presence or absence of TTX, were not affected. These results suggest that TTX-R Na+ channels play important roles in regulating action potentials and firing patterns in small DRG neurons and that downregulation in injured neurons and upregulation in uninjured neurons confer differential roles in shaping electrogenesis, and perhaps pain transmission, in these neurons. (C) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:147 / 158
页数:12
相关论文
共 53 条
[1]   Axotomy- and autotomy-induced changes in the excitability of rat dorsal root ganglion neurons [J].
Abdulla, FA ;
Smith, PA .
JOURNAL OF NEUROPHYSIOLOGY, 2001, 85 (02) :630-643
[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]   Uninjured C-fiber nociceptors develop spontaneous activity and α-adrenergic sensitivity following L6 spinal nerve ligation in monkey [J].
Ali, Z ;
Ringkamp, M ;
Hartke, TV ;
Chien, HF ;
Flavahan, NA ;
Campbell, JN ;
Meyer, RA .
JOURNAL OF NEUROPHYSIOLOGY, 1999, 81 (02) :455-466
[4]   Involvement of Na+ channels in pain pathways [J].
Baker, MD ;
Wood, JN .
TRENDS IN PHARMACOLOGICAL SCIENCES, 2001, 22 (01) :27-31
[5]   GTP-induced tetrodotoxin-resistant Na+ current regulates excitability in mouse and rat small diameter sensory neurones [J].
Baker, MD ;
Chandra, SY ;
Ding, YN ;
Waxman, SG ;
Wood, JN .
JOURNAL OF PHYSIOLOGY-LONDON, 2003, 548 (02) :373-382
[6]   Upregulation of a silent sodium channel after peripheral, but not central, nerve injury in DRG neurons [J].
Black, JA ;
Cummins, TR ;
Plumpton, C ;
Chen, YH ;
Hormuzdiar, W ;
Clare, JJ ;
Waxman, SG .
JOURNAL OF NEUROPHYSIOLOGY, 1999, 82 (05) :2776-2785
[7]   NGF has opposing effects on Na+ channel III and SNS gene expression in spinal sensory neurons [J].
Black, JA ;
Langworthy, K ;
Hinson, AW ;
DibHajj, SD ;
Waxman, SG .
NEUROREPORT, 1997, 8 (9-10) :2331-2335
[8]  
Blair NT, 2002, J NEUROSCI, V22, P10277
[9]   Potent analgesic effects of GDNF in neuropathic pain states [J].
Boucher, TJ ;
Okuse, K ;
Bennett, DLH ;
Munson, JB ;
Wood, JN ;
McMahon, SB .
SCIENCE, 2000, 290 (5489) :124-127
[10]   3 TYPES OF SODIUM-CHANNELS IN ADULT-RAT DORSAL-ROOT GANGLION NEURONS [J].
CAFFREY, JM ;
ENG, DL ;
BLACK, JA ;
WAXMAN, SG ;
KOCSIS, JD .
BRAIN RESEARCH, 1992, 592 (1-2) :283-297