Related Experiment Video
Updated: Oct 3, 2025

Author Spotlight: Integrated Multi-Omics Analysis for Unveiling Multicellular Immune Signatures in Clinical Heart Attack Cohorts
Published on: September 20, 2024
Metabolomic and microbiome profiling reveals personalized risk factors for coronary artery disease
Yeela Talmor-Barkan1,2,3,4, Noam Bar3,4, Aviv A Shaul1,2
1Department of Cardiology, Rabin Medical Center, Petah Tikva, Israel.
Insights
This study reveals distinct gut microbiome and serum metabolome signatures in acute coronary syndrome (ACS) patients, identifying a novel bacterial species linked to cardiovascular risk. These findings offer insights into the multifactorial nature of coronary artery disease (CAD).
Area of Science:
- Cardiovascular Research
- Metabolomics
- Microbiome Analysis
Background:
- Complex diseases like coronary artery disease (CAD) arise from multiple pathological mechanisms.
- Understanding the multifactorial basis of CAD is crucial for developing effective treatments.
Purpose of the Study:
- To investigate the multifactorial nature of CAD using comprehensive clinical and multi-omic profiling.
- To identify distinct serum metabolome and gut microbial signatures in patients with acute coronary syndrome (ACS).
Main Methods:
- Clinical and multi-omic profiling (serum metabolomics, gut microbiome) of 199 ACS patients and controls.
- Validation in a geographically distinct cohort.
- Correlation analysis of metabolic deviations with clinical parameters and cardiovascular outcomes.
Main Results:
- ACS patients exhibited unique serum metabolome and gut microbial profiles, including depletion of a novel Clostridiaceae species.
- This species correlated with metabolites linked to CAD risk.
- Metabolic deviations were person-specific and associated with clinical parameters and outcomes.
- A metabolomics-based BMI model predicted higher BMI in ACS patients, correlating with diabetes mellitus and CAD severity.
Conclusions:
- Serum metabolome and gut microbiome alterations are key in the multifactorial etiology of CAD.
- These findings highlight the potential of metabolomics for understanding risk factor heterogeneity in CAD.
- Metabolic aberrations may indicate earlier dysmetabolic phases preceding overt CAD.
Abstract:
Complex diseases, such as coronary artery disease (CAD), are often multifactorial, caused by multiple underlying pathological mechanisms. Here, to study the multifactorial nature of CAD, we performed comprehensive clinical and multi-omic profiling, including serum metabolomics and gut microbiome data, for 199 patients with acute coronary syndrome (ACS) recruited from two major Israeli hospitals, and validated these results in a geographically distinct cohort. ACS patients had distinct serum metabolome and gut microbial signatures as compared with control individuals, and were depleted in a previously unknown bacterial species of the Clostridiaceae family. This bacterial species was associated with levels of multiple circulating metabolites in control individuals, several of which have previously been linked to an increased risk of CAD. Metabolic deviations in ACS patients were found to be person specific with respect to their potential genetic or environmental origin, and to correlate with clinical parameters and cardiovascular outcomes. Moreover, metabolic aberrations in ACS patients linked to microbiome and diet were also observed to a lesser extent in control individuals with metabolic impairment, suggesting the involvement of these aberrations in earlier dysmetabolic phases preceding clinically overt CAD. Finally, a metabolomics-based model of body mass index (BMI) trained on the non-ACS cohort predicted higher-than-actual BMI when applied to ACS patients, and the excess BMI predictions independently correlated with both diabetes mellitus (DM) and CAD severity, as defined by the number of vessels involved. These results highlight the utility of the serum metabolome in understanding the basis of risk-factor heterogeneity in CAD.
More Related Videos
08:21Author Spotlight: A Pharmacodissection Approach to Uncover Mechanisms in Cardiovascular Disease Risk Populations
Published on: July 21, 2023
09:52A Clinical Metaproteomics Workflow Implemented within Galaxy Bioinformatics Platform to Analyze Host-Microbiome Interactions Underlying Human Disease
Published on: January 10, 2025
Related Concept Videos
Coronary Artery Disease I: Introduction
Coronary Artery Disease IV: Preventive Measures
Blood Studies for Cardiovascular System I: Cardiac Biomarkers
The essential diagnostic tools for detecting myocardial necrosis and monitoring individuals suspected of having acute coronary syndrome (ACS) include:
Troponins
Troponins, particularly cardiac troponins I and T, are the most precise and sensitive markers of myocardial injury. They are detectable within 4-6 hours of myocardial injury and remain...
Imaging Studies for Cardiovascular System VI: Calcium -Scoring CT
Coronary Artery Disease II: Pathophysiology
Lifestyle Factors and Health
Benefits of Physical Activity
Physical activity, whether through structured exercise or casual activities like walking, biking, or dancing, is a cornerstone of a...