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Translational applications of evaluating physiologic variability in human endotoxemia

机译:评估人体内毒性的生理变异性的翻译应用

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摘要

Dysregulation of the inflammatory response is a critical component of many clinically challenging disorders such as sepsis. Inflammation is a biological process designed to lead to healing and recovery, ultimately restoring homeostasis; however, the failure to fully achieve those beneficial results can leave a patient in a dangerous persistent inflammatory state. One of the primary challenges in developing novel therapies in this area is that inflammation is comprised of a complex network of interacting pathways. Here, we discuss our approaches towards addressing this problem through computational systems biology, with a particular focus on how the presence of biological rhythms and the disruption of these rhythms in inflammation may be applied in a translational context. By leveraging the information content embedded in physiologic variability, ranging in scale from oscillations in autonomic activity driving short-term heart rate variability (HRV) to circadian rhythms in immunomodulatory hormones, there is significant potential to gain insight into the underlying physiology.
机译:炎症反应失调是许多临床上具有挑战性的疾病(如败血症)的重要组成部分。炎症是旨在导致愈合和恢复,最终恢复体内平衡的生物过程。然而,不能完全获得那些有益的结果会使患者处于危险的持续性炎症状态。在这一领域开发新疗法的主要挑战之一是炎症由相互作用途径的复杂网络组成。在这里,我们讨论了通过计算系统生物学解决这一问题的方法,特别着重于如何在翻译环境中应用生物节律的存在和炎症中这些节律的破坏。通过利用嵌入在生理变异性中的信息内容,范围从从驱动短期心律变异性(HRV)的自主活动的振荡到免疫调节激素的昼夜节律,具有巨大的潜力,可以深入了解潜在的生理学。

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