Culprit plaque morphology determines inflammatory risk and clinical outcomes in acute coronary syndrome
Teresa Gerhardt1,2,3, Claudio Seppelt1,2,4,5, Youssef S Abdelwahed1,2
1Department of Cardiology, Angiology and Intensive Care Medicine CBF, Deutsches Herzzentrum der Charité, Germany and Berlin Institute of Health (BIH), Hindenburgdamm 30, Berlin 12203, Germany.
Insights
Patients with intact fibrous cap erosion (IFC-ACS) have better outcomes and lower inflammation than fibrous cap rupture (RFC-ACS) in acute coronary syndromes (ACS). This suggests personalized anti-inflammatory therapies may improve ACS patient prognosis.
Area of Science:
- Cardiology
- Inflammation Research
- Translational Medicine
Background:
- Acute coronary syndromes (ACS) arise from fibrous cap rupture (RFC-ACS) or intact fibrous cap erosion (IFC-ACS).
- Clinical outcomes and inflammatory profiles associated with RFC-ACS versus IFC-ACS remain unclear.
- Understanding these differences is crucial for targeted ACS patient management.
Purpose of the Study:
- To investigate the impact of culprit lesion phenotype (RFC-ACS vs. IFC-ACS) on inflammatory profiles.
- To compare clinical outcomes, specifically major adverse cardiovascular events plus (MACE+), between RFC-ACS and IFC-ACS patients.
- To explore the role of specific inflammatory markers in ACS prognosis.
Main Methods:
- Prospective analysis of 398 consecutive ACS patients.
- Classification of ACS based on culprit lesion phenotype: RFC-ACS (62%) and IFC-ACS (25%).
- Assessment of 2-year MACE+ rates and comprehensive proteomic/inflammatory profiling at baseline and 90 days.
Main Results:
- IFC-ACS patients exhibited significantly lower MACE+ rates (14.3%) compared to RFC-ACS patients (26.7%).
- IFC-ACS was associated with lower overall inflammatory proteome expression, including IL-6 and IL-1β response proteins.
- Plasma IL-1β levels decreased post-IFC-ACS but remained stable post-RFC-ACS; IL-6 levels decreased in RFC-ACS patients without MACE+.
Conclusions:
- Intact fibrous cap erosion (IFC-ACS) is linked to a distinct, less inflammatory response and a better prognosis in ACS patients.
- Findings highlight the importance of plaque phenotype in ACS pathophysiology and inflammatory cascades.
- This study provides a basis for future clinical trials evaluating personalized anti-inflammatory strategies for ACS management.
Aims:
Rupture of the fibrous cap (RFC) and erosion of an intact fibrous cap (IFC) are the two predominant mechanisms causing acute coronary syndromes (ACS). It is uncertain whether clinical outcomes are different following RFC-ACS vs. IFC-ACS and whether this is affected by a specific inflammatory response. The prospective, translational OPTIcal-COherence Tomography in Acute Coronary Syndrome study programme investigates the impact of the culprit lesion phenotype on inflammatory profiles and prognosis in ACS patients.
Methods And Results:
This analysis included 398 consecutive ACS patients, of which 62% had RFC-ACS and 25% had IFC-ACS. The primary endpoint was a composite of cardiac death, recurrent ACS, hospitalization for unstable angina, and target vessel revascularization at 2 years [major adverse cardiovascular events (MACE+)]. Inflammatory profiling was performed at baseline and after 90 days. Patients with IFC-ACS had lower rates of MACE+ than those with RFC-ACS (14.3% vs. 26.7%, P = 0.02). In 368-plex proteomic analyses, patients with IFC-ACS showed lower inflammatory proteome expression compared with those with RFC-ACS, including interleukin-6 and proteins associated with the response to interleukin-1β. Circulating plasma levels of interleukin-1β decreased from baseline to 3 months following IFC-ACS (P < 0.001) but remained stable following RFC-ACS (P = 0.25). Interleukin-6 levels decreased in patients with RFC-ACS free of MACE+ (P = 0.01) but persisted high in those with MACE+.
Conclusion:
This study demonstrates a distinct inflammatory response and a lower risk of MACE+ following IFC-ACS. These findings advance our understanding of inflammatory cascades associated with different mechanisms of plaque disruption and provide hypothesis generating data for personalized anti-inflammatory therapeutic allocation to ACS patients, a strategy that merits evaluation in future clinical trials.
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