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A Murine Model of Stent Implantation in the Carotid Artery for the Study of Restenosis
Published on: May 14, 2013
Restenosis in Intervened Coronaries with Hyperhomocysteinemia (RICH)
Samuel A Kojoglanian1, Michael B Jorgensen, Girma Wolde-Tsadik
1Department of Internal Medicine, Section of Cardiology, and the Cardiac Catheterization aboratory, Kaiser Permanente Medical Center, Los Angeles, Calif, USA.
Insights
Elevated serum homocysteine levels significantly increase the risk of restenosis after percutaneous coronary intervention. A homocysteine level of 11.1 micromol/L or higher is a strong predictor of restenosis, highlighting its importance in cardiovascular risk assessment.
Area of Science:
- Cardiology
- Clinical Biochemistry
Background:
- Restenosis after percutaneous coronary intervention (PCI) is a significant clinical challenge.
- The role of elevated serum homocysteine levels in increasing restenosis risk remains debated.
Purpose of the Study:
- To investigate the association between elevated serum homocysteine levels and the risk of restenosis following PCI.
- To determine if homocysteine levels can predict restenosis after coronary stenting.
Main Methods:
- A cohort of 202 patients undergoing PCI with stenting were enrolled.
- Fasting serum homocysteine levels were measured before PCI.
- Patients were monitored for recurrent symptoms; those with clinical restenosis underwent repeat angiography.
Main Results:
- Univariate analysis showed age, stent length, diameter, and homocysteine levels were associated with restenosis risk.
- In multivariate analysis, only homocysteine levels remained a significant predictor of restenosis.
- Mean homocysteine levels were significantly higher in the restenosis group (13.7 µmol/L) versus the non-restenosis group (9.6 µmol/L).
- A homocysteine threshold of ≥11.1 µmol/L predicted restenosis with 75% sensitivity and 77% specificity (OR 6.5).
Conclusions:
- Elevated serum homocysteine levels are strongly correlated with an increased risk of restenosis after PCI.
- Homocysteine serves as a valuable biomarker for predicting restenosis in patients undergoing coronary stenting.
Background:
Controversy exists regarding the contribution made by elevated serum homocysteine evels in raising the risk of restenosis after percutaneous coronary interventions. The objective of this study was to determine whether elevated homocysteine evels increase the risk of restenosis.
Methods:
Two hundred and two consecutive patients undergoing percutaneous coronary intervention with stents on previously nonintervened native coronary arteries were eligible for enrollment in the study. Before the percutaneous coronary intervention, a fasting serum homocysteine evel was drawn. Patients were followed-up by their primary cardiologists for recurrence of symptoms. Those patients who had a recurrence of anginal symptoms consistent with clinical restenosis were referred for a repeat angiogram. All other patients were followed-up medically. The homocysteine evels of the patients who had repeat angiography for recurrent symptoms were compared to those who were followed-up medically.
Results:
Age, stent ength, stent diameter, and homocysteine evels were all associated with an increased risk of restenosis in the univariate analysis. In the multiple ogistic regression model, the only variable that remained significant in relation to an increased risk of restenosis was homocysteine. There was a significant difference in the mean homocysteine evels between the restenosis group (13.7 micromol/L) and those without restenosis (9.6 micromol/L; P <.0001). A homocysteine evel > or =11.1 micromol/L was identified as the best threshold for an increased risk of restenosis with a sensitivity of 75.0% and specificity of 76.9% (OR 6.5, CI 2.3-18.6; P =.0004).
Conclusion:
This study demonstrates that elevated homocysteine evels strongly correlate with an increased risk of restenosis.
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