Mild Blast Exposure Dysregulates Metabolic Pathways and Correlation Networking as Evident from LC-MS-Based Plasma Profiling.

IF 4.6 2区 医学 Q1 NEUROSCIENCES
Molecular Neurobiology Pub Date : 2025-03-01 Epub Date: 2024-09-05 DOI:10.1007/s12035-024-04429-5
Ruchi Baghel, Kiran Maan, Seema Dhariwal, Megha Kumari, Apoorva Sharma, Kailash Manda, Richa Trivedi, Poonam Rana
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引用次数: 0

Abstract

Blast-induced trauma is emerging as a serious threat due to its wide pathophysiology where not only the brain but also a spectrum of organs is being affected. In the present study, we aim to identify the plasma-based metabolic dysregulations along with the associated temporal changes at 5-6 h, day 1 and day 7 post-injury in a preclinical animal model for blast exposure, through liquid chromatography-mass spectrometry (LC-MS). Using significantly advanced metabolomic and statistical bioinformatic platforms, we were able to elucidate better and unravel the complex networks of blast-induced neurotrauma (BINT) and its interlinked systemic effects. Significant changes were evident at 5-6 h with maximal changes at day 1. Temporal analysis also depicted progressive changes which continued till day 7. Significant associations of metabolic markers belonging to the class of amino acids, energy-related molecules, lipids, vitamin, hormone, phenolic acid, keto and histidine derivatives, nucleic acid molecules, uremic toxins, and uronic acids were observed. Also, the present study is the first of its kind where comprehensive, detailed pathway dysregulations of amino acid metabolism and biosynthesis, perturbed nucleotides, lipid peroxidation, and nucleic acid damage followed by correlation networking and multiomics networking were explored on preclinical animal models exposed to mild blast trauma. In addition, markers for systemic changes (renal dysfunction) were also observed. Global pathway predictions of unannotated peaks also presented important insights into BINT pathophysiology. Conclusively, the present study depicts important findings that might help underpin the biological mechanisms of blast-induced brain or systemic trauma.

Abstract Image

基于液相色谱-质谱的血浆分析显示,轻度爆炸暴露会导致代谢途径和相关网络失调。
爆炸引起的创伤正在成为一种严重的威胁,因为它的病理生理学范围很广,不仅大脑会受到影响,而且一系列器官也会受到影响。在本研究中,我们旨在通过液相色谱-质谱联用技术(LC-MS),在爆炸暴露的临床前动物模型中识别血浆代谢失调以及受伤后 5-6 小时、第 1 天和第 7 天的相关时间变化。利用先进的代谢组学和生物信息统计平台,我们能够更好地阐明和揭示爆炸诱发的神经创伤(BINT)及其相互关联的系统效应的复杂网络。5-6小时后,变化明显,第1天时变化最大。时间分析也显示了持续到第 7 天的渐进变化。观察到氨基酸、能量相关分子、脂类、维生素、激素、酚酸、酮和组氨酸衍生物、核酸分子、尿毒症毒素和尿酸等代谢标记物之间存在显著关联。本研究也是首次在轻度爆炸创伤的临床前动物模型上,通过相关网络和多组学网络,对氨基酸代谢和生物合成、核苷酸扰动、脂质过氧化和核酸损伤的全面、详细的通路失调进行探索。此外,还观察了全身性变化(肾功能障碍)的标志物。对未标注峰值的全局通路预测也为 BINT 病理生理学提供了重要见解。总之,本研究描述的重要发现可能有助于巩固爆炸诱发的脑部或全身创伤的生物学机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Neurobiology
Molecular Neurobiology 医学-神经科学
CiteScore
9.00
自引率
2.00%
发文量
480
审稿时长
1 months
期刊介绍: Molecular Neurobiology is an exciting journal for neuroscientists needing to stay in close touch with progress at the forefront of molecular brain research today. It is an especially important periodical for graduate students and "postdocs," specifically designed to synthesize and critically assess research trends for all neuroscientists hoping to stay active at the cutting edge of this dramatically developing area. This journal has proven to be crucial in departmental libraries, serving as essential reading for every committed neuroscientist who is striving to keep abreast of all rapid developments in a forefront field. Most recent significant advances in experimental and clinical neuroscience have been occurring at the molecular level. Until now, there has been no journal devoted to looking closely at this fragmented literature in a critical, coherent fashion. Each submission is thoroughly analyzed by scientists and clinicians internationally renowned for their special competence in the areas treated.
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