首页> 外文期刊>Neurology Research International >Regional Differences in Susceptibility to Hypoxic-Ischemic Injury in the Preterm Brain: Exploring the Spectrum from White Matter Loss to Selective Grey Matter Injury in a Rat Model
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Regional Differences in Susceptibility to Hypoxic-Ischemic Injury in the Preterm Brain: Exploring the Spectrum from White Matter Loss to Selective Grey Matter Injury in a Rat Model

机译:早产儿缺氧缺血性损伤易感性的区域差异:探索大鼠模型中从白质丢失到选择性灰质损伤的光谱

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Models of premature brain injury have largely focused on the white matter injury thought to underlie periventricular leukomalacia (PVL). However, with increased survival of very low birth weight infants, injury patterns involving grey matter are now recognized. We aimed to determine how grey matter lesions relate to hypoxic-ischemic- (HI) mediated white matter injury by modifying our rat model of PVL. Following HI, microglial infiltration, astrocytosis, and neuronal and axonal degeneration increased in a region-specific manner dependent on the severity of myelin loss in pericallosal white matter. The spectrum of injury ranged from mild, where diffuse white matter abnormalities were dominant and were associated with mild axonal injury and local microglial activation, to severe HI injury characterized by focal MBP loss, widespread neuronal degeneration, axonal damage, and gliosis throughout the neocortex, caudate putamen, and thalamus. In sum, selective regional white matter loss occurs in the preterm rat concomitantly with a clinically relevant spectrum of grey matter injury. These data demonstrate an interspecies similarity of brain injury patterns and further substantiates the reliable use of this model for the study of preterm brain injury.
机译:早发性脑损伤的模型主要集中在被认为是脑室白细胞软化症(PVL)基础的白质损伤上。但是,随着极低出生体重婴儿的存活率提高,现在已经认识到涉及灰质的伤害方式。我们旨在通过修改我们的大鼠PVL模型来确定灰质损伤与缺氧缺血性(HI)介导的白质损伤之间的关系。 HI后,小胶质细胞浸润,星形胶质细胞增多以及神经元和轴突变性以区域特异性方式增加,这取决于黄斑白质中髓磷脂丢失的严重程度。损伤范围从轻度(弥漫性白质异常占主导,并伴有轻度轴突损伤和局部小胶质细胞活化)到重度HI损伤,其特征在于局灶性MBP丢失,广泛的神经元变性,轴突损伤和整个新皮层的神经胶质化,尾状壳和丘脑。总而言之,早产大鼠发生选择性区域性白质损失,并伴有临床相关的灰质损伤谱。这些数据证明了脑损伤模式的种间相似性,并进一步证实了该模型在早产脑损伤研究中的可靠应用。

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