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Succumbing to the laws of attraction Exploring the sometimes pathogenic versatility of discrete immune logic

机译:遵循吸引定律探索离散免疫逻辑有时具有致病性的多功能性

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Feedback mechanisms throughout the immune and endocrine systems play a significant role in maintaining physiological homeostasis. Specifically, the hypothalamic-pituitary-adrenal (HPA) and hypothalamic-pituitary-gonadal (HPG) axes contribute important oversight of immune activity and homeostatic regulation. We propose that these components form an overarching regulatory system capable of supporting multiple homeostatic regimes. These emerge as a result of the extensive feedback mechanisms involving cytokine and hormone signaling. Here we explore the possible role of such alternate regulatory programs in perpetuating chronic immune and endocrine dysfunction in males. To do this we represent documented interactions within and between components of the male HPA-HPG-immune system as a set of discrete logic circuits. Analysis of these regulatory circuits indicated that even in the absence of external perturbations this model HPA-HPG-immune network supported three distinct and stable homeostatic regimes. To investigate the relevance of these predicted homeostatic regimes, we compared them to experimental data from male subjects with Gulf War illness (GWI) and chronic fatigue syndrome (CFS), two complex chronic conditions presenting with endocrine and immune dysregulation. Results indicated that molecular profiles observed experimentally in male GWI and CFS were both distinct from the normal resting state. Profile alignments suggests that regulatory circuitry is largely intact in male GWI and that the persistent immune dysfunction in this illness may at least in part be facilitated by the body’s own homeostatic drive. Conversely the profile for male CFS was distant from all three stable states suggesting the continued influence of an exogenous agent or lasting changes to the regulatory circuitry such as epigenetic alterations.
机译:整个免疫系统和内分泌系统的反馈机制在维持生理稳态方面起着重要作用。具体而言,下丘脑-垂体-肾上腺(HPA)和下丘脑-垂体-性腺(HPG)轴对免疫活动和体内平衡调节起着重要的监督作用。我们建议这些组件形成一个能够支持多种稳态机制的总体监管体系。这些是涉及细胞因子和激素信号传导的广泛反馈机制的结果。在这里,我们探讨了这种替代性调控计划在维持男性慢性免疫和内分泌功能障碍中的可能作用。为此,我们将雄性HPA-HPG免疫系统组件内部和组件之间的相互作用记录为一组离散逻辑电路。对这些调节电路的分析表明,即使在没有外部干扰的情况下,该模型HPA-HPG免疫网络也支持三种不同且稳定的体内平衡状态。为了研究这些预测的体内平衡状态的相关性,我们将它们与患有海湾战争病(​​GWI)和慢性疲劳综合症(CFS)的男性受试者的实验数据进行了比较,这是两种复杂的慢性疾病,表现为内分泌和免疫功能异常。结果表明,在男性GWI和CFS中实验观察到的分子谱均与正常静息状态不同。轮廓比对表明,男性GWI中的调节电路在很大程度上是完整的,并且这种疾病中持续的免疫功能障碍可能至少部分地由人体自身的体内平衡驱动。相反,男性CFS的分布与所有三个稳定状态都不同,这表明外源性物质的持续影响或调节电路的持久变化(例如表观遗传学改变)。

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