Thalamic neuron hyperexcitability and enlarged receptive fields in the STZ model of diabetic pain

被引:53
作者
Fischer, Tanya Z.
Tan, Andrew M.
Waxman, Stephen G. [1 ]
机构
[1] Yale Univ, Sch Med, Dept Neurol, New Haven, CT 06510 USA
关键词
Diabetes mellitus; Streptozotocin; Neuropathy; Chronic pain; Thalamic hyperexcitability; Allodynia; SODIUM-CHANNEL EXPRESSION; PERIPHERAL-NERVE INJURY; SOMATIC SENSORY NUCLEUS; ROOT GANGLION NEURONS; NEUROPATHIC PAIN; RAT; ALLODYNIA; MICROSTIMULATION; RESPONSIVENESS; MECHANISMS;
D O I
10.1016/j.brainres.2009.02.063
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Distal limb pain in diabetes mellitus is frequently attributed to hyperexcitability of primary afferents associated with peripheral neuropathy. However, prior studies have demonstrated that, after traumatic nerve injury, hyperexcitability develops not only within primary afferents but also within pain-signalling neurons of the spinal cord dorsal horn and thalamic ventral posterolateral (VPL) nucleus, establishing a basis for tiered central pain generators or amplifiers. In this study we asked whether hyperexcitability develops within thalamic neurons in experimental painful diabetes. Diabetes was induced in adult male Sprague-Dawley rats with streptozotocin (STZ). Behavioral testing for tactile allodynia, performed one week prior to STZ injection and weekly thereafter, indicated that, by six weeks after STZ injection, mechanical allodynia had developed (mechanical withdrawal threshold <4 g, STZ; 21.75 g, control). Thalamic unit recordings were obtained from the VPL nucleus at seven weeks after STZ injection, in rats that met a criterion withdrawal threshold of <4 g, at a time when mean glucose level for control rats was 104.8 +/- 2.9, and for diabetic rats was 420.1 +/- 42.0. Our analysis shows that, in this model of diabetic neuropathic pain, thalamic VPL neurons develop hyperexcitability, with increased responses to phasic brush, press, and pinch stimuli applied to identified peripheral receptive fields. VPL neurons from diabetic rats also display enhanced spontaneous activity, independent of ascending afferent barrage, and enlarged receptive fields. These results suggest that aberrant levels of spontaneous activity and hyper-responsiveness of VPL thalamic neurons may contribute to diabetic neuropathic pain. (C) 2009 Elsevier B.V, All rights reserved.
引用
收藏
页码:154 / 161
页数:8
相关论文
共 32 条
[1]   INCREASED RESPONSIVENESS OF SENSORY NEURONS IN THE SAPHENOUS NERVE OF THE STREPTOZOTOCIN-DIABETIC RAT [J].
AHLGREN, SC ;
WHITE, DM ;
LEVINE, JD .
JOURNAL OF NEUROPHYSIOLOGY, 1992, 68 (06) :2077-2085
[2]   Plasticity of pain-related neuronal activity in the human thalamus [J].
Anderson, W. S. ;
O'Hara, S. ;
Lawson, H. C. ;
Treede, R.-D. ;
Lenz, F. A. .
REPROGRAMMING THE BRAIN, 2006, 157 :353-364
[3]   TERMINATION OF THE CENTRAL PAIN PATHWAY IN MAN - THE CONSCIOUS APPRECIATION OF PAIN [J].
BOWSHER, D .
BRAIN, 1957, 80 (04) :606-+
[4]   SPONTANEOUS ACTIVITY OF PRIMARY AFFERENT NEURONS IN DIABETIC BB WISTAR RATS - A POSSIBLE MECHANISM OF CHRONIC DIABETIC NEUROPATHIC PAIN [J].
BURCHIEL, KJ ;
RUSSELL, LC ;
LEE, RP ;
SIMA, AAF .
DIABETES, 1985, 34 (11) :1210-1213
[5]   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
[6]   Changes of sodium channel expression in experimental painful diabetic neuropathy [J].
Craner, MJ ;
Klein, JP ;
Renganathan, M ;
Black, JA ;
Waxman, SG .
ANNALS OF NEUROLOGY, 2002, 52 (06) :786-792
[7]   Thalamic relay site for cold perception in humans [J].
Davis, KD ;
Lozano, AM ;
Manduch, M ;
Tasker, RR ;
Kiss, ZHT ;
Dostrovsky, JO .
JOURNAL OF NEUROPHYSIOLOGY, 1999, 81 (04) :1970-1973
[8]   EFFICIENT ANALYSIS OF EXPERIMENTAL-OBSERVATIONS [J].
DIXON, WJ .
ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, 1980, 20 :441-462
[9]   CENTRAL MECHANISMS OF VASCULAR HEADACHES [J].
DOSTROVSKY, JO ;
DAVIS, KD ;
KAWAKITA, K .
CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY, 1991, 69 (05) :652-658
[10]   Detection of static and dynamic components of mechanical allodynia in rat models of neuropathic pain: are they signalled by distinct primary sensory neurones? [J].
Field, MJ ;
Bramwell, S ;
Hughes, J ;
Singh, L .
PAIN, 1999, 83 (02) :303-311