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.

Related Concept Videos

Lung Capacity01:47

Lung Capacity

The air in the lungs is measured in volumes and capacities. Lung volume measures reflect the amount of air taken in, released, or left over after a lung function, like a single inhalation. Lung capacity measures are sums of two or more lung volume measures.
56.2K
Cholesterol: Significance and Regulation01:29

Cholesterol: Significance and Regulation

Although not a source of energy, cholesterol plays a significant role as a foundational structure for bile salts, steroid hormones, and vitamin D, as well as being a crucial component of plasma membranes. Approximately 15% of blood cholesterol is derived from our diet, with the remainder synthesized from acetyl CoA by the liver and intestines. Cholesterol is eliminated from the body through its conversion into bile salts, which are eventually discarded in the feces.
Considering cholesterol and...
1.3K
The Eukaryotic Promoter Region02:40

The Eukaryotic Promoter Region

The eukaryotic promoter region is a segment of DNA located upstream of a gene. It contains an RNA polymerase binding site, a transcription start site, and several cis-regulatory sequences.  The proximal promoter region is located in the vicinity of the gene and has cis-regulatory sequences and the core promoter. The core promoter is the binding site for RNA polymerase and is usually located between -35 and +35 nucleotides from the transcription start site. The distal promoter regions are...
18.7K
The Eukaryotic Promoter Region02:40

The Eukaryotic Promoter Region

3.8K
Respiratory Capacities01:24

Respiratory Capacities

Respiratory capacities are crucial indicators of lung function, representing the maximum amount of air an individual's respiratory system can handle during various breathing phases.
One key metric is the Inspiratory Capacity (IC), which represents the maximum amount of air that can be inhaled with full effort. IC is calculated by summing the tidal volume and inspiratory reserve volume, typically ranging from 2.4 to 3.6 liters.
The Functional Residual Capacity (FRC) represents the air in the...
1.4K
Respiratory Volumes and Capacities01:22

Respiratory Volumes and Capacities

The respiratory system is responsible for the intake of oxygen and the expulsion of carbon dioxide from the body. Respiratory volumes describe the volume of air in the lungs at different phases of the respiratory cycle. Tidal volume is the air breathed in and out during normal, quiet breathing. Inspiratory reserve volume is the air that can be forcefully inspired beyond the tidal volume. In contrast, expiratory reserve volume refers to the air that can be expelled from the lungs after a normal...
5.2K