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首页> 外文期刊>The European Journal of Neuroscience >Post-pubertal emergence of a dopamine phenotype in netrin-1 receptor-deficient mice.
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Post-pubertal emergence of a dopamine phenotype in netrin-1 receptor-deficient mice.

机译:netrin-1受体缺陷型小鼠青春期后出现多巴胺表型。

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During the pubertal period the mesocortical dopamine (DA) system undergoes substantial reorganization of neuronal connectivity and functional refinement. Netrins are guidance cues involved in the organization of neuronal circuitry. We have previously shown that adult mice that develop with reduced levels of the netrin-1 receptor [deleted in colorectal cancer (DCC)] display selective reorganization of mesocortical DA circuitry, show enhanced mesocortical DA function and exhibit a behavioural phenotype opposite to that observed in animal models of schizophrenia. Here we assess whether the dcc behavioural and DA phenotypes are present prior to the maturation of the mesocortical DA system by comparing dcc-heterozygous and wild-type mice at the post-weaning and peri-pubertal periods on various indices of DA function. At both the post-weaning and peri-pubertal ages, but unlike in adulthood, dcc-heterozygous and wild-type mice show no differences in the number of midbrain DA neurones or in tyrosine hydroxylase protein levels in the medial prefrontal cortex. Furthermore, the elevated baseline concentration of mesocortical DA and DA metabolites observed in adult dcc-heterozygous mice is not present in either post-weanling or peri-pubertal mice. Interestingly, post-weanling, but not peri-pubertal, dcc-heterozygous mice show greater baseline concentrations of DA metabolites in the nucleus accumbens, opposite to what was observed in adulthood. Finally, neither post-weanling nor peri-pubertal dcc-heterozygous mice demonstrate the blunted amphetamine-induced locomotor response observed in adulthood. Thus, these findings show that the 'protective' dcc phenotype has a post-pubertal emergence and indicate that DCC may play a role in the normal maturation of the mesocorticolimbic DA system.
机译:在青春期,中皮层多巴胺(DA)系统经历了神经元连通性和功能完善的实质性重组。 Netrins是涉及神经元回路组织的指导线索。我们以前已经证明,netrin-1受体水平降低的成年小鼠[在结肠直肠癌(DCC)中缺失]表现出中皮层DA电路的选择性重组,中皮层DA功能增强,并且表现出与在表皮中观察到的相反的行为表型。精神分裂症的动物模型。在这里,我们通过比较断奶后和青春期前后不同功能的DA功能指标的dcc-杂合小鼠和野生型小鼠,评估中皮层DA系统成熟之前是否存在dcc行为和DA表型。在断奶后和青春期前后,但与成年期不同,dcc-杂合小鼠和野生型小鼠在前额内侧皮层中脑DA神经元的数量或酪氨酸羟化酶蛋白水平没有差异。此外,在成年dcc-杂合小鼠中观察到的中皮质DA和DA代谢产物的基线浓度升高在断奶后或青春期前后的小鼠中均不存在。有趣的是,断奶后但未成熟的dcc杂合子小鼠在伏隔核中显示出较高的DA代谢物基线浓度,这与成年后观察到的相反。最后,断奶后和青春期前后的dcc-杂合子小鼠均未显示出在成年期观察到的钝性苯丙胺诱导的运动反应。因此,这些发现表明,“保护性” dcc表型具有青春期后的出现,并表明DCC可能在中皮层皮质DA系统的正常成熟中起作用。

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