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肠道微生物群细胞外囊泡与宿主相互作用的多层次分析揭示了与肠-脑轴信号传导的联系。

Multi-level analysis of gut microbiome extracellular vesicles-host interaction reveals a connection to gut-brain axis signaling.

作者信息

Mottawea Walid, Yousuf Basit, Sultan Salma, Ahmed Tamer, Yeo JuDong, Hüttmann Nico, Li Yingxi, Bouhlel Nour Elhouda, Hassan Hebatoallah, Zhang Xu, Minic Zoran, Hammami Riadh

机构信息

NuGut Research Platform, School of Nutrition Sciences, Faculty of Health Sciences, University of Ottawa, Ottawa, Canada.

Department of Microbiology and Immunology, Faculty of Pharmacy, Mansoura University, Mansoura, Egypt.

出版信息

Microbiol Spectr. 2025 Feb 4;13(2):e0136824. doi: 10.1128/spectrum.01368-24. Epub 2024 Dec 19.

Abstract

UNLABELLED

Microbiota-released extracellular vesicles (MEVs) have emerged as a key player in intercellular signaling. However, their involvement in the gut-brain axis has been poorly investigated. We hypothesize that MEVs cross host cellular barriers and deliver their cargoes of bioactive compounds to the brain. In this study, we aimed to investigate the cargo capacity of MEVs for bioactive metabolites and their interactions with the host cellular barriers. First, we conducted a multi-omics profiling of MEVs' contents from and stool samples. Metabolomics analysis identified various neuro-related compounds encapsulated within MEVs, such as arachidonyl-dopamine, gabapentin, glutamate, and N-acylethanolamines. Metaproteomics unveiled an enrichment of enzymes involved in neuronal metabolism, primarily in the glutamine/glutamate/gamma-aminobutyric acid (GABA) pathway. These neuro-related proteins and metabolites were correlated with spp. We isolated 18 strains and assessed their GABA production capacity in extracellular vesicles (EVs) and culture supernatant. A GABA-producing , released EVs with a high GABA content (4 µM) compared to . Upon testing the capacity of MEVs to cross host barriers, MEVs exhibited a dose-dependent paracellular transport and were endocytosed by Caco-2 and hCMEC/D3 cells. Exposure of Caco-2 cells to MEVs did not alter expression of genes related to intestinal barrier integrity, while affected immune pathways and cell apoptosis process as revealed by RNA-seq analyses. , MEVs biodistributed across mice organs, including the brain, liver, stomach, and spleen. Our results highlight the ability of MEVs to cross the intestinal and blood-brain barriers to deliver their cargoes to distant organs, with potential implication for the gut-brain axis.

IMPORTANCE

Microbiota-released extracellular vesicles (MEVs) have emerged as a key player in intercellular signaling. In this study, a multi-level analysis revealed presence of a diverse array of biologically active molecules encapsulated within MEVs, including neuroactive metabolites, such as arachidonyl-dopamine, gabapentin, glutamate, and N-acylethanolamines, and gamma-aminobutyric acid (GABA). Metaproteomics also unveiled an enrichment of neural-related proteins, mainly the glutamine/glutamate/GABA pathway. MEVs were able to cross epithelial and blood-brain barriers . RNA-seq analyses showed that MEVs stimulate several immune pathways while suppressing cell apoptosis process. Furthermore, MEVs were able to traverse the intestinal barriers and reach distal organs, including the brain, thereby potentially influencing brain functionality and contributing to mental and behavior.

摘要

未标记

微生物群释放的细胞外囊泡(MEVs)已成为细胞间信号传导的关键参与者。然而,它们在肠-脑轴中的作用尚未得到充分研究。我们假设MEVs能够穿过宿主细胞屏障,并将其生物活性化合物货物输送到大脑。在本研究中,我们旨在研究MEVs对生物活性代谢物的货物承载能力及其与宿主细胞屏障的相互作用。首先,我们对来自[具体来源]和粪便样本的MEVs内容物进行了多组学分析。代谢组学分析鉴定出MEVs中包裹的各种与神经相关的化合物,如花生四烯酰多巴胺、加巴喷丁、谷氨酸和N-酰基乙醇胺。宏蛋白质组学揭示了参与神经元代谢的酶的富集,主要是在谷氨酰胺/谷氨酸/γ-氨基丁酸(GABA)途径中。这些与神经相关的蛋白质和代谢物与[具体菌种]相关。我们分离出18株[具体菌种]菌株,并评估了它们在细胞外囊泡(EVs)和培养上清液中的GABA产生能力。与[对比菌种]相比,一株产生GABA的[具体菌种]释放出GABA含量较高(4μM)的EVs。在测试MEVs穿过宿主屏障的能力时,MEVs表现出剂量依赖性的细胞旁转运,并被Caco-2和hCMEC/D3细胞内吞。将Caco-2细胞暴露于MEVs中不会改变与肠道屏障完整性相关基因的表达,而RNA测序分析显示其影响免疫途径和细胞凋亡过程。此外,MEVs在小鼠各器官中广泛分布,包括大脑、肝脏、胃和脾脏。我们的结果突出了MEVs穿过肠道和血脑屏障将其货物输送到远处器官的能力,这对肠-脑轴具有潜在意义。

重要性

微生物群释放的细胞外囊泡(MEVs)已成为细胞间信号传导的关键参与者。在本研究中,多层次分析揭示了MEVs中封装着多种生物活性分子,包括神经活性代谢物,如花生四烯酰多巴胺、加巴喷丁、谷氨酸和N-酰基乙醇胺,以及γ-氨基丁酸(GABA)。宏蛋白质组学还揭示了神经相关蛋白质的富集,主要是谷氨酰胺/谷氨酸/GABA途径。MEVs能够穿过上皮和血脑屏障。RNA测序分析表明,MEVs刺激多种免疫途径,同时抑制细胞凋亡过程。此外,MEVs能够穿过肠道屏障并到达远处器官,包括大脑,从而可能影响大脑功能并对心理和行为产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8ff/11792502/12b23531700b/spectrum.01368-24.f001.jpg

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