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Implication of Trimethylamine N-Oxide (TMAO) in Disease: Potential Biomarker or New Therapeutic Target

Nutrients · 2018 · Vol. 10(10) · pp. 1398–1398
Manuel H. JaneiroMaría Luisa Ramírez RamírezFermı́n I. MilagroJ. Alfredo MartínézMaite Solas

Abstract

Trimethylamine N-oxide (TMAO) is a molecule generated from choline, betaine, and carnitine via gut microbial metabolism. The plasma level of TMAO is determined by several factors including diet, gut microbial flora, drug administration and liver flavin monooxygenase activity. In humans, recent clinical studies evidence a positive correlation between elevated plasma levels of TMAO and an increased risk for major adverse cardiovascular events. A direct correlation between increased TMAO levels and neurological disorders has been also hypothesized. Several therapeutic strategies are being explored to reduce TMAO levels, including use of oral broad spectrum antibiotics, promoting the growth of bacteria that use TMAO as substrate and the development of target-specific molecules. Despite the accumulating evidence, it is questioned whether TMAO is the mediator of a bystander in the disease process. Thus, it is important to undertake studies to establish the role of TMAO in human health and disease. In this article, we reviewed dietary sources and metabolic pathways of TMAO, as well as screened the studies suggesting possible involvement of TMAO in the etiology of cardiovascular and neurological disorders, underlying the importance of TMAO mediating inflammatory processes. Finally, the potential utility of TMAO as therapeutic target is also analyzed.

Gut microbiota and healthNutritional Studies and DietDiet and metabolism studiesTrimethylamine N-oxideBiomarkerGut floraCholineTrimethylamineDiseaseBetaineChemistryBiologyMedicine

MeSH terms

Cardiovascular DiseasesHumansMethylaminesNervous System DiseasesBiomarkersInflammation MediatorsMetabolic Networks and PathwaysMolecular Targeted Therapy

Funding

  • Gobierno de Navarra
  • Instituto de Salud Carlos III
Citations
606
FWCI
18.93
field-weighted impact
References
106
Percentile
100%
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Citations per year
Cited by
The Gut Microbiota and Inflammation: An Overview
International Journal of Environmental Research and Public Health · 2020 · 702 citations
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