Institute of Medical Research, Northwestern Polytechnical University, Xi'an, 710072, Shaanxi, China.
Department of Human Anatomy, Histology and Embryology & K.K. Leung Brain Research Centre, The Fourth Military Medical University, No. 169 Changle West Road, Xi'an, 710032, China.
Mol Brain. 2023 Feb 7;16(1):21. doi: 10.1186/s13041-023-00998-z.
Electromagnetic pulse (EMP), a unique type of electromagnetic radiation, may induce diverse neuropsychiatric disorders, such as irritability, hyperkinesis, retardation of learning and memory. However, the underlying mechanism of EMP exposure on neuronal injury has not been elucidated. Here, we aimed to delineate the regulatory expression networks based on high-throughput sequencing data to explore the possible molecular mechanisms related to EMP-induced delirium-like neuropsychiatric disorder in rats. It's shown that EMP exposure induced anxiety, cognitive decline and short-term memory impairment. The expression profiles of the long noncoding RNAs (lncRNAs) and mRNAs, along with their biological function and regulatory network, were explored in rats after EMP exposure. We identified 41 differentially expressed lncRNAs (DELs) and 266 differentially expressed mRNAs (DEMs) between EMP and sham groups. Sixty-one co-expression relationships between 18 DELs and 56 DEMs were mostly associated with synapse- and metabolic-related pathways. We predicted 51 DEL-miRNA pairs and 290 miRNA-mRNA pairs using the miRanda database to constructed a DEL-miRNA-DEM network. LncRNA AABR07042999.1 and mRNA Tph2, Slc6a4, Dbh and Th were upregulated, and the contents of serotonin, dopamine and norepinephrine were increased in both PFC and HIP after EMP exposure. The current study provided a better understanding of the ceRNA network, which might reveal the pathological mechanism and provide more treatment options for the EMP-induced neurobehavioral disorder.
电磁脉冲(EMP)是一种独特的电磁辐射类型,可能会引起多种神经精神疾病,如易怒、多动、学习和记忆延迟。然而,EMP 暴露对神经元损伤的潜在机制尚未阐明。在这里,我们旨在基于高通量测序数据描绘调控表达网络,以探索与 EMP 诱导的大鼠类似谵妄的神经精神障碍相关的可能分子机制。结果表明,EMP 暴露可引起焦虑、认知能力下降和短期记忆障碍。在 EMP 暴露后,我们探讨了大鼠中长链非编码 RNA(lncRNA)和 mRNA 的表达谱及其生物学功能和调控网络。我们在 EMP 和假处理组之间鉴定出 41 个差异表达的 lncRNA(DEL)和 266 个差异表达的 mRNA(DEM)。18 个 DEL 和 56 个 DEM 之间存在 61 个共表达关系,这些关系主要与突触和代谢相关途径有关。我们使用 miRanda 数据库预测了 51 个 DEL-miRNA 对和 290 个 miRNA-mRNA 对,构建了一个 DEL-miRNA-DEM 网络。在 EMP 暴露后,PFC 和 HIP 中的 lncRNA AABR07042999.1 和 mRNA Tph2、Slc6a4、Dbh 和 Th 上调,5-羟色胺、多巴胺和去甲肾上腺素的含量增加。本研究提供了对 ceRNA 网络的更好理解,这可能揭示了病理机制,并为 EMP 诱导的神经行为障碍提供了更多的治疗选择。