Molecular imaging identifies regions with microthromboemboli during primary angioplasty in acute coronary thrombosis

Tadamichi Sakuma1, Jiri Sklenar, Howard Leong-Poi

  • 1Cardiovascular Imaging Center and Experimental Cardiology Laboratory, Cardiovascular Division, Department of Medicine, University of Virginia Health System, Charlottesville, Virginia 22908, USA.

Abstract

Insights

Microthromboemboli (MTE) in acute myocardial infarction (AMI) can be detected using in vivo thrombus labeling. This imaging technique helps quantify MTE, showing its correlation with infarct size and potential for improved adjuvant therapy during percutaneous transluminal coronary angioplasty (PTCA).

Area of Science:

  • Cardiology
  • Nuclear Medicine
  • Thrombosis Research

Background:

  • Microthromboemboli (MTE) are implicated in the no-reflow phenomenon following acute myocardial infarction (AMI).
  • Identifying and quantifying MTE is crucial for understanding its contribution to myocardial damage and for guiding therapeutic interventions.

Purpose of the Study:

  • To evaluate the efficacy of in vivo (99m)Tc labeling of coronary thrombus using DMP-444 for identifying myocardial MTE in acute coronary syndromes.
  • To correlate the extent and magnitude of MTE with infarct size after primary percutaneous transluminal coronary angioplasty (PTCA).

Main Methods:

  • Fifteen dogs with induced left anterior descending coronary artery (LAD) injury to create thrombus underwent in vivo labeling with (99m)Tc-DMP-444.
  • Myocardial blood flow (MBF) and risk area (RA) were measured before and after PTCA.
  • (99m)Tc autoradiography was performed ex vivo to quantify MTE.

Main Results:

  • Dogs with LAD injury and thrombus showed a significantly higher ratio of hot spot size to RA size compared to dogs without thrombus (90% vs. 42%, P = 0.005).
  • Control dogs had a significantly lower ratio (29%, P = 0.05).
  • (99m)Tc activity in the RA was higher in dogs with AMI compared to those without AMI (1.8 vs. 1.24, P = 0.02).

Conclusions:

  • In vivo thrombus labeling can effectively detect and quantify MTE after primary PTCA.
  • The extent of MTE is proportional to infarct size, supporting its role in AMI pathophysiology.
  • This imaging approach may offer valuable insights for optimizing adjuvant therapies during PTCA in AMI patients.