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Lipid-Core Plaque Assessed by Near-Infrared Spectroscopy and Procedure Related Microvascular Injury
Hyoung Mo Yang1, Myeong Ho Yoon2, Hong Seok Lim1
1Department of Cardiology, Ajou University School of Medicine, Suwon, Korea.
Background And Objectives:
Microvascular damage due to distal embolization during percutaneous coronary intervention (PCI) is an important cause of periprocedural myocardial infarction. We assessed the lipid-core plaque using near-infrared spectroscopy (NIRS) and microvascular dysfunction invasively with the index of microcirculatory resistance (IMR) and evaluated their relationship.
Methods:
This study is pilot retrospective observational study. We analyzed 39 patients who performed NIRS before and after PCI, while fractional flow reserve, thermo-dilution coronary flow reserve (CFR) and IMR were measured after PCI. The maximum value of lipid core burden index (LCBI) for any of the 4-mm segments at the culprit lesion (culprit LCBI4mm) was calculated at the culprit lesion. We divided the patients into 2 groups using a cutoff of culprit LCBI4mm ≥500.
Results:
Mean pre-PCI LCBI was 333±196 and mean post-PCI IMR was 20±14 U. Post-PCI IMR was higher (15.6±7.3 vs. 42.6±17.6 U, p<0.001) and post-PCI CFR was lower (3.7±2.2 vs. 2.1±1.0, p=0.029) in the high LCBI group. Pre-PCI LCBI was positively correlated with post-PCI IMR (ρ=0.358, p=0.025) and negatively correlated with post-PCI CFR (ρ=-0.494, p=0.001). The incidence of microvascular dysfunction (IMR ≥25 U) was higher in the high LCBI group (9.4% vs. 85.7%, p<0.001). However, there were no significant differences in the incidences of creatine Kinase-MB (9.4% vs. 14.3%, p=0.563) and troponin-I elevation (12.5% vs. 14.3%, p=1.000).
Conclusions:
A large lipid-core plaque at the 'culprit' lesion is observed higher incidence of post-PCI microvascular dysfunction after PCI. Prospective study with adequate subject numbers will be needed.
Insights
Large lipid-core plaques identified by near-infrared spectroscopy (NIRS) are linked to increased microvascular dysfunction after percutaneous coronary intervention (PCI). This finding highlights plaque characteristics as a predictor of procedural complications.
Area of Science:
- Cardiology
- Interventional Cardiology
- Vascular Biology
Background:
- Distal embolization during percutaneous coronary intervention (PCI) can cause microvascular damage and myocardial infarction.
- Assessing lipid-core plaque burden and microvascular function is crucial for understanding PCI outcomes.
Purpose of the Study:
- To evaluate the relationship between lipid-core plaque characteristics, assessed by near-infrared spectroscopy (NIRS), and microvascular dysfunction, measured by the index of microcirculatory resistance (IMR), after PCI.
Main Methods:
- A pilot retrospective observational study involving 39 patients undergoing PCI.
- Near-infrared spectroscopy (NIRS) was used to measure lipid-core burden index (LCBI) before and after PCI.
- Index of microcirculatory resistance (IMR) and coronary flow reserve (CFR) were measured invasively post-PCI.
Main Results:
- Patients with high culprit lesion LCBI (≥500) exhibited significantly higher post-PCI IMR and lower post-PCI CFR compared to those with lower LCBI.
- Pre-PCI LCBI positively correlated with post-PCI IMR and negatively correlated with post-PCI CFR.
- The incidence of microvascular dysfunction (IMR ≥25 U) was substantially higher in the high LCBI group (85.7% vs. 9.4%).
Conclusions:
- A large lipid-core plaque at the culprit lesion is associated with a higher incidence of post-PCI microvascular dysfunction.
- These findings suggest plaque composition is a significant factor in PCI-related microvascular complications.
- Further prospective studies with larger cohorts are warranted to confirm these results.
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