首页> 外文期刊>Frontiers in Neurogenesis >Maturation, Behavioral Activation, and Connectivity of Adult-Born Medium Spiny Neurons in a Striatal Song Nucleus
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Maturation, Behavioral Activation, and Connectivity of Adult-Born Medium Spiny Neurons in a Striatal Song Nucleus

机译:纹状体歌核中成人出生的中型多刺神经元的成熟,行为激活和连接。

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Neurogenesis continues in the adult songbird brain. Many telencephalic song control regions incorporate new neurons into their existing circuits in adulthood. One song nucleus that receives many new neurons is Area X. Because this striatal region is crucial for song learning and song maintenance the recruitment of new neurons into Area X could influence these processes. As an entry point into addressing this possibility, we investigated the maturation and connectivity within the song circuit and behavioral activation of newly generated Area X neurons. Using BrdU birth dating and virally mediated GFP expression we followed adult-generated neurons from their place of birth in the ventricle to their place of incorporation into Area X. We show that newborn neurons receive glutamatergic input from pallial/cortical song nuclei. Additionally, backfills revealed that the new neurons connect to pallidal-like projection neurons that innervate the thalamus. Using in situ hybridization, we found that new neurons express the mRNA for D1- and D2-type dopamine receptors. Employing DARPP-32 (dopamine and cAMP-regulated phosphoprotein of 32kDa) and EGR-1 (early growth response protein 1) as markers for neural maturation and activation, we established that at 42 days after labelling approximately 80% of new neurons were mature medium spiny neurons (MSNs) and could be activated by singing behavior. Finally, we compared the MSN density in Area X of birds up to seven years of age and found a significant increase with age, indicating that new neurons are constantly added to the nucleus. In summary, we provide evidence that newborn MSNs in Area X constantly functionally integrate into the circuit and are thus likely to play a role in the maintenance and regulation of adult song.
机译:神经发生继续在成年鸣鸟的大脑中。成年后,许多脑神经歌曲控制区域将新的神经元整合到它们现有的回路中。 X区域是一个接收许多新神经元的歌曲核。由于该纹状体区域对于歌曲学习和歌曲维护至关重要,因此将新的神经元募集到X区域可能会影响这些过程。作为解决此可能性的切入点,我们研究了歌曲电路内的成熟度和连通性以及新生成的Area X神经元的行为激活。使用BrdU出生日期和病毒介导的GFP表达,我们跟踪了成人生成的神经元,从它们在脑室的出生地到它们掺入X区域的位置。我们显示,新生神经元从睑板/皮层歌核接受谷氨酸能输入。此外,回填显示新神经元连接到支配丘脑的苍白样投射神经元。使用原位杂交,我们发现新的神经元表达D1和D2型多巴胺受体的mRNA。利用DARPP-32(多巴胺和cAMP调节的32kDa磷蛋白)和EGR-1(早期生长反应蛋白1)作为神经成熟和激活的标志物,我们确定在标记后42天,大约80%的新神经元是成熟培养基多刺神经元(MSNs),可以通过唱歌行为来激活。最后,我们比较了7岁以下鸟类X区域的MSN密度,发现其随年龄增长显着增加,表明新的神经元不断地添加到细胞核中。总之,我们提供的证据表明,X区域中的新生MSN不断地在功能上集成到电路中,因此可能在维护和调节成人歌曲中发挥作用。

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