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Partial Serotonin Transporter Deficiency Modulates Plasma Metabolome, Arginine-Nitric Oxide Pathway and Emotional Behavior in Mice Exposed to Western Diet

  • Anna Gorlova
  • , Raymond Cespuglio
  • , Angelika Schmitt-Bohrer
  • , Alexey Deykin
  • , Allan V. Kalueff
  • , Ksenia Lebedeva
  • , Andrey Nedorubov
  • , Gabriela Ortega Shulte
  • , Evgeniy Svirin
  • , Aleksey Lyundup
  • , Klaus-Peter Lesch
  • , Tatyana Strekalova*
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Background/Objectives: Reduced serotonin transporter (SERT) function is associated with increased vulnerability to emotional and metabolic dysregulation, particularly in elderly women. Most preclinical studies relied on young male rodents with complete Sert deficiency; the Western diet (WD) acerbates these abnormalities. However, complete Sert loss does not fully reflect the human condition of partial SERT dysfunction. Here, we examined the effects of WD in aged female Sert(+/-) mice on metabolic, biochemical, molecular, and behavioral outcomes. Methods: Wild-type (WT) and Sert(+/-) mice were fed WD or a control diet. Emotionality, cognition, glucose tolerance (GT), plasma (HNMR)-H-1 spectroscopy metabolome and biochemical parameters were studied. Gene expression analyses of nitric oxide (NO)-related markers were performed in the hypothalamus, dorsal raphe, and liver. Results: WD-exposed WT mice showed impaired GT and reduced plasma lactate and branched-chain amino acid levels; metabolome changes were more pronounced in mutants, while GT was unchanged. Na & iuml;ve Sert(+/-) mice exhibited lower lactate and alanine levels compared with WT controls. WD increased leptin and cholesterol levels in both genotypes, whereas triglyceride concentrations were reduced in Sert(+/-) mice. Both WD and Sert deficiency increased Nos expression, while arginase expression was differentially regulated by genotype and diet. Malondialdehyde levels were elevated in the prefrontal cortex of Sert(+/-) mice regardless diet. WD also impaired object recognition memory and induced anxiety- and depression-like behaviors, with more pronounced effects in Sert(+/-) mice, except marble test behavior. Conclusions: Partial Sert deficiency aggravates some but not all WD-induced metabolic alterations, enhances oxidative stress, dysregulates arginine-NO signaling, and modifies behavior, highlighting the translational relevance of Sert(+/-) mice for modeling SERT dysfunction.
Original languageEnglish
Article number117
Number of pages27
JournalMetabolites
Volume16
Issue number2
DOIs
Publication statusPublished - 9 Feb 2026

Keywords

  • serotonin transporter (SERT)
  • Sert(+/-) mice
  • Western diet
  • aging
  • metabolomics
  • glucose tolerance
  • nitric oxide signaling
  • oxidative stress
  • emotionality
  • memory
  • TLR4 UP-REGULATION
  • OXIDATIVE STRESS
  • OBESITY
  • DEPRESSION
  • EXPRESSION
  • ANXIETY
  • BRAIN
  • ASSOCIATION
  • SYNTHASE
  • LACTATE

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