首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >D-amphetamine and L-5-hydroxytryptophan-induced behaviours in mice with genetically-altered expression of the alpha2C-adrenergic receptor subtype.
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D-amphetamine and L-5-hydroxytryptophan-induced behaviours in mice with genetically-altered expression of the alpha2C-adrenergic receptor subtype.

机译:D-苯丙胺和L-5-羟色氨酸在小鼠中的行为具有遗传改变的alpha2C-肾上腺素受体亚型的表达。

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摘要

Three human and mouse genes encoding alpha2-adrenoceptor subtypes (alpha2A, alpha2B, and alpha2C) have been cloned. The alpha2C-adrenoceptor is the most abundant alpha2-adrenoceptor subtype in the striatum and modulates metabolism of both dopamine and serotonin. To investigate the possible involvement of the alpha2C-adrenoceptor subtype in behaviours regulated by dopamine and serotonin, two strains of genetically-engineered mice were examined. One had a targeted inactivation of the alpha2C-adrenoceptor gene, and the other had tissue-specific over-expression of alpha2C-adrenoceptors. The locomotor activity of the mice was evaluated after stimulation with D-amphetamine, and the behavioural serotonin syndrome and head twitches were investigated after L-5-hydroxytryptophan treatment. In addition, the effects of D-amphetamine and L-5-hydroxytryptophan were studied after pretreatment with dexmedetomidine, a subtype-nonselective alpha2-adrenoceptor agonist. The lack of alpha2C-adrenoceptor expression increased and the over-expression of alpha2C-adrenoceptors decreased the response to D-amphetamine stimulation. The effect of alpha2C-adrenoceptor gene inactivation was more prominent in D-amphetamine-treated males than in females. Dexmedetomidine inhibited D-amphetamine-induced hyperlocomotion and the L-5-hydroxytryptophan-induced serotonin syndrome, but the inhibition was attenuated in mice lacking alpha2C-adrenoceptors. However, the head twitches induced by L-5-hydroxytryptophan were effectively inhibited by dexmedetomidine in all studied mice, which suggests that alpha2A-adrenoceptors mediate the inhibition of the head twitch response. The results lend further support to the proposed existence of functionally distinct alpha2-adrenoceptor subtypes that can serve as new and specific therapeutic targets in various neuropsychiatric diseases.
机译:已经克隆了三种编码α2-肾上腺素受体亚型(α2A,α2B和α2C)的人类和小鼠基因。 α2C-肾上腺素受体是纹状体中最丰富的α2-肾上腺素受体亚型,可调节多巴胺和5-羟色胺的代谢。为了研究α2C-肾上腺素能受体亚型可能参与多巴胺和5-羟色胺调节的行为,研究了两种基因工程小鼠。一个具有α2C-肾上腺素受体基因的靶向失活,另一个具有α2C-肾上腺素受体的组织特异性过表达。在用D-苯异丙胺刺激后评估小鼠的运动能力,并在L-5-羟色氨酸处理后研究行为5-羟色胺综合征和头部抽搐。此外,在用右美托咪定(一种亚型非选择性α2-肾上腺素受体激动剂)预处理后,研究了D-苯丙胺和L-5-羟基色氨酸的作用。缺少α2C肾上腺素受体表达增加,并且过表达的α2C肾上腺素受体减少了对D-苯异丙胺刺激的反应。经D-苯异丙胺治疗的男性中,α2C-肾上腺素受体基因失活的影响比女性更为突出。右美托咪定抑制D-苯丙胺诱导的运动过度和L-5-羟色氨酸诱导的5-羟色胺综合征,但在缺乏α2C-肾上腺素受体的小鼠中抑制作用减弱。然而,在所有研究的小鼠中,右旋美托咪定可有效抑制L-5-羟基色氨酸诱导的头部抽搐,这表明α2A-肾上腺素能受体介导了对头部抽搐反应的抑制。结果进一步支持了功能上不同的α2-肾上腺素受体亚型的拟议存在,这些亚型可以作为各种神经精神疾病中的新的特异性治疗靶标。

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