Combination of tea catechins and ornithine effectively activates the urea cycle: an in vitro and human pilot study

Eur J Appl Physiol. 2024 Mar;124(3):827-836. doi: 10.1007/s00421-023-05310-4. Epub 2023 Sep 14.

Abstract

Purpose: Accumulation of ammonia causes central and peripheral fatigue. This study aimed to investigate the synergistic effect of tea catechins and low-dose ornithine in activating the urea cycle to reduce blood ammonia levels during exercise.

Methods: We used hepatocyte-like cells derived from human-induced pluripotent stem (iPS) cells to assess the effect of tea catechins combined with ornithine on urea cycle activity. The urea production and expression of key genes involved in the metabolism of urea were investigated. We then examined the synergistic improvement in ammonia metabolism by tea catechins in combination with ornithine in a human pilot study.

Results: Tea catechins combined with ornithine increased urea cycle activity in hepatocyte-like cells derived from human iPS cells. Intake of 538.6 mg of tea catechins with 1592 mg of ornithine for 2 consecutive days during exercise loading suppressed the exercise-induced increase in the blood ammonia concentration as well as stabilized blood glucose levels.

Conclusion: Controlling the levels of ammonia, a toxic waste produced in the body, is important in a variety of situations, including exercise. The present study suggests that a heterogeneous combination of polyphenols and amino acids efficiently suppresses elevated ammonia during exercise in humans by a mechanism that includes urea cycle activation.

Trial registration: This study was registered in the University Hospital Medical Information Network Clinical Trial Registry (No. UMIN000035484, dated January 8, 2019).

Keywords: Ammonia; Exercise; Ornithine; Tea catechins; Urea cycle.

MeSH terms

  • Ammonia
  • Catechin* / pharmacology
  • Humans
  • Ornithine* / metabolism
  • Ornithine* / pharmacology
  • Pilot Projects
  • Tea / chemistry
  • Urea / metabolism

Substances

  • Ornithine
  • Catechin
  • Ammonia
  • Urea
  • Tea