Proteomic characterization of human coronary thrombus in patients with ST-segment elevation acute myocardial

Sergio Alonso-Orgaz1, Rafael Moreno-Luna1, Juan A López2

  • 1Department of Vascular Physiopathology, Hospital Nacional de Paraplejicos, SESCAM, Toledo, Spain.

Journal of Proteomics
|July 29, 2014
PubMed

Insights

Researchers characterized the human coronary thrombus proteome in ST-segment elevation myocardial infarction (STEMI) patients. They identified 708 proteins, finding 5 linked to platelet activation and DIDO1 protein elevated in STEMI patient plasma, suggesting potential biomarkers.

Area of Science:

  • Cardiovascular Biology
  • Proteomics
  • Biochemistry

Background:

  • Acute myocardial infarction with ST-segment elevation (STEMI) involves coronary artery occlusion by thrombus.
  • The proteomic composition of coronary thrombi in STEMI remains largely uncharacterized.

Purpose of the Study:

  • To perform an in-depth proteomic characterization of human coronary thrombi in STEMI patients.
  • To identify potential biomarkers for thrombosis and therapeutic targets.

Main Methods:

  • Utilized three proteomic approaches: 2-DE/MALDI MS/MS, 1-DE/LC-MALDI-MS/MS, and 1-DE/LC-ESI-MS/MS.
  • Identified 708 proteins in thrombi and quantified fibrin and cell markers using selected reaction monitoring (SRM).

Main Results:

  • Identified 708 proteins in coronary thrombi.
  • Found a positive correlation between 5 proteins (fermitin homolog 3, thrombospondin-1, myosin-9, beta parvin, ras-related protein Rap-1b) and CD41, indicating potential focal adhesion pathway activation in platelets.
  • Observed that death-inducer obliterator 1 (DIDO1) protein expression correlated negatively with thrombus fibrin and was upregulated in STEMI patient plasma.

Conclusions:

  • Proteomic characterization enhances understanding of acute coronary syndrome mechanisms.
  • Identified potential therapeutic targets for thrombotic diseases.
  • Described a novel methodology for thrombus characterization, linking protein expression to cellular and ECM composition.

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