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Applying Systems Biology Methodology To Identify Genetic Factors Possibly Associated with Recovery after Traumatic Brain Injury

机译:应用系统生物学方法学确定可能与创伤性脑损伤后恢复有关的遗传因素

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摘要

Traumatic brain injury (TBI) is one of the leading causes of morbidity and mortality worldwide. It is linked with a number of medical, neurological, cognitive, and behavioral sequelae. The influence of genetic factors on the biology and related recovery after TBI is poorly understood. Studies that seek to elucidate the impact of genetic influences on neurorecovery after TBI will lead to better individualization of prognosis and inform development of novel treatments, which are considerably lacking. Current genetic studies related to TBI have focused on specific candidate genes. The objectives of this study were to use a system biology–based approach to identify biologic processes over-represented with genetic variants previously implicated in clinical outcomes after TBI and identify unique genes potentially related to recovery after TBI. After performing a systematic review to identify genes in the literature associated with clinical outcomes, we used the genes identified to perform a systems biology-based integrative computational analysis to ascertain the interactions between molecular components and to develop models for regulation and function of genes involved in TBI recovery. The analysis identified over-representation of genetic variants primarily in two biologic processes: response to injury (cell proliferation, cell death, inflammatory response, and cellular metabolism) and neurocognitive and behavioral reserve (brain development, cognition, and behavior). Overall, this study demonstrates the use of a systems biology–based approach to identify uniqueovel genes or sets of genes important to the recovery process. Findings from this systems biology–based approach provide additional insight into the potential impact of genetic variants on the underlying complex biological processes important to TBI recovery and may inform the development of empirical genetic-related studies for TBI. Future studies that combine systems biology methodology and genomic, proteomic, and epigenetic approaches are needed in TBI.
机译:颅脑外伤(TBI)是全球发病率和死亡率的主要原因之一。它与许多医学,神经,认知和行为后遗症有关。遗传因素对TBI后生物学和相关恢复的影响知之甚少。试图阐明遗传因素对TBI后神经恢复的影响的研究将导致更好的个体化预后,并为新疗法的开发提供信息,而这是相当缺乏的。当前与TBI相关的遗传研究集中在特定的候选基因上。这项研究的目的是使用一种基于系统生物学的方法来鉴定与TBI术后临床结果有关的遗传变异过度代表的生物学过程,并鉴定与TBI术后恢复相关的独特基因。在进行了系统的综述以鉴定与临床结果相关的文献中的基因后,我们使用鉴定出的基因进行了基于系统生物学的综合计算分析,以确定分子成分之间的相互作用,并开发了参与该基因的调控和功能的模型TBI恢复。该分析主要在两个生物学过程中发现了遗传变异的过度表现:对损伤的反应(细胞增殖,细胞死亡,炎症反应和细胞代谢)以及神经认知和行为储备(大脑发育,认知和行为)。总的来说,这项研究证明了使用基于系统生物学的方法来鉴定独特/新颖的基因或对恢复过程很重要的基因集。从基于生物学的系统方法中获得的发现为遗传变异对TBI恢复重要的潜在复杂生物过程的潜在影响提供了更多见解,并可能为TBI的经验遗传相关研究的发展提供信息。 TBI需要将系统生物学方法论与基因组学,蛋白质组学和表观遗传学方法相结合的未来研究。

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