Gut Microbial Metabolites May Shape Vulnerability to Stress-Related Mental Disorders, Review Finds
核心洞察
A review in Translational Psychiatry examines how gut dysbiosis-driven metabolite changes may contribute to stress-related psychiatric disorders including depression (搜索), anxiety (搜索), and PTSD.
Gut-derived metabolites such as short-chain fatty acids (搜索), bile acids, and tryptophan-related compounds influence neural, endocrine, immune, and epigenetic gut-brain signaling pathways.
Preclinical studies suggest butyrate and acetate supplementation can improve mood-related behaviors, while clinical evidence remains strongest for depression (搜索) with limited direct data for anxiety (搜索) and PTSD.
A growing body of evidence suggests that alterations in the gut microbiome may fundamentally shape an individual's vulnerability to stress-related psychiatric disorders through the production and transformation of key metabolites that modulate brain function. A comprehensive review published online as an "article in press" in Translational Psychiatry traces how gut dysbiosis can disrupt signaling along the gut-brain axis, potentially contributing to conditions such as depression (搜索), anxiety (搜索), and post-traumatic stress disorder (搜索) (PTSD).
Chronic stress may predispose individuals to psychiatric conditions that together impose a substantial global health burden. Current diagnostic and treatment approaches remain largely empirical, resulting in relatively limited diagnostic accuracy and therapeutic efficacy. The review underscores the pressing need to improve understanding of the biological mechanisms linking stress and psychiatric disorders to develop more targeted strategies and ultimately improve patient outcomes.
The Metabolic Language of the Gut-Brain Axis
Gut microbes produce or transform several classes of metabolites that influence signaling pathways linking the gut and the brain. These include bile acids (BAs), short-chain fatty acids (搜索) (SCFAs), monoamine-related metabolites, and amino acid-related metabolites. These substances are involved in immunological, endocrine, neural, and epigenetic processes, and alterations in their profiles may predispose individuals to psychiatric disorders.
Altered metabolite profiles may affect intestinal permeability and regulate serotonin release. Increased intestinal permeability may allow microbial products such as lipopolysaccharide (LPS), an endotoxin, to cross the intestinal barrier and enter the circulation, promoting peripheral and central inflammatory signaling and influencing activation of the NLRP3 inflammasome (搜索) in the brain. Gut metabolites may also alter epigenetic regulation linked to depression (搜索). The review notes that gut microbial imbalance could adversely affect cognitive and emotional functions through the hypothalamic-pituitary-adrenal (HPA) axis, autonomic nervous system, neurotransmitter systems, and immune-inflammatory pathways.
Short-Chain Fatty Acids (搜索) and Mood Regulation
Gut-derived SCFAs help maintain intestinal barrier integrity and promote epithelial repair. Several clinical and preclinical studies have associated lower butyrate levels with depression (搜索), although findings vary across populations and experimental conditions. Butyrate also helps regulate immune activity, and SCFAs can suppress pro-inflammatory signaling through several mechanisms. For example, propionate may inhibit the nuclear factor kappa B (NF-κB) pathway, while butyrate can regulate immune tolerance through epigenetic pathways.
Animal studies suggest that reduced butyrate and beneficial gut microbes are associated with depressive behaviors, while butyrate or acetate supplementation can improve mood-related behaviors and cognitive function. In preclinical studies, SCFAs can also cross the blood-brain barrier to regulate neuroplasticity. Notably, low-dose propionate reduced depression (搜索)-like behaviors, whereas high-dose propionate promoted these behaviors in one model, highlighting the complexity of dose-dependent effects.
Tryptophan, Bile Acids, and Neurotransmitter Pathways
Gut microbiome composition has been linked with several tryptophan (Trp)-derived metabolites. Bacterial taxa within the Bacteroidetes, Firmicutes, and Proteobacteria phyla have been associated with 5-hydroxyindoleacetic acid (5-HIAA) and serotonin, as well as kynurenine pathway metabolites involved in immune function. Murine stress models receiving Trp supplementation have shown a reduction in anxiety (搜索)- and depression (搜索)-like behaviors.
In depressed mice, supplementation with a psychobiotic Bifidobacterium breve strain restored indole-3-lactic acid (ILA) levels in hippocampal and intestinal tissues. Baseline gut microbiome composition and indole-3-propionic acid (I3PA) levels have also been associated with response to escitalopram treatment. In rats, rifaximin ameliorated depression (搜索)-like behavior by altering the intestinal microbiota and hippocampal kynurenine and serotonin metabolism.
Gut dysbiosis may also contribute to psychiatric disorders through bile acid dysregulation and alterations in dopamine-related metabolites. Preclinical studies suggest that TGR5 (搜索) activation can produce antidepressant-like effects, with secondary BAs acting as particularly potent TGR5 agonists. However, the review cautions that excessively high bile acid levels could lead to neurotoxicity, with elevated levels of deoxycholic acid (DCA) associated with cognitive impairment and decline in patients with chronic kidney disease.
Translational Gaps and Future Directions
Most of the clinical evidence concerns depression (搜索), while direct evidence for anxiety (搜索) and PTSD remains more limited. The review highlights that clinical interpretation remains challenging because of pronounced inter-individual variability, inconsistent microbial findings, methodological heterogeneity, and limited direct validation in humans.
Dietary interventions, exercise, probiotics, prebiotics, traditional Chinese medicine, and fecal microbiota transplantation (FMT) are being investigated as potential adjunctive approaches that may modulate the gut-brain axis. Preclinical FMT studies suggest that alterations in the gut microbiome can modulate central proline levels and matrix metalloproteinase (MMP) activity, changes associated with depression (搜索)-like behavior. However, the clinical efficacy of these interventions remains uncertain.
Looking ahead, the researchers call for longitudinal investigations integrating multi-omics data to support the clinical development of personalized microbiome-based interventions. Large prospective human studies are needed to establish whether microbiome-related alterations track clinical disease trajectories and to clarify causal and predictive relationships. A parallel research initiative, detailed in a Frontiers Research Topic, similarly emphasizes the need to integrate multi-modal data—including microbiome profiling, neuroimaging, metabolomics, transcriptomics, and computational modelling—to illuminate how microbial, immune, metabolic, and neuroendocrine pathways converge on neural circuits relevant to mental health, ultimately advancing precision diagnostics and innovative interventions in neuropsychiatric care.
