Distribution of Spinal Sensitization Evoked by Inflammatory Pain Using Local Spinal Cord Glucose Utilization Combined with (3) H-Phorbol 12,13-Dibutyrate Binding in Rats.

ISRN Pain Pub Date : 2013-12-26 eCollection Date: 2013-01-01 DOI:10.1155/2013/340167
Yasuda Seiko, Ishikawa Kozo, Matsumoto Yoshihiro, Ariyoshi Toru, Sasaki Hironori, Ida Yuika, Iwanaga Yasutake, Kim Hae-Kyu, Nakanishi Osamu, Ishikawa Toshizo
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Abstract

Aims. Hyperalgesia following tissue injury is induced by plasticity in neurotransmission. Few investigators have considered the ascending input which activates the superficial of spinal cord. The aim was to examine neurotransmission and nociceptive processing in the spinal cord after mustard-oil (MO) injection. Both in vitro and in vivo autoradiographs were employed for neuronal activity and transmission in discrete spinal cord regions using the (14)C-2-deoxyglucose method and (3)H-phorbol 12,13-dibutyrate ((3)H-PDBu) binding sites. Methods. To quantify the hyperalgesia evoked by MO, the flinching was counted for 60 min after MO (20%, 50 μL) injection in Wistar rats. Simultaneous determination of (14)C-2-deoxyglucose and (3)H-PDBu binding was used for a direct observation of neuronal/metabolic changes and intracellular signaling in the spinal cord. Results. MO injection evoked an increase in flinching for 60 min. LSCGU significantly increased in the Rexed I-II with (3)H-PDBu binding in the ipsilateral side of spinal cord. Discussion. We clearly demonstrated that the hyperalgesia is primarily relevant to increased neuronal activation with PKC activation in the Rexed I-II of the spinal cord. In addition, functional changes such as "neuronal plasticity" may result in increased neuronal excitability and a central sensitization.

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大鼠局部脊髓葡萄糖利用联合(3)H-Phorbol 12,13-二丁酸盐结合诱发炎性疼痛的脊髓致敏分布
目标组织损伤后痛觉过敏是由神经传递的可塑性引起的。很少有研究者考虑到上行输入激活脊髓浅表。目的是观察芥菜油(MO)注射后脊髓的神经传递和伤害性加工。采用(14)c -2-脱氧葡萄糖法和(3)H-phorbol 12,13-二丁酸盐((3)H-PDBu)结合位点,体外和体内放射自显像对脊髓离散区域的神经元活动和传递进行了研究。方法。为了量化MO引起的痛觉过敏,我们在Wistar大鼠注射MO (20%, 50 μL) 60 min后,计数MO引起的退缩。同时测定(14)c -2-脱氧葡萄糖和(3)H-PDBu结合,用于直接观察脊髓中神经元/代谢变化和细胞内信号传导。结果。注射MO可引起缩背增加60 min。在同侧脊髓(3)H-PDBu结合的Rexed I-II中LSCGU显著增加。讨论。我们清楚地证明,痛觉过敏主要与脊髓Rexed I-II区PKC激活的神经元激活增加有关。此外,“神经元可塑性”等功能变化可能导致神经元兴奋性增加和中枢敏化。
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