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首页> 外文期刊>Metabolites >Metabolic Profiling of a Porcine Combat Trauma-Injury Model Using NMR and Multi-Mode LC-MS Metabolomics—A Preliminary Study
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Metabolic Profiling of a Porcine Combat Trauma-Injury Model Using NMR and Multi-Mode LC-MS Metabolomics—A Preliminary Study

机译:利用NMR和多模LC-MS代谢组学的猪作战创伤模型的代谢分析 - 初步研究

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摘要

Profiles of combat injuries worldwide have shown that penetrating trauma is one of the most common injuries sustained during battle. This is usually accompanied by severe bleeding or hemorrhage. If the soldier does not bleed to death, he may eventually succumb to complications arising from trauma hemorrhagic shock (THS). THS occurs when there is a deficiency of oxygen reaching the organs due to excessive blood loss. It can trigger massive metabolic derangements and an overwhelming inflammatory response, which can subsequently lead to the failure of organs and possibly death. A better understanding of the acute metabolic changes occurring after THS can help in the development of interventional strategies, as well as lead to the identification of potential biomarkers for rapid diagnosis of hemorrhagic shock and organ failure. In this preliminary study, a metabolomic approach using the complementary platforms of nuclear magnetic resonance (NMR) spectroscopy and liquid chromatography coupled with mass spectrometry (LC-MS) was used to determine the metabolic changes occurring in a porcine model of combat trauma injury comprising of penetrating trauma to a limb with hemorrhagic shock. Several metabolites associated with the acute-phase reaction, inflammation, energy depletion, oxidative stress, and possible renal dysfunction were identified to be significantly changed after a thirty-minute shock period.
机译:全球战斗伤害的概况表明,穿透性创伤是在战斗中持续的最常见的伤害之一。这通常伴有严重的出血或出血。如果士兵不会陷入死亡,他最终可能会屈服于创伤出血休克(THS)引起的并发症。当由于过度的失血而缺乏氧气的氧气时,就会发生。它可以引发大规模的代谢紊乱和压倒性的炎症反应,随后可以导致器官的失败,可能是死亡。更好地了解在介入策略的发展中有助于开发后发生的急性代谢变化,并导致潜在的生物标志物,以快速诊断出血休克和器官衰竭。在该初步研究中,使用核磁共振(NMR)光谱和液相色谱互补平台与质谱(LC-MS)的互补平台的代谢组方法用于确定包括的作战创伤损伤的猪模型中发生的代谢变化通过出血休克渗透到肢体的伤口。在休克期间三十分钟后,鉴定了几种与急性相反应,炎症,能量耗尽,氧化应激和可能肾功能障碍相关的代谢物。

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