Frontiers in immunology

Changes in Tryptophan Metabolism in Obesity Linked to Body-Wide Inflammation

Updated

Abstract

Obese adults exhibited a higher /TRP ratio and lower levels of and compared to non-obese controls.

  • Alterations in tryptophan metabolism were observed in obese individuals, characterized by changes in KYN and indole pathways.
  • Plasma levels of KYN were significantly higher in obese subjects, while serotonin and indole levels were lower.
  • Increased levels of systemic inflammation markers, hsIL-6 and hsCRP, were found in obese participants.
  • There is an association between altered TRP metabolic pathways and systemic inflammation in obesity.

Simplified

Key numbers

F=37.79<
Decrease in TRP Level
Plasma levels of TRP were significantly lower in obese individuals.
F=9.77<
Increase in /TRP Ratio
Obese subjects exhibited a higher /TRP ratio than non-obese controls.
F=102.50<
Increase in hsCRP Levels
Serum levels of hsCRP were significantly higher in obese subjects.

Full Text

What this is

  • This research investigates the metabolic pathways of tryptophan (TRP) in obese individuals compared to non-obese controls.
  • It focuses on tryptophan's conversion to () and , both of which are linked to systemic inflammation.
  • Eighty-five obese adults and forty-two non-obese controls were analyzed for plasma levels of TRP metabolites and inflammatory markers.

Essence

  • Obese individuals exhibit significant alterations in TRP metabolism, characterized by increased /TRP ratios and decreased levels of (5-HT) and , correlating with systemic inflammation.

Key takeaways

  • Obese subjects had a higher /TRP ratio and lower levels of TRP and 5-HT compared to non-obese controls. This indicates an increased activation of the pathway, which is associated with inflammation.
  • Plasma levels of indole metabolites (IAA, ILA, IPA) were significantly decreased in obese individuals. This suggests that obesity disrupts the microbial metabolism of TRP, impacting immune function.
  • Serum levels of inflammatory markers hsCRP and hsIL-6 were elevated in obese participants. These markers correlated positively with the /TRP ratio and negatively with TRP and indole levels, indicating a link between inflammation and TRP metabolism.

Caveats

  • The study did not assess fecal levels of or perform microbiota characterization, limiting insights into gut microbiota's role in TRP metabolism.
  • Only hsCRP and hsIL-6 were measured as inflammatory markers, suggesting that a broader spectrum of inflammatory factors could provide more comprehensive insights.
  • No dietary intake data were collected, which could clarify the relationship between TRP levels and dietary habits in obese vs. non-obese subjects.

Definitions

  • Kynurenine (KYN): A metabolite of tryptophan that is associated with inflammation and immune responses.
  • Serotonin (5-HT): A neurotransmitter derived from tryptophan, important for mood regulation and gut function.
  • Indoles: Compounds produced from tryptophan by gut bacteria, involved in modulating immune responses.

Simplified

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