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TMAO and Cardiovascular Disease: Exploring Its Potential as a Biomarker
by
Chiscop, Iulia
, Gurau, Gabriela
, Amaritei, Octavian
, Dinu, Ciprian Adrian
, Mierlan, Oana Laura
, Matei, Madalina Nicoleta
, Gutu, Cristian
in
Animals
/ Atherosclerosis
/ B cells
/ Biochemistry
/ Biomarkers
/ Biomarkers - analysis
/ Biomarkers - blood
/ Blood pressure
/ Cardiovascular disease
/ Cardiovascular diseases
/ Cardiovascular Diseases - blood
/ Cardiovascular Diseases - etiology
/ Cardiovascular Diseases - physiopathology
/ Cholesterol
/ Choline
/ Development and progression
/ Fatty acids
/ Gastrointestinal Microbiome - physiology
/ Gastrointestinal system
/ gut microbiome
/ Gut microbiota
/ Heart failure
/ Humans
/ Hypertension
/ Kinases
/ Medical research
/ Medicine, Experimental
/ Metabolism
/ Metabolites
/ Methylamines - adverse effects
/ Methylamines - analysis
/ Methylamines - blood
/ Methylamines - metabolism
/ Microbiota (Symbiotic organisms)
/ Mortality
/ Nitric oxide
/ Review
/ TMAO
/ Tumor necrosis factor-TNF
/ Type 2 diabetes
2025
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TMAO and Cardiovascular Disease: Exploring Its Potential as a Biomarker
by
Chiscop, Iulia
, Gurau, Gabriela
, Amaritei, Octavian
, Dinu, Ciprian Adrian
, Mierlan, Oana Laura
, Matei, Madalina Nicoleta
, Gutu, Cristian
in
Animals
/ Atherosclerosis
/ B cells
/ Biochemistry
/ Biomarkers
/ Biomarkers - analysis
/ Biomarkers - blood
/ Blood pressure
/ Cardiovascular disease
/ Cardiovascular diseases
/ Cardiovascular Diseases - blood
/ Cardiovascular Diseases - etiology
/ Cardiovascular Diseases - physiopathology
/ Cholesterol
/ Choline
/ Development and progression
/ Fatty acids
/ Gastrointestinal Microbiome - physiology
/ Gastrointestinal system
/ gut microbiome
/ Gut microbiota
/ Heart failure
/ Humans
/ Hypertension
/ Kinases
/ Medical research
/ Medicine, Experimental
/ Metabolism
/ Metabolites
/ Methylamines - adverse effects
/ Methylamines - analysis
/ Methylamines - blood
/ Methylamines - metabolism
/ Microbiota (Symbiotic organisms)
/ Mortality
/ Nitric oxide
/ Review
/ TMAO
/ Tumor necrosis factor-TNF
/ Type 2 diabetes
2025
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Do you wish to request the book?
TMAO and Cardiovascular Disease: Exploring Its Potential as a Biomarker
by
Chiscop, Iulia
, Gurau, Gabriela
, Amaritei, Octavian
, Dinu, Ciprian Adrian
, Mierlan, Oana Laura
, Matei, Madalina Nicoleta
, Gutu, Cristian
in
Animals
/ Atherosclerosis
/ B cells
/ Biochemistry
/ Biomarkers
/ Biomarkers - analysis
/ Biomarkers - blood
/ Blood pressure
/ Cardiovascular disease
/ Cardiovascular diseases
/ Cardiovascular Diseases - blood
/ Cardiovascular Diseases - etiology
/ Cardiovascular Diseases - physiopathology
/ Cholesterol
/ Choline
/ Development and progression
/ Fatty acids
/ Gastrointestinal Microbiome - physiology
/ Gastrointestinal system
/ gut microbiome
/ Gut microbiota
/ Heart failure
/ Humans
/ Hypertension
/ Kinases
/ Medical research
/ Medicine, Experimental
/ Metabolism
/ Metabolites
/ Methylamines - adverse effects
/ Methylamines - analysis
/ Methylamines - blood
/ Methylamines - metabolism
/ Microbiota (Symbiotic organisms)
/ Mortality
/ Nitric oxide
/ Review
/ TMAO
/ Tumor necrosis factor-TNF
/ Type 2 diabetes
2025
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TMAO and Cardiovascular Disease: Exploring Its Potential as a Biomarker
Journal Article
TMAO and Cardiovascular Disease: Exploring Its Potential as a Biomarker
2025
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Overview
Gut microbiota has increasingly been shown to exert effects beyond the gastrointestinal tract, some of which are mediated through its metabolites, such as trimethylamine N-oxide (TMAO)—a compound converted by gut bacteria from dietary choline found predominantly in animal products that is associated with cardiovascular disease (CVD). However, a significant gap persists in human clinical trials assessing its potential causal role. This narrative review aims to present the current understanding of the gut microbiome, TMAO, and their relationship with CVD, while proposing future directions that may support the use of TMAO as a biomarker and guide potential interventions to reduce its harmful impact. Both animal and human studies have demonstrated a link between TMAO and CVD, with animal studies also indicating a causal effect—showing increased cardiovascular risk following TMAO administration and reduced risk when TMAO is eliminated. While direct extrapolation from animal models to humans is limited due to biological differences, these findings offer a foundation for the development of well-designed clinical trials in human populations. Although direct approaches to target TMAO—such as trimethylamine (TMA) lyase inhibitors and antisense oligonucleotide (ASO) therapy—have shown promising results in animal studies, they have yet to be investigated in human trials, leaving indirect strategies such as dietary changes and probiotics as the only currently available options.
Publisher
MDPI AG,Multidisciplinary Digital Publishing Institute (MDPI)
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