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X 射线局部辐照对鸣禽歌唱产生和感知的神经祖细胞耗竭的影响。

Effects of the depletion of neural progenitors by focal X-ray irradiation on song production and perception in canaries.

机构信息

GIGA Neurosciences, University of Liege, 15 Avenue Hippocrate, 4000, Liège, Belgium.

Cyclotron Research Center, University of Liege, 4000, Liège, Belgium.

出版信息

Sci Rep. 2023 Jun 2;13(1):9010. doi: 10.1038/s41598-023-36089-1.

Abstract

The song control nucleus HVC of songbirds has emerged as a widespread model system to study adult neurogenesis and the factors that modulate the incorporation of new neurons, including seasonal state, sex differences or sex steroid hormone concentrations. However, the specific function of these new neurons born in adulthood remains poorly understood. We implemented a new procedure based on focal X-ray irradiation to deplete neural progenitors in the ventricular zone adjacent to HVC and study the functional consequences. A 23 Gy dose depleted by more than 50 percent the incorporation of BrdU in neural progenitors, a depletion that was confirmed by a significant decrease in doublecortin positive neurons. This depletion of neurogenesis significantly increased the variability of testosterone-induced songs in females and decreased their bandwidth. Expression of the immediate early gene ZENK in secondary auditory areas of the telencephalon that respond to song was also inhibited. These data provide evidence that new neurons in HVC play a role in both song production and perception and that X-ray focal irradiation represents an excellent tool to advance our understanding of adult neurogenesis.

摘要

鸟类的歌唱控制核 HVC 已经成为研究成年神经发生和调节新神经元掺入的因素的广泛模型系统,包括季节性状态、性别差异或性激素浓度。然而,这些成年后产生的新神经元的具体功能仍知之甚少。我们实施了一种基于焦点 X 射线照射的新程序,以耗尽与 HVC 相邻的脑室区的神经前体细胞,并研究其功能后果。23Gy 的剂量使 BrdU 在神经前体细胞中的掺入减少了 50%以上,这一耗竭通过双皮质素阳性神经元的显著减少得到了证实。这种神经发生的耗竭显著增加了雌性激素诱导歌曲的可变性,并降低了它们的带宽。对次级听觉区的即时早期基因 ZENK 的表达也受到抑制,这些区对歌曲有反应。这些数据提供了证据,表明 HVC 中的新神经元在歌曲产生和感知中都发挥作用,而 X 射线焦点照射代表了推进我们对成年神经发生理解的极好工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29db/10238387/7a12ea7306d9/41598_2023_36089_Fig1_HTML.jpg

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