小鼠脑损伤后细胞外小泡微小RNA表达谱的改变

Ye Tian, Ruiting Zhao, Xiaochun Li, Junke Zhou, Daqiang Zhan, Yuanzhi Wang, Yifan He, Jiacheng Zhang, Hengjie Yuan
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摘要

创伤性脑损伤(TBI)是全球死亡和发病率的主要原因之一。可用于诊断和治疗的工具有限。细胞外小泡(sEV)微小RNA(miRNA)在TBI疾病进展中起着重要作用。本研究旨在研究TBI后小鼠脑细胞外空间sEV miRNA表达的变化。将24只C57BL/6J小鼠随机分为两组(12/组)。TBI组接受了所有的外科手术和液体撞击损伤(FPI)。假手术组只接受了手术。在TBI/sham后3小时采集脑标本。分离大脑sEV。鉴定了差异表达的miRNA。TBI后共观察到50个miRNA差异表达(倍数变化≥1.5,P<0.05),其中5个上调,45个下调。主要富集的基因本体论术语是代谢过程、细胞、细胞内、细胞器、细胞质、轴突、结合、蛋白激酶活性、蛋白结合和蛋白二聚化活性。KEGG通路分析预测,TBI后sEV中miRNA变化影响的通路包括Wnt信号通路和NF-κB信号通路。qRT-PCR证实了5种miRNA的变化。总之,本研究证明了TBI后大脑sEV中一系列miRNA的差异表达,这可能与TBI后的生理和病理过程有关。这些发现也可能为进一步研究TBI的分子机制和潜在的治疗干预措施提供新的靶点。
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Alterations of microRNAs expression profiles in small extracellular vesicle after traumatic brain injury in mice
Traumatic brain injury (TBI) is one of the leading causes of mortality and morbidity worldwide. Tools available for diagnosis and therapy are limited. Small extracellular vesicle (sEV) microRNAs (miRNAs) play an important role in TBI disease progression. This study aimed to investigate the alterations in sEV miRNAs expression in the mouse brain extracellular space after TBI. Twenty-four C57BL/6J mice were randomly divided into two groups (12/group). The TBI group was subjected to all surgical procedures and fluid percussion injury (FPI). The sham group only underwent surgery. Brain specimens were collected 3 h after TBI/sham. The brain sEV were isolated. Differentially expressed miRNAs were identified. A total of 50 miRNAs were observed to be differentially expressed (fold change ≥1.5 and P<0.05) after TBI, including 5 upregulated and 45 downregulated. The major enriched Gene Ontology terms were metabolic processes, cell, intracellular, organelle, cytoplasm, axon, binding, protein kinase activity, protein binding, and protein dimerization activity. The KEGG pathway analysis predicted that the pathways affected by the variation of miRNAs in sEVs after TBI included the Wnt signaling pathway and NF-κB signaling pathway. The changes in five miRNAs were confirmed by qRT-PCR. In conclusion, this study demonstrated the differential expression of a series of miRNAs in brain sEV after TBI, which might be correlated with post-TBI physiological and pathological processes. The findings might also provide novel targets for further investigating the molecular mechanisms underlying TBI and potential therapeutic interventions.
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