An Eric, Delgadillo Desiree R, Yang Jennifer, Agarwal Rishabh, Labus Jennifer S, Pawar Shrey, Lietman Madeline, Kilpatrick Lisa A, Bhatt Ravi R, Vora Priten, Vaughan Allison, Dong Tien S, Gupta Arpana
David Geffen School of Medicine at UCLA.
University of California, Los Angeles.
Nat Ment Health. 2024 Aug;2(8):935-950. doi: 10.1038/s44220-024-00266-6. Epub 2024 Jun 21.
The brain-gut-microbiome (BGM) system plays an influential role on mental health. We characterized BGM patterns related to resilience using fecal samples and multimodal MRI. Data integration analysis using latent components showed the high resilience phenotype was associated with lower depression and anxiety symptoms, higher frequency of bacterial transcriptomes (related to environmental adaptation, genetic propagation, energy metabolism, anti-inflammation), increased metabolites (N-acetylglutamate; dimethylglycine), and cortical signatures (increased resting state functional connectivity between reward circuits and sensorimotor networks; decreased grey matter volume and white matter tracts within the emotion regulation network). Our findings support a multi-omic signature involving the BGM system suggesting that resilience impacts psychological symptoms, emotion regulation and cognitive function as reflected by unique neural correlates and microbiome function supporting eubiosis and gut barrier integrity. Bacterial transcriptomes provided the highest classification accuracy suggesting that the microbiome is critical in shaping resilience and highlights that microbiome modifications can optimize mental health.
脑-肠-微生物群(BGM)系统对心理健康起着重要作用。我们使用粪便样本和多模态磁共振成像(MRI)对与心理韧性相关的BGM模式进行了特征描述。使用潜在成分进行的数据整合分析表明,高心理韧性表型与较低的抑郁和焦虑症状、较高频率的细菌转录组(与环境适应、基因传播、能量代谢、抗炎相关)、增加的代谢物(N-乙酰谷氨酸;二甲基甘氨酸)以及皮质特征(奖励回路与感觉运动网络之间静息态功能连接增加;情绪调节网络内灰质体积和白质束减少)相关。我们的研究结果支持一种涉及BGM系统的多组学特征,表明心理韧性会影响心理症状、情绪调节和认知功能,这体现在独特的神经关联以及支持共生和肠道屏障完整性的微生物群功能上。细菌转录组提供了最高的分类准确率,表明微生物群在塑造心理韧性方面至关重要,并突出了微生物群的改变可以优化心理健康。