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Updated: Jan 26, 2026

A Murine Model of Stent Implantation in the Carotid Artery for the Study of Restenosis
Published on: May 14, 2013
Impaired Cholesterol-Uptake Capacity of HDL Might Promote Target-Lesion Revascularization by Inducing
Yuichiro Nagano1, Hiromasa Otake1, Takayoshi Toba1
11 Division of Cardiovascular Medicine Department of Internal Medicine Kobe University Graduate School of Medicine Kobe Japan.
Insights
Impaired high-density lipoprotein (HDL) functionality, measured by cholesterol-uptake capacity (CUC), is linked to neoatherosclerosis and target-lesion revascularization after coronary stenting. Assessing HDL function may improve patient outcome predictions.
Area of Science:
- Cardiology
- Biochemistry
- Medical Devices
Background:
- High-density lipoprotein (HDL) functionality is crucial for cardiovascular health.
- Assessing HDL's cholesterol-uptake capacity (CUC) provides a functional measure.
- Coronary stenting requires understanding factors influencing long-term outcomes.
Purpose of the Study:
- To evaluate the association between HDL functionality (CUC) and neoatherosclerosis in patients with coronary stents.
- To determine if impaired HDL function predicts target-lesion revascularization (TLR).
- To explore the role of HDL CUC in stent failure mechanisms.
Main Methods:
- Utilized a rapid cell-free assay to measure HDL cholesterol-uptake capacity (CUC).
- Enrolled 207 patients from an optical coherence tomography (OCT) registry post-stenting.
- Performed follow-up OCT and clinical assessments for neoatherosclerosis and TLR.
Main Results:
- Decreased HDL CUC was independently associated with neoatherosclerosis (OR, 0.799; P<0.001).
- Lower CUC correlated significantly with increased target-lesion revascularization (OR, 0.887; P=0.003).
- Evidence suggests neoatherosclerosis mediates the link between CUC and TLR.
Conclusions:
- Impaired HDL functionality (decreased CUC) may predict stent failure via atherogenic changes.
- Assessing both HDL quantity and quality can enhance prediction of post-stent implantation outcomes.
- Functional HDL assessment offers a novel approach to personalize cardiovascular risk stratification.
Abstract:
Background We evaluated the importance of high-density lipoprotein (HDL) functionality for target-lesion revascularization in patients treated with coronary stents using a rapid cell-free assay system to evaluate the functional capacity of HDL to accept additional cholesterol (cholesterol-uptake capacity; CUC). Methods and Results From an optical coherence tomography (OCT) registry of patients treated with coronary stents, 207 patients were enrolled and their HDL was functionally evaluated by measuring the CUC. Follow-up OCT was performed (median duration, 24.5 months after stenting) to evaluate the presence of neoatherosclerosis. Clinical follow-up was performed to assess target-lesion revascularization for a median duration of 42.3 months after stent implantation. Neoatherosclerosis was identified in 37 patients (17.9%). Multivariate logistic regression analysis revealed that a decreased CUC was independently associated with neoatherosclerosis (odds ratio, 0.799; P<0.001). The CUC showed a significant inverse correlation with incidence of target-lesion revascularization (odds ratio, 0.887; P=0.003) and with lipid accumulation inside stents, suggesting that neoatherosclerosis contributes to the association between CUC and target-lesion revascularization. Conclusions Impaired HDL functionality, detected as decreased CUC, might lead to future stent failure by provoking atherogenic changes of the neointima within stents. Both quantitative and qualitative assessments of HDL might enable the improved prediction of clinical outcomes after stent implantation.
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