Identification and Validation of Plasma Metabolomics Reveal Potential Biomarkers for Coronary Heart Disease

Hong Fu1, Kaibin Zhu2, Daliang Zhou1

  • 1Department of Cardiology, First Hospital of Harbin City.

Insights

Researchers identified novel plasma biomarkers for early coronary heart disease (CHD) diagnosis using metabolomics. A nine-metabolite model accurately predicted CHD, offering a potential tool for clinical detection.

Area of Science:

  • Biochemistry
  • Cardiovascular Medicine
  • Biomarker Discovery

Background:

  • Coronary heart disease (CHD) is a leading cause of mortality with unclear molecular mechanisms.
  • Current diagnostic and preventive strategies for CHD lack reliability.
  • There is an urgent need for novel biomarkers for early CHD detection.

Purpose of the Study:

  • To explore untargeted plasma metabolomics for identifying biomarkers in newly diagnosed CHD patients.
  • To characterize the metabolic dysregulation associated with CHD.
  • To develop and validate a predictive model for CHD diagnosis.

Main Methods:

  • Plasma samples from CHD patients and controls were analyzed using liquid chromatography quadrupole time-of-flight mass spectrometry.
  • Differential metabolites were identified through univariate and multivariate statistical analyses.
  • A predictive model was built using binary logistic regression with identified metabolites.

Main Results:

  • Twenty-eight differential plasma metabolites were identified, with 11 increased and 17 decreased in CHD patients.
  • Key altered metabolic pathways included phospholipid, monoglyceride, and fatty acid metabolism.
  • A nine-metabolite panel demonstrated high diagnostic accuracy (AUC = 0.929) in an independent cohort.

Conclusions:

  • Plasma metabolomics provides insights into CHD-related metabolic alterations.
  • A combinatorial biomarker panel shows potential for supporting clinical CHD diagnosis.
  • This study highlights novel metabolic targets and diagnostic strategies for coronary heart disease.

Keywords:
LC/Q-TOF/MS

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