ArticleMolecular psychiatry2025
Characterizing metabolomic and proteomic changes in depression: a systematic analysis.
Article in Molecular psychiatry, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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Who cites it
13 citing papers in PubMed.
- Metabolomics and Proteomics Analyses Reveal the Protective Effect of Crocetin Against Depressive-Like Behaviors Mice.Neurochemical research · 2026Article
- Dietary Tryptophan Allocation in Depression: Serotonin-Kynurenine Balance, Microbial Indole Pathways, and Inflammatory Phenotypes.Nutrients · 2026Review
- Transcriptomic characteristics of plasma from Chinese ethnic minority patients with major depressive disorder.Translational psychiatry · 2026Article
- TranDep: a transcriptomics atlas of depression.Molecular psychiatry · 2026Article
- Sugar-sweetened beverage consumption and incident depression: an exploratory multi-omics analysis of candidate biological mediators.Nutrition journal · 2026Article
- Insomnia, proteomic characteristics, and mortality risk in depression: a UK Biobank study.BMC psychiatry · 2026Article
- The role of metabolic disorders in major depressive disorder.Molecular biology reports · 2026Review
- Residential green space, air pollution, and related metabolites in association with depression among cancer survivors.Nature communications · 2026Article
- Exploring Molecular Mechanism of Fluoxetine in Animal Models of Depression via Integrated Metabolomic and Proteomic Analysis.Journal of cellular and molecular medicine · 2026Article
- From mitochondrial oxidative stress to neuroinflammation: integrated proteomic and transcriptomic profiling reveals the role of the ROS/TXNIP/NLRP3 signaling pathway in anxious depression.Frontiers in immunology · 2026Article
- Microbiota-host crosstalk: the role of short-term dietary restriction in neurological and metabolic dysregulation.NPJ biofilms and microbiomes · 2025Article
- MicroRNAs as Regulators of Neuroinflammation in Major Depressive Disorder.Depression and anxiety · 2025Review
- Metabolic phenotypes: Molecular bridges between health homeostasis and disease imbalance.Computational and structural biotechnology journal · 2025Review
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Authors and funding
20 authors.
Funding
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Abstract
Despite the widespread use of metabolomics and proteomics to explore the molecular landscape of depression, there is a lack of consensus regarding dysregulated molecules with replicable evidence. Thus, this study aimed to identify robust metabolomic and proteomic features in depression by integrating evidence from large-scale studies. In this study, a knowledge base-mining approach was adopted to compile a list of dysregulated molecules derived from metabolomic and proteomic studies. A vote-counting approach was performed to identify consistently altered molecules in the blood and urine samples of patients with depression. A total of 2398 molecular entries were selected, comprising 857 unique metabolites and 468 unique proteins from 143 metabolomic and 23 proteomic studies in depression. The results of vote-counting analyses revealed that 11 metabolites in blood and 5 metabolites in urine exhibited consistent disturbances across studies. Circulating levels of glutamic acid and phosphatidylcholine (32:0) were elevated in depressive patients, whereas the levels of tryptophan, kynurenic acid, kynurenine, acetylcarnitine, serotonin, creatinine, inosine, phenylalanine, and valine were lower. Urinary levels of isobutyric acid, alanine, and nicotinic acid were higher, whereas the levels of N-methylnicotinamide and tyrosine were lower. Moreover, analysis of the proteomic dataset identified only one circulating protein, ceruloplasmin, that was consistently dysregulated. Convergence comparison prioritized tryptophan as the top-ranked circulating metabolite, followed by kynurenic acid, acetylcarnitine, creatinine, serotonin, and valine. Collectively, robust evidence of metabolomic changes was observed in patients with depression, pointing to a role as potential biomarkers. Further investigation of consensus proteomic features for depression is necessitated.
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