ATP-sensitive K+ channels are involved in the mediation of intrathecal norepinephrine- or morphine-induced antinociception at the spinal level:: A study using EMG planimetry of flexor reflex in rats

被引:16
作者
Kang, YM
Zhang, ZH
Yang, SW
Qiao, JT
Dafny, N
机构
[1] Univ Texas, Sch Med, Dept Neurobiol & Anat, Houston, TX 77225 USA
[2] Shanxi Med Coll, Dept Neurobiol, Taiyuan, Shanxi, Peoples R China
基金
中国国家自然科学基金;
关键词
intrathecal; nociceptive flexor reflex; glibenclamide; norepinephrine; morphine; 5 '-N-ethylcarboxamide adenosine; serotonin; naloxone;
D O I
10.1016/S0361-9230(97)00345-6
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The effects of intrathecally (IT) administered glibenclamide (Gli), an ATP-sensitive K+ (K-ATP) channel blocker, on the antinociception produced by IT norepinephrine (NE), serotonin (5-HT), morphine (Mor), or adenosine agonist, 5'-N-ethylcarboxamide adenosine (NECA) were investigated using integrated EMG measurement of hindlimb flexor reflex (FR) in lightly pentobarbital-anesthetized rats. The results showed that: 1) NE (3, 6, or 12 nmol) or 5-HT (60, 120, or 240 nmol) each produced a dose-dependent suppression of FR EMG, respectively; 2) pretreatment with Gli (5, 10, or 20 nmol) antagonized the NE (6 nmol)-induced antinociception in a dose-dependent manner and failed to modulate the 5-HT (120 nmol)-induced suppression of FR EMG; 3) pretreatment with Gli (5, 10, or 20 nmol) also antagonize the Mor (2 nmol)-induced suppression of FR EMG in a dose-dependent manner; 4) pretreatment with naloxone (Nal, 60, 120, or 240 nmol) also antagonize the NE (6 nmol)-induced suppression of FR EMG in a dose-dependent manner; and 5) NECA (0.5, 1.0, or 2.0 nmol) produced a dose-dependent suppression of FR EMG, while pretreatment with Gli (5, 10, or 20 nmol) failed to modulate the NECA (1.0 nmol)-induced suppression of FR EMG. The results show that (a) ATP-sensitive K+ channels are involved in the NE-and Mor-induced antinociception but not 5-HT- or NECA-induced antinociception at the spinal level; (b) endogenous opioids might act as a successor of NE and then activate K-ATP channels to producing the antinociception. (C) 1998 Elsevier Science Inc.
引用
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页码:269 / 273
页数:5
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