CBS 2019
CBSMD教育中心
English

科学研究

科研文章

荐读文献

Evolving insights into the role of local shear stress in late stent failure from neoatherosclerosis formation and plaque destabilization Transseptal puncture versus patent foramen ovale or atrial septal defect access for left atrial appendage closure Functional Mitral Regurgitation Outcome and Grading in Heart Failure With Reduced Ejection Fraction Strain-Guided Management of Potentially Cardiotoxic Cancer Therapy Management and outcomes of patients with left atrial appendage thrombus prior to percutaneous closure Hemodynamic, Functional, and Clinical Responses to Pulmonary Artery Denervation in Patients With Pulmonary Arterial Hypertension of Different Causes Rivaroxaban for Thromboprophylaxis in High-Risk Ambulatory Patients With Cancer Long-Term Outcomes of Patients With Mediastinal Radiation–Associated Coronary Artery Disease Undergoing Coronary Revascularization With Percutaneous Coronary Intervention and Coronary Artery Bypass Grafting Implications of the local hemodynamic forces on the formation and destabilization of neoatherosclerotic lesions Potential Candidates for Transcatheter Tricuspid Valve Intervention After Transcatheter Aortic Valve Replacement: Predictors and Prognosis

Original ResearchNov 08, 2021.

JOURNAL:J Am Coll Cardiol Img. Article Link

Plaque Rupture, compared to Plaque Erosion, is associated with Higher Level of Pan-coronary Inflammation

A Nakajima , T Sugiyama , M Araki et al. Keywords: plaque rupture; plaque erosion; inflammation; ASCVD;

ABSTRACT

BACKGROUND - Vascular inflammation plays a key role in plaque rupture, while the role of inflammation in plaque erosion remains less well defined. Peri-coronary adipose tissue (PCAT) attenuation determined by computed tomography has emerged as a marker specific for coronary artery inflammation.

 

OBJECTIVES - To compare the level of coronary inflammation between plaque rupture and plaque erosion using PCAT attenuation.

 

METHODS - Patients with non-ST-segment elevation acute coronary syndromes who underwent pre-intervention coronary computed tomography angiography and optical coherence tomography culprit lesion imaging were enrolled. PCAT attenuation was measured around the culprit lesion and in the proximal 40mm of all coronary arteries.

 

RESULTS - Out of 198 patients, plaque rupture was the underlying mechanism in 107 patients (54.0%) and plaque erosion in 91 (46.0%) patients. Plaque rupture had higher PCAT attenuation than plaque erosion both at the culprit plaque level (-65.8 ± 7.5 vs. -69.5 ± 11.4 Hounsfield unit [HU], p = 0.010) and at the culprit vessel level (-67.1 ± 7.1 vs. -69.6 ± 8.2 HU, p = 0.024). The mean PCAT attenuation of all 3 coronary arteries was also significantly higher in patients with plaque rupture than in plaque erosion indicating a higher level of inflammation (-67.9 ± 5.7 vs. -69.9 ± 6.8 HU, p = 0.030). In multivariable analysis, plaque rupture was significantly associated with high PCAT attenuation.

 

CONCLUSIONS - PCAT attenuation in culprit plaque, culprit vessel, and all 3 coronary arteries was higher in plaque rupture than in plaque erosion. The results suggest pan-coronary inflammation plays a more significant role in plaque rupture than in plaque erosion.