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Once LDL-C is controlled below 70 mg/dL after PCI, elevated Lp(a) no longer predicts MACE or death, 878-patient Mayo Clinic study finds (Coron Artery Dis 2025)
Original title: Controlled low-density lipoprotein cholesterol attenuates cardiovascular risk mediated by elevated lipoprotein(a) after percutaneous coronary intervention
This study included 878 adults (median age 68, 74% male) who underwent PCI at Mayo Clinic sites between 2006 and 2017, achieved their LDL-C target below 70 mg/dL, and had a baseline Lp(a) measurement, to test whether optimal LDL-C control attenuates the cardiovascular risk normally attributed to elevated Lp(a). Elevated Lp(a) (50 mg/dL or above) was present in 29.7% of patients. Kaplan-Meier analysis found no significant survival difference by Lp(a) status for MACE (P = 0.91), all-cause mortality (P = 0.26), or individual MACE components, and multivariable Cox regression confirmed no significant association for MACE (HR 1.07, 95% CI 0.84-1.37) or all-cause mortality (HR 0.98, 95% CI 0.74-1.30). The authors conclude that once LDL-C is controlled below 70 mg/dL after PCI, elevated Lp(a) no longer independently predicts adverse outcomes, suggesting aggressive LDL-C lowering may substantially mitigate Lp(a)-associated residual risk in this secondary-prevention setting.
Original abstract
Background: Lipoprotein(a) [Lp(a)] is an independent, causal risk factor for cardiovascular disease. However, it is still unclear whether controlling low-density lipoprotein cholesterol (LDL-C) to optimal levels can attenuate cardiovascular risk mediated by elevated Lp(a), especially in the setting of secondary prevention.
Methods: Adult patients with a baseline Lp(a) measurement who underwent percutaneous coronary intervention (PCI) and reached their LDL-C target levels (<70 mg/dl) at Mayo Clinic sites between 2006 and 2017 were included. Primary outcomes included major adverse cardiovascular events (MACE) and all-cause mortality. Kaplan-Meier curves were created to compare the survival probabilities among patients with Lp(a) ≥ 50 mg/dl compared with Lp(a) < 50 mg/dl. Multivariable Cox regression analyses were performed to quantify the association of elevated Lp(a) with our relevant outcomes and to control for possible confounders.
Results: In total, 878 patients (median age: 68 years, and 74% males) who underwent PCI were included for analysis. Of them, 29.7% had elevated Lp(a) ≥ 50 mg/dl. Kaplan-Meier curves did not reveal any significant difference in survival probabilities for elevated Lp(a) for any outcome including MACE ( P = 0.91), all-cause mortality ( P = 0.26), or the separate MACE components. Similarly, the multivariable analysis showed no significant association for MACE (hazard ratio: 1.07, 95% confidence interval: 0.84-1.37) or all-cause mortality (hazard ratio: 0.98, 95% confidence interval: 0.74-1.30).
Conclusion: In patients who underwent PCI and have their LDL-C controlled below 70 mg/dl, no significant association was found between elevated Lp(a) ≥ 50 mg/dl and risk for MACE or all-cause mortality.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 17 August 2026. Methods.