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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Role of the calcium/calmodulin-dependent protein kinase ii (CaMKII) in the morphine-induced pharmacological effects in the mouse.
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Role of the calcium/calmodulin-dependent protein kinase ii (CaMKII) in the morphine-induced pharmacological effects in the mouse.

机译:钙/钙调蛋白依赖性蛋白激酶ii(CaMKII)在吗啡诱导的小鼠药理作用中的作用。

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Calcium/calmodulin-dependent protein kinase II (CaMKII) is a family of multifunctional protein kinases that activates signaling pathways. The present study was designed to ascertain whether CaMKII could play a substantial role in the expression of morphine-induced antinociception, hyperlocomotion and rewarding effect in the mouse. An i.c.v. pretreatment with a CaMKII inhibitor KN-93 failed to affect the antinociception and hyperlocomotion induced by s.c. administration of a prototype micro-opioid receptor agonist morphine. In contrast, the morphine-induced place preference was significantly attenuated by i.c.v. pretreatment with KN-93. The levels of phosphorylated-CaMKII (p-CaMKII) in the limbic forebrain, but not in the frontal cortex and the lower midbrain, were significantly increased in morphine-conditioned mice, whereas the levels of CaMKII in three brain regions obtained from morphine-conditioned mice were not changed. This up-regulation of p-CaMKII in the limbic forebrain obtained from morphine-conditioned mice was significantly inhibited by i.c.v. pretreatment with KN-93. These results provide evidence that the increase in CaMKII activity in the mouse limbic forebrain may contribute to the rewarding effect, but not the antinociception and the hyperlocomotion, induced by morphine.
机译:钙/钙调蛋白依赖性蛋白激酶II(CaMKII)是激活信号通路的多功能蛋白激酶家族。本研究旨在确定CaMKII是否可以在小鼠吗啡诱导的抗伤害感受,运动过度和奖励作用的表达中发挥重要作用。 i.c.v.用CaMKII抑制剂KN-93预处理无法影响s.c.诱导的抗伤害性和运动过度。原型微阿片受体激动剂吗啡的使用。相反,吗啡诱导的位置偏爱被静脉内注射显着减弱。用KN-93进行预处理。吗啡条件化小鼠的边缘前脑中磷酸化CaMKII(p-CaMKII)的水平显着升高,而额叶皮质和中脑下部中的磷酸化CaMKII的水平却显着升高,而吗啡条件化的小鼠的三个脑区中的CaMKII水平小鼠没有改变。 i.c.v.抑制了从吗啡条件化小鼠获得的缘前脑中p-CaMKII的这种上调。用KN-93进行预处理。这些结果提供了证据,表明小鼠边缘前脑中CaMKII活性的增加可能有助于奖励作用,但不是吗啡引起的抗伤害感受和运动过度。

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