Peripheral metabolic-redox signaling as a core mechanism of major depressive disorder: evidence from deep metabolomic phenotyping

Acta Neuropsychiatr. 2026 Feb 24:38:e26. doi: 10.1017/neu.2026.10065.

Abstract

Background: Major depressive disorder (MDD) is a neuro-immune, oxidative, and nitrosative stress (NIMETOX) disorder, in which peripheral immune-redox pathways intersect with metabolic networks leading to neurotoxicity within the limbic-prefrontal affective circuits. Comprehensive metabolomics analysis in well-phenotyped patients is vital to elucidate their metabolic profile.

Objectives: To identify metabolic abnormalities that differentiate in patients with severe MDD from healthy controls(HCs) through high-resolution, untargeted metabolomics.

Methods: Serum samples from 125 MDD inpatients and 40 HCs were analyzed utilizing liquid chromatography(LC) and mass spectrometry(MS). A meticulously regulated multistage machine-learning pipeline with leakage-prevention protocols was employed to analyze differences between MDD and controls and to predict phenome scores.

Results: Feature selection showed that 16 metabolites and 6 functional modules reliably distinguished MDD. The functional profile of the metabolites indicates a convergence of lipotoxicity, phospholipid(PL) remodeling, disruptions in fatty acid(FA) metabolism, mitochondrial redox imbalance, ether-lipid metabolism, and antioxidant depletion. This MDD metabotype was not affected by metabolic syndrome(MetS). A substantial portion of the variance in overall depression severity (72.5%), physiosomatic symptoms (55.8%), and suicidal ideation(SI) (23.6%) was accounted for by increased lipotoxicity, PL remodeling, and FA storage/signaling. The recurrence of illness (27.7%) was associated with a self-reinforcing lipid-redox-inflammatory module that maintains cellular stress.

Discussion: The MDD metabotype represents a cohesive metabolic network that is associated with the NIMETOX pathogenesis of MDD. Metabolomics provides a comprehensive foundation for subtyping and precision psychiatry. Lipoxygenase-15, lipotoxicity, phospholipase A2, and lipid-redox intersections might be important drug targets to treat MDD.

Keywords: antioxidants; lipids; metabolism; neuro-immune; nomothetic precision psychiatry; oxidative and nitrosative stress.

MeSH terms

  • Adult
  • Female
  • Humans
  • Lipid Metabolism
  • Major Depressive Disorder* / blood
  • Major Depressive Disorder* / metabolism
  • Male
  • Metabolome
  • Metabolomics* / methods
  • Middle Aged
  • Oxidation-Reduction
  • Oxidative Stress
  • Phenotype
  • Signal Transduction / physiology