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Cognitive impairment and transcriptomic profile in hippocampus of young mice after multiple neonatal exposures to sevoflurane

机译:新生婴儿多次接触七氟醚后幼鼠海马的认知障碍和转录组谱

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摘要

Children with repeated inhalational anesthesia may develop cognitive disorders. This study aimed to investigate the transcriptome-wide response of hippocampus in young mice that had been exposed to multiple sevoflurane in the neonatal period. Mice received 3% sevoflurane for 2 h on postnatal day (PND) 6, 8, and 10, followed by arterial blood gas test on PND 10, behavioral experiments on PND 31–36, and RNA sequencing (RNA-seq) of hippocampus on PND 37. Functional annotation and protein-protein interaction analyses of differentially expressed genes (DEGs) and quantitative reverse transcription polymerase chain reaction (qPCR) were performed. Neonatal sevoflurane exposures induced cognitive and social behavior disorders in young mice. RNA-seq identified a total of 314 DEGs. Several enriched biological processes (ion channels, brain development, learning, and memory) and signaling pathways (oxytocin signaling pathway and glutamatergic, cholinergic, and GABAergic synapses) were highlighted. As hub-proteins, Pten was involved in nervous system development, synapse assembly, learning, memory, and behaviors, Nos3 and Pik3cd in oxytocin signaling pathway, and Cdk16 in exocytosis and phosphorylation. Some top DEGs were validated by qPCR. This study revealed a transcriptome-wide profile in mice hippocampus after multiple neonatal exposures to sevoflurane, promoting better understanding of underlying mechanisms and investigation of preventive strategies.
机译:反复吸入麻醉的儿童可能会出现认知障碍。这项研究的目的是调查在新生儿期暴露于多种七氟醚的年幼小鼠海马全转录组反应。小鼠在出生后第6天,第8天和第10天接受3%的七氟醚2小时,然后在PND 10上进行动脉血气测试,在PND 31-36上进行行为实验,并在30 d进行海马RNA测序(RNA-seq)。 PND 37.对差异表达基因(DEG)和定量逆转录聚合酶链反应(qPCR)进行了功能注释和蛋白-蛋白质相互作用分析。新生儿七氟醚暴露可引起年幼小鼠的认知和社交行为异常。 RNA-seq共鉴定出314个DEG。突出了几个丰富的生物过程(离子通道,大脑发育,学习和记忆)和信号传导途径(催产素信号传导途径以及谷氨酸能,胆碱能和GABA能突触)。作为中枢蛋白,Pten参与神经系统发育,突触组装,学习,记忆和行为,催产素信号传导途径涉及Nos3和Pik3cd,胞吐作用和磷酸化涉及Cdk16。通过qPCR验证了一些顶级DEG。这项研究揭示了在新生儿多次暴露于七氟醚后海马的转录组范围内的概况,促进了对潜在机制的更好理解和预防策略的研究。

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