首页> 外文期刊>Frontiers in Neurology >The Temporal Pattern of Changes in Serum Biomarker Levels Reveals Complex and Dynamically Changing Pathologies after Exposure to a Single Low-Intensity Blast in Mice
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The Temporal Pattern of Changes in Serum Biomarker Levels Reveals Complex and Dynamically Changing Pathologies after Exposure to a Single Low-Intensity Blast in Mice

机译:暴露于小鼠的单个低强度爆炸后,血清生物标志物水平变化的时间模式揭示了复杂且动态变化的病理学

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Time-dependent changes in blood-based protein biomarkers can help identify the -pathological processes in blast-induced traumatic brain injury (bTBI), assess injury severity, and monitor disease progression. We obtained blood from control and injured mice (exposed to a single, low-intensity blast) at 2-h, 1-day, 1–week, and 1-month post-injury. We then determined the serum levels of biomarkers related to metabolism (4-HNE, HIF-1α, ceruloplasmin), vascular function (AQP1, AQP4, VEGF, vWF, Flk-1), inflammation (OPN, CINC1, fibrinogen, MIP-1a, OX-44, p38, MMP-8, MCP-1 CCR5, CRP, galectin-1), cell adhesion and the extracellular matrix (integrin α6, TIMP1, TIMP4, Ncad, connexin-43), and axonal (NF-H, Tau), neuronal (NSE, CK-BB) and glial damage (GFAP, S100β, MBP) at various post-injury time points. Our findings indicate that the exposure to a single, low-intensity blast results in metabolic and vascular changes, altered cell adhesion, and axonal and neuronal injury in the mouse model of bTBI. Interestingly, serum levels of several inflammatory and astroglial markers were either unchanged or elevated only during the acute and subacute phases of injury. Conversely, serum levels of the majority of biomarkers related to metabolic and vascular functions, cell adhesion, as well as neuronal and axonal damage remained elevated at the termination of the experiment (1?month), indicating long-term systemic and cerebral alterations due to blast. Our findings show that the exposure to a single, low-intensity blast induces complex pathological processes with distinct temporal profiles. Hence, monitoring serum biomarker levels at various post-injury time points may provide enhanced diagnostics in blast-related neurological and multi-system deficits.
机译:血液中基于蛋白质的生物标志物的时间依赖性变化可以帮助鉴定爆炸诱导的颅脑外伤(bTBI)中的病理过程,评估损伤的严重程度并监测疾病的进展。我们在受伤后2小时,1天,1周和1个月从对照小鼠和受伤的小鼠(暴露于单个低强度冲击波)中获取了血液。然后,我们确定了与代谢(4-HNE,HIF-1α,铜蓝蛋白),血管功能(AQP1,AQP4,VEGF,vWF,Flk-1),炎症(OPN,CINC1,纤维蛋白原,MIP-1a)相关的生物标志物的血清水平,OX-44,p38,MMP-8,MCP-1 CCR5,CRP,galectin-1),细胞粘附和细胞外基质(整合素α6,TIMP1,TIMP4,Ncad,连接蛋白43)和轴突(NF-H ,Tau),神经元(NSE,CK-BB)和神经胶质损伤(GFAP,S100β,MBP)在各个损伤后的时间点。我们的发现表明,在bTBI小鼠模型中,暴露于单个低强度胚泡会导致代谢和血管变化,改变的细胞粘附以及轴突和神经元损伤。有趣的是,仅在损伤的急性和亚急性阶段,几种炎性和星形胶质标记的血清水平不变或升高。相反,在实验结束(1个月)时,与代谢和血管功能,细胞粘附以及神经元和轴突损伤相关的大多数生物标志物的血清水平仍然升高,表明长期的全身和大脑改变是由于爆破。我们的研究结果表明,暴露于单个低强度爆炸可诱导具有不同时间特征的复杂病理过程。因此,在损伤后的各个时间点监测血清生物标志物的水平可提供与胚泡相关的神经系统和多系统缺陷的增强诊断。

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