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评估阴道微生物组平衡状态可识别与月经后和抗生素治疗后恢复力相关的微生物参数。

Evaluation of vaginal microbiome equilibrium states identifies microbial parameters linked to resilience after menses and antibiotic therapy.

机构信息

Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, United States of America.

Institute for Genome Sciences and Department of Microbiology and Immunology, University of Maryland School of Medicine, Baltimore, Maryland, United States of America.

出版信息

PLoS Comput Biol. 2023 Aug 11;19(8):e1011295. doi: 10.1371/journal.pcbi.1011295. eCollection 2023 Aug.

Abstract

The vaginal microbiome (VMB) is a complex microbial community that is closely tied to reproductive health. Optimal VMB communities have compositions that are commonly defined by the dominance of certain Lactobacillus spp. and can remain stable over time or transition to non-optimal states dominated by anaerobic bacteria and associated with bacterial vaginosis (BV). The ability to remain stable or undergo transitions suggests a system with either single (mono-stable) or multiple (multi-stable) equilibrium states, though factors that contribute to stability have been difficult to determine due to heterogeneity in microbial growth characteristics and inter-species interactions. Here, we use a computational model to determine whether differences in microbial growth and interaction parameters could alter equilibrium state accessibility and account for variability in community composition after menses and antibiotic therapies. Using a global uncertainty and sensitivity analysis that captures parameter sets sampled from a physiologically relevant range, model simulations predicted that 79.7% of microbial communities were mono-stable (gravitate to one composition type) and 20.3% were predicted to be multi-stable (can gravitate to more than one composition type, given external perturbations), which was not significantly different from observations in two clinical cohorts (HMP cohort, 75.2% and 24.8%; Gajer cohort, 78.1% and 21.9%, respectively). The model identified key microbial parameters that governed equilibrium state accessibility, such as the importance of non-optimal anaerobic bacteria interactions with Lactobacillus spp., which is largely understudied. Model predictions for composition changes after menses and antibiotics were not significantly different from those observed in clinical cohorts. Lastly, simulations were performed to illustrate how this quantitative framework can be used to gain insight into the development of new combinatorial therapies involving altered prebiotic and antibiotic dosing strategies. Altogether, dynamical models could guide development of more precise therapeutic strategies to manage BV.

摘要

阴道微生物组(VMB)是一种与生殖健康密切相关的复杂微生物群落。最佳的 VMB 群落组成通常由某些乳杆菌属的优势主导,并能随着时间的推移保持稳定,或转变为以厌氧菌为主导并与细菌性阴道病(BV)相关的非最佳状态。能够保持稳定或发生转变表明,该系统具有单一(单稳态)或多个(多稳态)平衡状态,尽管由于微生物生长特性和种间相互作用的异质性,导致难以确定有助于稳定的因素。在这里,我们使用计算模型来确定微生物生长和相互作用参数的差异是否会改变平衡状态的可及性,并解释月经后和抗生素治疗后群落组成的可变性。使用一种全局不确定性和敏感性分析,该分析捕获了从生理相关范围内采样的参数集,模型模拟预测,79.7%的微生物群落是单稳态的(倾向于一种组成类型),20.3%的微生物群落是多稳态的(可以在外部干扰下倾向于多种组成类型),这与两个临床队列的观察结果没有显著差异(HMP 队列为 75.2%和 24.8%;Gajer 队列为 78.1%和 21.9%)。该模型确定了控制平衡状态可及性的关键微生物参数,例如非最佳厌氧菌与乳杆菌属相互作用的重要性,这在很大程度上还未被研究。月经后和抗生素治疗后组成变化的模型预测与临床队列的观察结果没有显著差异。最后,进行了模拟,以说明如何使用这种定量框架来深入了解涉及改变益生元和抗生素剂量策略的新组合疗法的发展。总之,动态模型可以指导开发更精确的治疗策略来管理 BV。

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