The Neuroscience Institute, Academic Health System, Hamad Medical Corporation, Doha, Qatar.
Department of Pharmaceutical Sciences, College of Pharmacy, QU Health, Qatar University, Doha, Qatar.
Brain Res. 2024 Dec 15;1845:149171. doi: 10.1016/j.brainres.2024.149171. Epub 2024 Aug 19.
MicroRNAs (miRNAs) participate in diverse cellular changes following acute ischemic stroke (AIS). Circulating miRNAs, stabilized and delivered to target cells via extracellular vesicles (EVs), are potential biomarkers to facilitate diagnosis, prognosis, and therapeutic modulation. We aimed to identify distinctive expression patterns of circulating EV-miRNAs in AIS patients.
miRNA profiles from EVs, isolated from plasma samples collected within 24 h following AIS diagnosis, were examined between a dataset of 10 age-, gender- and existing comorbidities-matched subjects (5 AIS and 5 healthy controls, HC). We measured 2578 miRNAs and identified differentially expressed miRNAs between AIS and HC. An enrichment analysis was conducted to delineate the networks and biological pathways implicated by differentially expressed microRNAs. An enrichment analysis was conducted to delineate the networks and biological pathways implicated by differentially expressed microRNAs.
Five miRNAs were differentially expressed between stroke (AIS) versus control (HC). hsa-let-7b-5p, hsa-miR-16-5p, and hsa-miR-320c were upregulated, whereas hsa-miR-548a-3p and hsa-miR-6808-3p, with no previously reported changes in stroke were downregulated. The target genes of these miRNAs affect various cellular pathways including, RNA transport, autophagy, cell cycle progression, cellular senescence, and signaling pathways like mTOR, PI3K-Akt, and p53. Key hub genes within these networks include TP53, BCL2, Akt, CCND1, and NF-κB. These pathways are crucial for cellular function and stress response, and their dysregulation can have significant implications for the disease processes.
Our findings reveal distinct circulating EV-miRNA expression patterns in AIS patients from Qatar, highlighting potential biomarkers that could aid in stroke diagnosis and therapeutic strategies. The identified miRNAs are involved in critical cellular pathways, offering novel insights into the molecular mechanisms underlying stroke pathology. Circulating EV-miRNAs differentially expressed in AIS may have a pathophysiological role and may guide further research to elucidate their precise mechanisms.
微小 RNA(miRNAs)参与急性缺血性中风(AIS)后的多种细胞变化。通过细胞外囊泡(EVs)稳定并递送至靶细胞的循环 miRNAs 是促进诊断、预后和治疗调节的潜在生物标志物。我们旨在鉴定 AIS 患者中循环 EV-miRNA 的独特表达模式。
对诊断为 AIS 后 24 小时内采集的血浆样本中的 EVs 进行 miRNA 谱分析,比较了一组年龄、性别和现有合并症匹配的 10 名受试者(5 名 AIS 和 5 名健康对照,HC)之间的 miRNA 图谱。我们测量了 2578 个 miRNAs,并鉴定了 AIS 和 HC 之间差异表达的 miRNAs。进行了富集分析,以描绘差异表达 miRNA 所涉及的网络和生物学途径。
在中风(AIS)与对照(HC)之间有 5 个 miRNA 差异表达。hsa-let-7b-5p、hsa-miR-16-5p 和 hsa-miR-320c 上调,而 hsa-miR-548a-3p 和 hsa-miR-6808-3p 下调,这两个 miRNA 在中风中没有报道过变化。这些 miRNA 的靶基因影响各种细胞途径,包括 RNA 转运、自噬、细胞周期进程、细胞衰老和 mTOR、PI3K-Akt 和 p53 等信号通路。这些网络中的关键枢纽基因包括 TP53、BCL2、Akt、CCND1 和 NF-κB。这些途径对于细胞功能和应激反应至关重要,其失调可能对疾病过程产生重大影响。
我们的研究结果揭示了来自卡塔尔的 AIS 患者中独特的循环 EV-miRNA 表达模式,突出了可能有助于中风诊断和治疗策略的潜在生物标志物。鉴定出的 miRNAs 参与了关键的细胞途径,为中风病理的分子机制提供了新的见解。在 AIS 中差异表达的循环 EV-miRNA 可能具有病理生理学作用,并可能指导进一步研究以阐明其确切机制。