Mathematical model of the inflammatory response to acute and prolonged lipopolysaccharide exposure in humans.

IF 3.5 2区 生物学 Q1 MATHEMATICAL & COMPUTATIONAL BIOLOGY
Freek J A Relouw, Matthijs Kox, H Rob Taal, Birgit C P Koch, Menno W J Prins, Natal A W van Riel
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引用次数: 0

Abstract

One in five deaths worldwide is associated with sepsis, which is defined as organ dysfunction caused by a dysregulated host response to infection. An increased understanding of the pathophysiology of sepsis could provide improved approaches for early detection and treatment. Here we describe the development and validation of a mechanistic mathematical model of the inflammatory response, making use of a combination of in vitro and human in vivo data obtained from experiments where bacterial lipopolysaccharide (LPS) was used to induce an inflammatory response. The new model can simulate the responses to both acute and prolonged inflammatory stimuli in an experimental setting, as well as the response to infection in the clinical setting. This model serves as a foundation for a sepsis simulation model with a potentially wide range of applications in different disciplines involved with sepsis research.

人体对脂多糖急性和长期暴露的炎症反应的数学模型。
全世界五分之一的死亡与败血症有关,败血症被定义为由宿主对感染反应失调引起的器官功能障碍。加深对脓毒症病理生理学的了解可以为早期发现和治疗提供改进的方法。在这里,我们描述了炎症反应的机械数学模型的发展和验证,利用体外和人体体内数据的结合,从实验中获得的细菌脂多糖(LPS)被用来诱导炎症反应。新模型可以在实验环境中模拟对急性和长期炎症刺激的反应,以及在临床环境中对感染的反应。该模型是脓毒症模拟模型的基础,在脓毒症研究的不同学科中具有广泛的应用前景。
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来源期刊
NPJ Systems Biology and Applications
NPJ Systems Biology and Applications Mathematics-Applied Mathematics
CiteScore
5.80
自引率
0.00%
发文量
46
审稿时长
8 weeks
期刊介绍: npj Systems Biology and Applications is an online Open Access journal dedicated to publishing the premier research that takes a systems-oriented approach. The journal aims to provide a forum for the presentation of articles that help define this nascent field, as well as those that apply the advances to wider fields. We encourage studies that integrate, or aid the integration of, data, analyses and insight from molecules to organisms and broader systems. Important areas of interest include not only fundamental biological systems and drug discovery, but also applications to health, medical practice and implementation, big data, biotechnology, food science, human behaviour, broader biological systems and industrial applications of systems biology. We encourage all approaches, including network biology, application of control theory to biological systems, computational modelling and analysis, comprehensive and/or high-content measurements, theoretical, analytical and computational studies of system-level properties of biological systems and computational/software/data platforms enabling such studies.
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