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Neonatal anesthesia exposure impacts brain microRNAs and their associated neurodevelopmental processes

机译:新生儿麻醉暴露会影响大脑microRNA及其相关的神经发育过程

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摘要

MicroRNAs (miRNAs), when subjected to environmental stimuli, can exhibit differential expression. As critical regulators of gene expression, differential miRNA expression has been implicated in numerous disorders of the nervous system. In this study, we focused on the effect of a general anesthetic, as an environmental stimulus, on miRNA expression of the developing brain. General anesthetics have potential long-lasting neurotoxic effects on the developing brain, resulting in behavioral changes in adulthood. We first carried out an unbiased profiling approach to examine the effect of single-episode neonatal general anesthetic, sevoflurance (sevo), exposure on miRNA expression of the brain. Neonatal sevo has a significant effect on the expression of specific miRNAs of the whole brain and the hippocampus that is both immediate – directly after neonatal treatment, as well as long-lasting - during adulthood. Functionally, neonatal sevo-associated miRNA gene-targets share potential neurodevelopmental pathways related to axon guidance, DNA transcription, protein phosphorylation and nervous system development. Our understanding on the role of miRNAs provides a putative epigenetic/molecular bridge that links neonatal general anesthetic’s effect with its associated functional change.
机译:MicroRNA(miRNA)在受到环境刺激后会表现出差异表达。作为基因表达的关键调节剂,miRNA的差异表达已牵涉到许多神经系统疾病中。在这项研究中,我们专注于作为环境刺激的全身麻醉药对发育中的大脑miRNA表达的影响。全身麻醉药对发育中的大脑具有潜在的长期神经毒性作用,导致成年期行为改变。我们首先进行了无偏倚的分析方法,以检查单次发作的全麻全身麻醉,七氟醚(sevo),暴露对大脑miRNA表达的影响。新生儿sevo对整个大脑和海马的特定miRNA的表达具有显著作用,这种表达在成年后即刻即刻即刻即成年后即持久。在功能上,新生儿与sevo相关的miRNA基因靶标具有与轴突引导,DNA转录,蛋白磷酸化和神经系统发育有关的潜在神经发育途径。我们对miRNA的作用的理解提供了一个推定的表观遗传学/分子桥梁,将新生儿全身麻醉药的作用与其相关的功能改变联系在一起。

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