Modulation of SIRT1/PPARγ pathways and tight junction proteins by nicotinamide riboside under chronic variable stress

Abdullah Celik1, Nurhan Sahin1, Cemal Orhan1

  • 1Department of Animal Nutrition, Faculty of Veterinary Medicine, Firat University, Elazig, 23119, Türkiye.

Insights

Nicotinamide riboside (NR) supplementation effectively counteracted chronic stress effects in rats, improving liver health, gut barrier function, and glucose metabolism. NR offers a promising alternative for managing stress-related metabolic disorders.

Area of Science:

  • Metabolic health
  • Stress physiology
  • Nutritional biochemistry

Background:

  • Chronic stress disrupts homeostasis, causing liver damage, gut dysfunction, and metabolic issues.
  • Current treatments have adverse effects, necessitating safer alternatives.
  • Nicotinamide riboside (NR), a NAD+ precursor, is linked to reduced chronic disease risk, but its role in stress response is unclear.

Purpose of the Study:

  • To investigate the effects of NR supplementation on rats exposed to chronic variable stress (CVS).
  • To assess NR's impact on liver metabolism, intestinal barrier integrity, and related protein pathways under stress.

Main Methods:

  • Fifty-six male Sprague Dawley rats were subjected to CVS and treated with varying doses of NR (0-600 mg/kg).
  • Biochemical markers (glucose, corticosterone, NAD+), hepatic markers (PPARγ, SIRT1), and intestinal proteins (tight/adherens junctions) were analyzed.

Main Results:

  • CVS increased glucose, corticosterone, and ACTH, while decreasing NAD+ and related metabolites.
  • NR supplementation normalized these imbalances and upregulated hepatic markers.
  • NR enhanced intestinal transport proteins and tight/adherens junction proteins, improving barrier function.
  • High-dose NR alleviated liver fibrosis and improved glucose metabolism.

Conclusions:

  • NR supplementation effectively mitigates chronic stress-induced liver, intestinal, and glucose dysregulation.
  • NR improves key metabolic and gut health biomarkers under stress.
  • NR demonstrates therapeutic potential as a safe alternative for stress-related metabolic disorders.

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