Presynaptic NMDA receptors control nociceptive transmission at the spinal cord level in neuropathic pain

被引:0
作者
Meichun Deng
Shao-Rui Chen
Hui-Lin Pan
机构
[1] The University of Texas MD Anderson Cancer Center,Department of Anesthesiology and Perioperative Medicine, Center for Neuroscience and Pain Research
[2] Central South University,Department of Biochemistry and Molecular Biology, School of Life Sciences
来源
Cellular and Molecular Life Sciences | 2019年 / 76卷
关键词
Calcineurin; K; –Cl; cotransporter-2; Synaptic plasticity; Dorsal root ganglion; Gabapentin; Pregabalin;
D O I
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中图分类号
学科分类号
摘要
Chronic neuropathic pain is a debilitating condition that remains challenging to treat. Glutamate N-methyl-d-aspartate receptor (NMDAR) antagonists have been used to treat neuropathic pain, but the exact sites of their actions have been unclear until recently. Although conventionally postsynaptic, NMDARs are also expressed presynaptically, particularly at the central terminals of primary sensory neurons, in the spinal dorsal horn. However, presynaptic NMDARs in the spinal cord are normally quiescent and are not actively involved in physiological nociceptive transmission. In this review, we describe the emerging role of presynaptic NMDARs at the spinal cord level in chronic neuropathic pain and the implications of molecular mechanisms for more effective treatment. Recent studies indicate that presynaptic NMDAR activity at the spinal cord level is increased in several neuropathic pain conditions but not in chronic inflammatory pain. Increased presynaptic NMDAR activity can potentiate glutamate release from primary afferent terminals to spinal dorsal horn neurons, which is crucial for the synaptic plasticity associated with neuropathic pain caused by traumatic nerve injury and chemotherapy-induced peripheral neuropathy. Furthermore, α2δ-1, previously considered a calcium channel subunit, can directly interact with NMDARs through its C-terminus to increase presynaptic NMDAR activity by facilitating synaptic trafficking of α2δ-1–NMDAR complexes in neuropathic pain caused by chemotherapeutic agents and peripheral nerve injury. Targeting α2δ-1–bound NMDARs with gabapentinoids or α2δ-1 C-terminus peptides can attenuate nociceptive drive form primary sensory nerves to dorsal horn neurons in neuropathic pain.
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页码:1889 / 1899
页数:10
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共 404 条
[1]  
Yamamoto T(1992)Spinal pharmacology of thermal hyperesthesia induced by constriction injury of sciatic nerve. Excitatory amino acid antagonists Pain 49 121-128
[2]  
Yaksh TL(1991)Modulation of neuropathic pain behavior in rats by spinal disinhibition and NMDA receptor blockade of injury discharge Pain 45 69-75
[3]  
Seltzer Z(2011)Targeting Expert Rev Clin Pharmacol 4 379-388
[4]  
Cohn S(2003)-methyl- Nature 426 841-845
[5]  
Ginzburg R(2011)-aspartate receptors for treatment of neuropathic pain J Neurosci 31 8271-8279
[6]  
Beilin B(2018)Presynaptic induction of heterosynaptic associative plasticity in the mammalian brain J Physiol 596 4269-4283
[7]  
Zhou HY(2014)Protein kinase CK2 increases glutamatergic input in the hypothalamus and sympathetic vasomotor tone in hypertension Neuron 84 1009-1022
[8]  
Chen SR(2018)alpha2delta-1 couples to NMDA receptors in the hypothalamus to sustain sympathetic vasomotor activity in hypertension J Biol Chem 293 19354-19364
[9]  
Pan HL(2010)Essential role of presynaptic NMDA receptors in activity-dependent BDNF secretion and corticostriatal LTP Neuron 68 1109-1127
[10]  
Humeau Y(2016)The alpha2delta-1-NMDA receptor coupling is essential for corticostriatal long-term potentiation and is involved in learning and memory Cell Rep 15 1376-1383