International Journal of Molecular Sciences (Dec 2023)

A Pilot Interaction Analysis of Gut Microbiota and Peripheral Markers of Aging in Severe Psychiatric Disorders: A Role for <i>Lachnoclostridium</i>?

  • Mirko Manchia,
  • Pasquale Paribello,
  • Claudia Pisanu,
  • Donatella Congiu,
  • Athos Antoniades,
  • Paris Vogazianos,
  • Federica Tozzi,
  • Federica Pinna,
  • Aristos Aristodimou,
  • Paola Caria,
  • Tinuccia Dettori,
  • Daniela Virginia Frau,
  • Cristina Cocco,
  • Barbara Noli,
  • Concetta Panebianco,
  • Valerio Pazienza,
  • Bernardo Carpiniello,
  • Alessio Squassina

DOI
https://doi.org/10.3390/ijms242417618
Journal volume & issue
Vol. 24, no. 24
p. 17618

Abstract

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Excessive predominance of pathological species in the gut microbiota could increase the production of inflammatory mediators at the gut level and, via modification of the gut–blood barrier, at the systemic level. This pro-inflammatory state could, in turn, increase biological aging that is generally proxied by telomere shortening. In this study, we present findings from a secondary interaction analysis of gut microbiota, aging, and inflammatory marker data from a cohort of patients with different diagnoses of severe mental disorders. We analyzed 15 controls, 35 patients with schizophrenia (SCZ), and 31 patients with major depressive disorder (MDD) recruited among those attending a community mental health center (50 males and 31 females, mean and median age 46.8 and 46.3 years, respectively). We performed 16S rRNA sequencing as well as measurement of telomere length via quantitative fluorescence in situ hybridization and high-sensitivity C-reactive protein. We applied statistical modeling with logistic regression to test for interaction between gut microbiota and these markers. Our results showed statistically significant interactions between telomere length and gut microbiota pointing to the genus Lachnostridium, which remained significantly associated with a reduced likelihood of MDD even after adjustment for a series of covariates. Although exploratory, these findings show that specific gut microbiota signatures overexpressing Lachnoclostridium and interacting with biological aging could modulate the liability for MDD.

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