化学
坐骨神经
伏隔核
多巴胺能
药理学
兴奋剂
内分泌学
伤害
多巴胺
微透析
内科学
麻醉
受体
医学
生物化学
作者
Hiroki Kawashima,John L. Waddington,Tadashi Saigusa
摘要
ABSTRACT We have shown using isolated C‐fiber‐like neurons that chronic pain may reduce orexinergic neural activity and that the nucleus accumbens, a major terminal area of the mesolimbic dopaminergic system, contains OX 2 ‐receptors, a subtype of orexin receptors that inhibits accumbal basal dopamine efflux. It has been suggested that stimulation of OX 2 receptors in the brain may suppress chronic pain. To investigate how chronic pain affects orexin receptor‐mediated changes in accumbal dopaminergic neural activity, we analyzed the effects of intra‐accumbal infusion of orexin receptor ligands on accumbal dopamine efflux in rats using in vivo microdialysis. To experimentally induce two types of chronic pain, i.e., inflammatory and neuropathic pain, we performed, respectively, intra‐plantar injection of the proinflammatory compound carrageenan into the hind paws and sciatic nerve ligation. Decreased paw withdrawal threshold following carrageenan treatment or sciatic nerve ligation was inhibited by morphine. However, meloxicam, a nonsteroidal anti‐inflammatory drug, inhibited these changes in carrageenan‐treated rats but not in those with sciatic nerve ligation. Neither carrageenan injection nor sciatic nerve ligation altered basal accumbal dopamine efflux. Both in carrageenan‐treated and in sciatic nerve‐ligated rats, the OX 1 ‐ and OX 2 ‐receptor antagonist MK‐4305 and OX 2 ‐receptor antagonist EMPA‐induced increase in accumbal dopamine efflux was reduced, as compared to their respective controls. The OX 2 ‐receptor agonist orexin‐B counteracted the EMPA‐induced increase in dopamine efflux both in carrageenan‐treated and in sciatic nerve‐ligated rats. These results suggest that inflammatory and neuropathic pain each lead to decreased stimulation of accumbal OX 2 ‐receptors by their endogenous agonists, orexin‐A and/or orexin‐B, thereby inhibiting dopamine efflux.
科研通智能强力驱动
Strongly Powered by AbleSci AI