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首页> 外文期刊>Developmental Neuroscience >The Subventricular Zone in the Immature Piglet Brain: Anatomy and Exodus of Neuroblasts into White Matter after Traumatic Brain Injury
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The Subventricular Zone in the Immature Piglet Brain: Anatomy and Exodus of Neuroblasts into White Matter after Traumatic Brain Injury

机译:仔猪未成熟脑室下区域:颅脑外伤后神经母细胞的解剖结构和流出物变成白色物质

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摘要

Stimulation of postnatal neurogenesis in the subventricular zone (SVZ) and robust migration of neuroblasts to the lesion site in response to traumatic brain injury (TBI) is well established in rodent species; however, it is not yet known whether postnatal neurogenesis plays a role in repair after TBI in gyrencephalic species. Here we describe the anatomy of the SVZ in the piglet for the first time and initiate an investigation into the effect of TBI on the SVZ architecture and the number of neuroblasts in the white matter. Among all ages of immaturity examined the SVZ contained a dense mesh network of neurogenic precursor cells (doublecortin+) positioned directly adjacent to the ependymal cells (ventricular SVZ, Vsvz) and neuroblasts organized into chains that were distinct from the Vsvz (abventricular SVZ, Asvz). Though the architecture of the SVZ was similar among ages, the areas of Vsvz and Asvz neuroblast chains declined with age. At postnatal day (PND) 14 the white matter tracts have a tremendous number of individual neuroblasts. In our scaled corticalimpact model, lesion size increased with age. Similarly, the response of the SVZ to injury was also age dependent. The younger age groups that sustained the proportionately smallest lesions had the largest SVZ areas, which further increased in response to injury. In piglets that were injured at 4 months of age and had the largest lesions, the SVZ did not increase in response to injury. Similar to humans, swine have abundant gyri and gyral white matter, providing a unique platform to study neuroblasts potentially migrating from the SVZ to the lesioned cortex along these white matter tracts. In piglets injured at PND 7, TBI did not increase the total number of neuroblasts in the white matter compared to uninjured piglets, but redistribution occurred with a greater number of neuroblasts in the white matter of the hemisphere ipsilateral to the injury compared to the contralateral hemisphere. At 7 days after injury, less than 1% of neuroblasts in the white matter were born in the 2 days following injury. These data show that the SVZ in the piglet shares many anatomical similarities with the SVZ in the human infant, and that TBI had only modest effects on the SVZ and the number of neuroblasts in the white matter. Piglets at an equivalent developmental stage to human infants were equipped with the largest SVZ and a tremendous number of neuroblasts in the white matter, which may be sufficient in lesion repair without the dramatic stimulation of neurogenic machinery. It has yet to be determined whether neurogenesis and migrating neuroblasts play a role in repair after TBI and/or whether an alteration of normal migration during active postnatal population of brain regions is beneficial in species with gyrencephalic brains. (C) 2015 S. Karger AG, Basel
机译:在啮齿类动物中,已经确定了刺激脑室下区域(SVZ)的产后神经发生和响应于创伤性脑损伤(TBI)的成神经细胞向病变部位的强劲迁移。然而,目前尚不清楚出生后的神经发生是否在脑外物种的TBI修复后发挥作用。在这里,我们首次描述了仔猪中SVZ的解剖结构,并开始研究TBI对SVZ结构的影响以及白质中成神经细胞的数量。在所有不成熟的年龄段中,SVZ包含紧密排列的神经源性前体细胞(doublecortin +)的网状网络,该神经元前体细胞直接与室管膜细胞(室性SVZ,Vsvz)相邻,成神经细胞排列成与Vsvz不同的链(室性SVZ,Asvz) 。尽管不同年龄段的SVZ架构相似,但Vsvz和Asvz神经母细胞链的面积随着年龄的增长而下降。出生后第14天(PND),白质区有大量单个成神经细胞。在我们按比例缩放的皮层影响模型中,病变​​大小随年龄增长而增加。同样,SVZ对损伤的反应也与年龄有关。病变比例最小的年轻年龄组的SVZ面积最大,对损伤的反应进一步增加。在4个月大时受伤并具有最大损伤的仔猪中,SVZ不会因受伤而增加。与人类相似,猪具有丰富的回旋和回旋白质,为研究可能沿着这些白质从SVZ迁移到病变皮层的成神经细胞提供了独特的平台。在PND 7受伤的仔猪中,与未受伤的仔猪相比,TBI不会增加白质中神经母细胞的总数,但是与对侧半球相比,与损伤相同的半球白质中有更多的神经母细胞发生重新分布。受伤后第7天,受伤后第2天出生的白质神经母细胞少于1%。这些数据表明,仔猪中的SVZ与人类婴儿中的SVZ具有许多解剖上的相似性,并且TBI对SVZ和白质中成神经细胞的数量仅具有适度的影响。在与人类婴儿相当的发育阶段的仔猪配备了最大的SVZ和大量的白质成神经细胞,这可能足以在不明显刺激神经发生机制的情况下修复病变。尚待确定神经发生和迁移的神经母细胞是否在TBI后的修复中发挥作用和/或活跃的产后大脑区域人口活动期间正常迁移的改变是否对具有回旋脑的物种有益。 (C)2015 S.Karger AG,巴塞尔

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