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脑内胆囊收缩素水平降低的大鼠对外周电刺激诱导的镇痛反应增强。

Rats with decreased brain cholecystokinin levels show increased responsiveness to peripheral electrical stimulation-induced analgesia.

作者信息

Zhang L X, Li X L, Wang L, Han J S

机构信息

Neuroscience Research Center, Beijing Medical University, People's Republic of China.

出版信息

Brain Res. 1997 Jan 16;745(1-2):158-64. doi: 10.1016/s0006-8993(96)01095-5.

Abstract

Using the P77PMC strain of rat, which is genetically prone to audiogenic seizures, and also has decreased levels of cholecystokinin (CCK), we examined the analgesic response to peripheral electrical stimulation, which is, in part, opiate-mediated. A number of studies have suggested that CCK may function as an antagonist to endogenous opiate effects. Therefore, we hypothesized that the P77PMC animals would show an enhanced analgesic response based on their decreased CCK levels producing a diminished endogenous opiate antagonism. We found that the analgesic effect on tail flick latency produced by 100 Hz peripheral electrical stimulation was more potent and longer lasting in P77PMC rats than in control rats. Moreover, the potency of the stimulation-produced analgesia correlated with the vulnerability to audiogenic seizures in these rats. We were able to block the peripheral electrical stimulation-induced analgesia (PSIA) using a cholecystokinin octapeptide (CCK-8) administered parenterally. Radioimmunoassay showed that the content of CCK-8 in cerebral cortex, hippocampus and periaqueductal gray was much lower in P77PMC rat than in controls. These results suggest that low CCK-8 content in the central nervous system of the P77PMC rats may be related to the high analgesic response to peripheral electrical stimulation, and further support the notion that CCK may be endogenous opiate antagonist.

摘要

利用遗传性易患听源性癫痫且胆囊收缩素(CCK)水平降低的P77PMC品系大鼠,我们研究了对部分由阿片介导的外周电刺激的镇痛反应。多项研究表明,CCK可能作为内源性阿片作用的拮抗剂。因此,我们推测P77PMC动物会因其CCK水平降低导致内源性阿片拮抗作用减弱而表现出增强的镇痛反应。我们发现,100Hz外周电刺激对甩尾潜伏期产生的镇痛作用在P77PMC大鼠中比对照大鼠更强且持续时间更长。此外,刺激产生的镇痛效力与这些大鼠对听源性癫痫的易感性相关。我们能够通过肠胃外给予胆囊收缩素八肽(CCK-8)来阻断外周电刺激诱导的镇痛(PSIA)。放射免疫分析表明,P77PMC大鼠大脑皮层、海马和导水管周围灰质中的CCK-8含量远低于对照大鼠。这些结果表明,P77PMC大鼠中枢神经系统中低CCK-8含量可能与对外周电刺激的高镇痛反应有关,并进一步支持CCK可能是内源性阿片拮抗剂这一观点。

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