Postnatal plasticity in the olfactory system of the juvenile swine brain.

IF 2.9 3区 医学 Q1 ANATOMY & MORPHOLOGY
Júlia Freixes, Fatma ElZahraa S Abdel-Rahman, Roberto Nebbia, Loreta Medina, Ester Desfilis
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Abstract

Swine have an excellent sense of smell and highly complex olfactory brain structures, which play a crucial role in their complex social interactions. In other mammals the olfactory system is known to exhibit significant plasticity, even during adulthood. The aim of this study was to investigate postnatal plasticity in olfactory areas of juvenile swine brains by studying immature cells immunoreactive for the microtubule-associated protein doublecortin (DCX). Using immunofluorescence, we studied DCX coexpression with the cell proliferation marker Ki-67, and different neuronal markers. Our results show the existence of numerous DCX + cells throughout the olfactory pallial areas. In some of them, we found DCX+/Ki-67 + coexpressing cells, suggesting that they were proliferating. Some of these proliferating cells were grouped in tangentially-oriented migratory-like chains, forming the rostral migratory stream to anterior olfactory area and olfactory bulb. Moreover, chains of DCX + cells were found in the external capsule and white matter adjacent to the temporal horn of the ventricle. Chains of DCX + cells were observed crossing the internal layers of the piriform and entorhinal cortices. In layer II of these cortices, DCX + cells of varying maturity degrees and neuronal phenotypes (including NeuN expression) were present. This suggests the existence of multiple migratory streams along the anteroposterior axis. Most DCX + immature cells in the migratory chains and in the anterior olfactory area, piriform and entorhinal cortices expressed the transcription factor Brn2 (Pou3f2), suggesting the incorporation of new glutamatergic neurons in these areas. Together, these results highlight the interest of swine to study the role of postnatal brain plasticity and their potential for regeneration in large, gyrencephalic brains.

幼猪脑嗅觉系统的产后可塑性。
猪有极好的嗅觉和高度复杂的嗅觉大脑结构,这在它们复杂的社会互动中起着至关重要的作用。在其他哺乳动物中,即使在成年期,嗅觉系统也表现出显著的可塑性。本研究的目的是通过研究未成熟细胞对微管相关蛋白双皮质素(DCX)的免疫反应来研究幼年猪大脑嗅觉区出生后的可塑性。利用免疫荧光技术,我们研究了DCX与细胞增殖标志物Ki-67及不同神经元标志物的共表达。我们的结果显示存在大量的DCX +细胞遍布嗅苍白区。在其中一些细胞中,我们发现DCX+/Ki-67 +共表达细胞,表明它们正在增殖。部分增殖细胞呈切向迁移链,形成吻侧迁移流至前嗅区和嗅球。此外,在脑室颞角附近的外囊和白质中发现DCX +细胞链。在梨状皮质和内嗅皮质的内层上观察到DCX +细胞链。在这些皮层的第二层,存在不同成熟程度的DCX +细胞和神经元表型(包括NeuN表达)。这表明沿前后轴存在多条迁移流。迁移链和前嗅区、梨状皮质和内嗅皮质的DCX +未成熟细胞中,大多数表达转录因子Brn2 (Pou3f2),提示这些区域存在新的谷氨酸能神经元。总之,这些结果突出了猪对研究出生后大脑可塑性的作用及其在大脑回中再生的潜力的兴趣。
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来源期刊
Brain Structure & Function
Brain Structure & Function 医学-解剖学与形态学
CiteScore
6.00
自引率
6.50%
发文量
168
审稿时长
8 months
期刊介绍: Brain Structure & Function publishes research that provides insight into brain structure−function relationships. Studies published here integrate data spanning from molecular, cellular, developmental, and systems architecture to the neuroanatomy of behavior and cognitive functions. Manuscripts with focus on the spinal cord or the peripheral nervous system are not accepted for publication. Manuscripts with focus on diseases, animal models of diseases, or disease-related mechanisms are only considered for publication, if the findings provide novel insight into the organization and mechanisms of normal brain structure and function.
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