Department of Anatomy & Neuroscience, University College Cork, Ireland; APC Microbiome Ireland, University College Cork, Ireland.
Department of Anatomy & Neuroscience, University College Cork, Ireland.
Psychoneuroendocrinology. 2021 Feb;124:105047. doi: 10.1016/j.psyneuen.2020.105047. Epub 2020 Dec 8.
The microbiome-gut-brain-axis is a complex phenomenon spanning several dynamic systems in the body which can be parsed at a molecular, cellular, physiological and ecological level. A growing body of evidence indicates that this axis is particularly sensitive to the effects of stress and that it may be relevant to stress resilience and susceptibility. Although stress-induced changes in the composition of the microbiome have been reported, the degree of compositional change over time, which we define as volatility, has not been the subject of in-depth scrutiny. Using a chronic psychosocial stress paradigm in male mice, we report that the volatility of the microbiome significantly correlated with several readouts of the stress response, including behaviour and corticosterone response. We then validated these findings in a second independent group of stressed mice. Additionally, we assessed the relationship between volatility and stress parameters in a cohort of health volunteers who were undergoing academic exams and report similar observations. Finally, we found inter-species similarities in the microbiome stress response on a functional level. Our research highlights the effects of stress on the dynamic microbiome and underscores the informative value of volatility as a parameter that should be considered in all future analyses of the microbiome.
肠道微生物群-肠-脑轴是一种复杂的现象,跨越了体内的几个动态系统,可以在分子、细胞、生理和生态水平上进行分析。越来越多的证据表明,该轴对压力的影响特别敏感,它可能与压力适应和易感性有关。尽管已经报道了应激引起的微生物组组成变化,但我们定义的随着时间的推移组成变化的程度,即波动性,尚未成为深入研究的主题。使用雄性小鼠的慢性心理社会应激范式,我们报告说微生物组的波动性与应激反应的几个读数显著相关,包括行为和皮质酮反应。然后,我们在第二组独立的应激小鼠中验证了这些发现。此外,我们在经历学术考试的健康志愿者队列中评估了波动性与应激参数之间的关系,并报告了类似的观察结果。最后,我们在功能水平上发现了微生物组应激反应的种间相似性。我们的研究强调了应激对动态微生物组的影响,并强调了波动性作为一个参数的信息价值,该参数应在未来所有微生物组分析中考虑。