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斑胸草雀鸣唱系统中脑源性神经营养因子和波形蛋白的性别与年龄差异:与新生细胞的关系

Sex and age differences in brain-derived neurotrophic factor and vimentin in the zebra finch song system: Relationships to newly generated cells.

作者信息

Tang Yu Ping, Wade Juli

机构信息

Department of Psychology, Michigan State University, East Lansing, Michigan, 48824.

Neuroscience Program, Michigan State University, East Lansing, Michigan, 48824.

出版信息

J Comp Neurol. 2016 Apr 1;524(5):1081-96. doi: 10.1002/cne.23893. Epub 2015 Oct 15.

Abstract

The neural song circuit is enhanced in male compared with female zebra finches due to differential rates of incorporation and survival of cells between the sexes. Two double-label immunohistochemical experiments were conducted to increase the understanding of relationships between newly generated cells (marked with bromodeoxyuridine [BrdU]) and those expressing brain-derived neurotrophic factor (BDNF) and vimentin, a marker for radial glia. The song systems of males and females were investigated at posthatching day 25 during a heightened period of sexual differentiation (following BrdU injections on days 6-10) and in adulthood (following a parallel injection paradigm). In both HVC (proper name) and the robust nucleus of the arcopallium (RA), about half of the BrdU-positive cells expressed BDNF across sexes and ages. Less than 10% of the BDNF-positive cells expressed BrdU, but this percentage was greater in juveniles than adults. Across both brain regions, more BDNF-positive cells were detected in males compared with females. In RA, the number of these cells was also greater in juveniles than adults. In HVC, the average cross-sectional area covered by the vimentin labeling was greater in males than females and in juveniles compared with adults. In RA, more vimentin was detected in juveniles than adults, and within adults it was greater in females. In juveniles only, BrdU-positive cells appeared in contact with vimentin-labeled fibers in HVC, RA, and Area X. Collectively, the results are consistent with roles of BDNF- and vimentin-labeled cells influencing sexually differentiated plasticity of the song circuit.

摘要

由于两性之间细胞整合和存活的速率不同,雄性斑胸草雀的神经鸣唱回路比雌性更强。进行了两项双重标记免疫组织化学实验,以加深对新生成细胞(用溴脱氧尿苷[BrdU]标记)与那些表达脑源性神经营养因子(BDNF)和波形蛋白(放射状胶质细胞的标志物)的细胞之间关系的理解。在孵化后第25天的性分化增强期(在第6 - 10天注射BrdU后)和成年期(采用平行注射模式后),对雄性和雌性的鸣唱系统进行了研究。在HVC(专有名称)和弓状皮质粗壮核(RA)中,无论性别和年龄,约一半的BrdU阳性细胞表达BDNF。不到10%的BDNF阳性细胞表达BrdU,但这一比例在幼鸟中高于成年鸟。在这两个脑区中,雄性比雌性检测到更多的BDNF阳性细胞。在RA中,这些细胞的数量在幼鸟中也多于成年鸟。在HVC中,波形蛋白标记覆盖的平均横截面积在雄性中比雌性大,在幼鸟中比成年鸟大。在RA中,幼鸟比成年鸟检测到更多的波形蛋白,在成年鸟中雌性的波形蛋白更多。仅在幼鸟中,BrdU阳性细胞出现在与HVC、RA和X区中波形蛋白标记的纤维接触的位置。总体而言,这些结果与BDNF和波形蛋白标记的细胞影响鸣唱回路性分化可塑性的作用一致。

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