大鼠模型低水平重复爆破暴露后大脑、脑脊液和血液中 microRNA 图谱的变化

IF 3.9 2区 医学 Q1 CLINICAL NEUROLOGY
Shataakshi Dahal, RamaRao Venkata Kakulavarapu, Lanier Heyburn, Donna Wilder, Raina Kumar, George Dimitrov, Aarti Gautam, Rasha Hammameih, Joseph B Long, Venkatasivasai Sujith Sajja
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引用次数: 0

摘要

有大量文件证明,在使用火炮、迫击炮和爆破等重型武器进行训练时,军人会反复暴露于低水平爆炸超压之下。通常,与这些暴露相关的急性症状是短暂的,但低水平重复爆炸暴露 (RBE) 的累积效应可能包括认知和行为健康方面的持续缺陷。迄今为止,还没有找到可靠的诊断生物标志物来指导应对策略。在这项研究中,大鼠暴露于峰值正超压为 8.5 和 10 psi 的多个现场相关爆炸波中,每天暴露一次,连续暴露 14 天。RBE 会导致血液、大脑和脑脊液中的各种 miRNA 发生不同模式的变化,这种变化具有超压依赖性。我们的主要结果是大脑、血液和脑脊液中 mir-6215 和 let-7 家族 miRNAs 减少,mir-6321 和 mir-222-5p 增加。这些 miRNAs 的表达模式与各种神经系统疾病相一致,如在局灶性缺血性损伤中 mir-6321 上调,而在神经损伤模型中 mir-6215 下调。相反,Let-7 家族 miRNAs 具有神经保护作用,它们的下调表明爆炸诱导的创伤性脑损伤(bTBI)(RBE 为 14× -8.5 psi)正在恶化。反复爆炸导致 miRNAs 发生变化,这些 miRNAs 可能参与血管完整性、炎症和细胞死亡。这些结果表明,miRNA 在应对爆炸损伤时会出现不同程度的失调,与传统的分子相比,它们可能是更好的预后和诊断生物标志物,可用于识别爆炸特异性脑损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
microRNA Profile Changes in Brain, Cerebrospinal Fluid, and Blood Following Low-Level Repeated Blast Exposure in a Rat Model.

It is well documented that service members are exposed to repeated low-level blast overpressure during training with heavy weapons such as artillery, mortars and explosive breaching. Often, acute symptoms associated with these exposures are transient but cumulative effect of low-level repeated blast exposures (RBEs) can include persistent deficits in cognitive and behavioral health. Thus far, reliable diagnostic biomarkers which can guide countermeasure strategies have not been identified. In this study, rats were exposed to multiple field-relevant blast waves with 8.5 and 10 psi peak positive overpressures, applying one exposure per day for 14 consecutive days. micro-RNAs that can potentially be used as biomarkers for RBEs were assessed in blood, brain, and cerebrospinal fluid (CSF). RBE caused a differential pattern of changes in various miRNAs in blood, brain and CSF in an overpressure-dependent manner. Our key outcomes were decrease of mir-6215 and let-7 family miRNAs and increase of mir-6321 and mir-222-5p in brain, blood, and CSF. Expression pattern of these miRNAs is in concurrence with various neurological conditions such as upregulation of mir-6321 in focal ischemic injury and downregulation of mir-6215 in nerve injury model. Contrarily, Let-7 family miRNAs have neuroprotective role and their downregulation suggests progression of blast induced traumatic brain injury (bTBI) with RBE at 14× -8.5 psi. Repeated blast caused alterations in miRNAs that are likely involved in vascular integrity, inflammation, and cell death. These results indicate that miRNAs are differentially dysregulated in response to blast injuries and may represent better prognostic and diagnostic biomarkers than traditional molecules to identify blast-specific brain injury.

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来源期刊
Journal of neurotrauma
Journal of neurotrauma 医学-临床神经学
CiteScore
9.20
自引率
7.10%
发文量
233
审稿时长
3 months
期刊介绍: Journal of Neurotrauma is the flagship, peer-reviewed publication for reporting on the latest advances in both the clinical and laboratory investigation of traumatic brain and spinal cord injury. The Journal focuses on the basic pathobiology of injury to the central nervous system, while considering preclinical and clinical trials targeted at improving both the early management and long-term care and recovery of traumatically injured patients. This is the essential journal publishing cutting-edge basic and translational research in traumatically injured human and animal studies, with emphasis on neurodegenerative disease research linked to CNS trauma.
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