SNi公司
伏隔核
神经病理性疼痛
神经损伤
神经科学
慢性疼痛
纹状体
医学
痛觉超敏
多巴胺
麻醉
心理学
痛觉过敏
受体
内科学
化学
伤害
水解
生物化学
酸水解
作者
Pei-Ching Chang,Sarah L. Pollema‐Mays,Maria Virginia Centeno,Daniele Procissi,Massimo Contini,Alex T. Baria,Marco Martina,A. Vania Apkarian
出处
期刊:Pain
[Ovid Technologies (Wolters Kluwer)]
日期:2014-03-07
卷期号:155 (6): 1128-1139
被引量:164
标识
DOI:10.1016/j.pain.2014.02.019
摘要
Despite recent evidence implicating the nucleus accumbens (NAc) as causally involved in the transition to chronic pain in humans, underlying mechanisms of this involvement remain entirely unknown. Here we elucidate mechanisms of NAc reorganizational properties (longitudinally and cross-sectionally), in an animal model of neuropathic pain (spared nerve injury [SNI]). We observed interrelated changes: (1) In resting-state functional magnetic resonance imaging (fMRI), functional connectivity of the NAc to dorsal striatum and cortex was reduced 28days (but not 5days) after SNI; (2) Contralateral to SNI injury, gene expression of NAc dopamine 1A, 2, and κ-opioid receptors decreased 28days after SNI; (3) In SNI (but not sham), covariance of gene expression was upregulated at 5days and settled to a new state at 28days; and (4) NAc functional connectivity correlated with dopamine receptor gene expression and with tactile allodynia. Moreover, interruption of NAc activity (via lidocaine infusion) reversibly alleviated neuropathic pain in SNI animals. Together, these results demonstrate macroscopic (fMRI) and molecular reorganization of NAc and indicate that NAc neuronal activity is necessary for full expression of neuropathic pain-like behavior.
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