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Published on: January 28, 2020
Lipoprotein(a) level does not predict restenosis after percutaneous transluminal coronary angioplasty
P Alaigh1, C J Hoffman, G Korlipara
1Department of Medicine, State University at New York at Stony Brook, USA.
Insights
Serum lipoprotein(a) [Lp(a)] is not a significant risk factor for restenosis after percutaneous transluminal coronary angioplasty (PTCA). The number of lesions dilated during PTCA is a significant risk factor for restenosis.
Area of Science:
- Cardiology
- Vascular Biology
- Clinical Research
Background:
- Serum lipoprotein(a) [Lp(a)] is a recognized risk factor for arteriosclerotic coronary artery disease.
- The association between Lp(a) levels and restenosis following percutaneous transluminal coronary angioplasty (PTCA) remains controversial.
- Potential mechanisms linking Lp(a) to restenosis involve excess thrombin generation or impaired fibrinolysis.
Purpose of the Study:
- To prospectively investigate the relationship between serum Lp(a) levels and the incidence of restenosis after PTCA.
- To identify significant risk factors for restenosis in patients undergoing PTCA.
- To explore the potential role of thrombin-antithrombin (TAT) and alpha2-antiplasmin-plasmin (APP) complexes in restenosis.
Main Methods:
- Prospective study of 162 patients undergoing PTCA.
- Measurement of serum Lp(a), total cholesterol, TAT complex, APP complex, and plasminogen activator inhibitor-1 (PAI-1) before PTCA.
- Restenosis defined by angiography (>50% stenosis) or radionuclide perfusion scan (ischemia).
Main Results:
- Restenosis occurred in 38% of patients.
- Serum Lp(a) levels did not significantly correlate with TAT, APP, PAI-1, or the TAT-APP ratio.
- Lp(a) levels were not significantly different between patients with and without restenosis.
- The number of lesions dilated during PTCA was the only variable significantly associated with restenosis (P=0.03).
- The TAT to APP ratio showed a trend towards significance in the restenosis group (P=0.07).
Conclusions:
- Serum Lp(a) level is not a significant risk factor for restenosis after PTCA in this patient population.
- The number of lesions dilated during PTCA is a significant predictor of restenosis.
- The TAT to APP ratio warrants further investigation as a potential risk factor for restenosis.
Abstract:
The serum lipoprotein(a) [Lp(a)] level is a known risk factor for arteriosclerotic coronary artery disease. However, its association with restenosis after percutaneous transluminal coronary angioplasty (PTCA) is controversial. We hypothesized that the Lp(a) level is a significant risk factor for restenosis after angioplasty through a pathophysiological mechanism leading to excess thrombin generation or inhibition of fibrinolysis. We designed a prospective study of the relation of Lp(a) to outcome after PTCA, in which we measured selected laboratory variables at entry and collected clinical, procedural, lesion-related, and outcome data pertaining to restenosis. Restenosis was defined as >50% stenosis of the target lesion by angiography or as ischemia in the target vessel distribution by radionuclide-perfusion scan. Before the patients underwent PTCA, blood was obtained by venipuncture for measurement of Lp(a), total cholesterol, thrombin-antithrombin (TAT) complex, alpha2-antiplasmin-plasmin (APP) complex, and plasminogen activator inhibitor-1 (PAI-1). Evaluable outcome data were obtained on 162 subjects, who form the basis of this report. Restenosis occurred in 61 subjects (38%). The Lp(a) level was not correlated significantly with TAT, APP, PAI-1, or the TAT-APP ratio. Levels of TAT, APP, and PAI-1 were not statistically different in the patients with versus those without restenosis. The median ratio of TAT to APP was 2-fold higher in the restenosis group, and this difference approached statistical significance (P=0.07). Univariate analysis was performed for the association of clinical, lesion-related, and procedural risk factors with restenosis. Lp(a) levels did not differ significantly in the restenosis versus no-restenosis group, whether assessed categorically (>25 mg/dL versus <25 mg/dL) or as a continuous variable by Mann-Whitney U test. The number of lesions dilated and the lack of family history of premature heart disease were significantly associated with restenosis (P=0.002 and P=0.008, respectively). A history of diabetes mellitus was of borderline significance (P=0.055). By multiple logistic regression analysis, the number of lesions dilated was the only variable significantly associated with restenosis (P=0.03). We conclude that the number of lesions dilated during PTCA is a significant risk factor for restenosis, whereas the serum Lp(a) level was not a significant risk factor for restenosis in our patient population. The TAT to APP ratio merits further study as a possible risk factor for restenosis.
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