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Disrupted synaptic development in the hypoxic newborn brain

机译:新生儿缺氧性脑中突触发育受阻

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Infants born prematurely risk significant life-long cognitive disability, representing a major pediatric health crisis. The neuro-pathology of this cohort is accurately modeled in mice subjected to sublethal postnatal hypoxia. Massively parallel transcriptome analysis using cDNA microchips (9,262 genes), combined with immuno-histochemical and protein assays, reveals that sublethal hypoxia accentuates genes subserving presynaptic function, and it suppresses genes involved with synaptic maturation, postsynaptic function, and neurotransmission. Other significantly affected pathways include those involved with glial maturation, vasculogenesis, and components of the cortical and microtubular cytoskeleton. These patterns reveal a global dysynchrony in the maturation programs of the hypoxic developing brain, and offer insights into the vulnerabilities of processes that guide early postnatal cerebral maturation.
机译:过早出生的婴儿面临重大的终生认知残疾风险,这代表着重大的儿科健康危机。该队列的神经病理学在遭受亚致死性产后缺氧的小鼠中被精确建模。使用cDNA微芯片(9,262个基因)进行大规模平行转录组分析,并结合免疫组织化学和蛋白质分析,发现亚致死性缺氧会加重具有突触前功能的基因,并抑制与突触成熟,突触后功能和神经传递有关的基因。其他明显受影响的途径包括与神经胶质成熟,血管生成以及皮质和微管细胞骨架成分有关的途径。这些模式揭示了缺氧性大脑发育成熟过程中的整体不同步,并为指导早期产后大脑成熟的过程的脆弱性提供了见识。

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