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Association Between Lipoprotein(a) and Arterial Stiffness in Young Adults with Familial Hypercholesterolemia
Sibbeliene E van den Bosch1,2,3,4, Lotte M de Boer1,2,3,4, Alma Revers2
1Department of Pediatrics, Amsterdam University Medical Center, Location AMC, 1105 AZ Amsterdam, The Netherlands.
Insights
Elevated lipoprotein(a) [Lp(a)] does not significantly impact arterial stiffness in young adults with familial hypercholesterolemia (FH). Further research is needed to explore other atherosclerosis mechanisms beyond arterial stiffness in this population.
Area of Science:
- Cardiovascular Science
- Genetics
- Medical Imaging
Background:
- Familial hypercholesterolemia (FH) and elevated lipoprotein(a) [Lp(a)] are inherited conditions increasing cardiovascular disease risk.
- Arterial stiffness, a surrogate marker for atherosclerosis, is crucial for assessing cardiovascular risk in young patients.
Purpose of the Study:
- To investigate the association between Lp(a) levels and carotid arterial stiffness (measured by cPWV) in young adults with FH.
Main Methods:
- A cross-sectional study involving 143 young adults with FH, previously enrolled in a pravastatin trial.
- Carotid pulse wave velocity (cPWV) assessed via 4D flow MRI and Lp(a) levels measured after a 20-year follow-up.
- Linear mixed-effects models used to analyze the relationship between Lp(a) and cPWV.
Main Results:
- No significant association was found between Lp(a) levels and cPWV in either unadjusted or adjusted models.
- The study included 143 patients with a mean age of 31.8 years.
Conclusions:
- Lp(a) levels are not associated with carotid arterial stiffness in young adults with FH.
- Alternative mechanisms beyond arterial stiffness may mediate the atherosclerotic effects of high Lp(a) in this demographic.
- Further investigation using different surrogate markers for early atherosclerosis is recommended.
Abstract:
Background and Aims: Elevated lipoprotein(a) [Lp(a)] and familial hypercholesterolemia (FH) are both inherited dyslipidemias that are independently associated with cardiovascular disease. Surrogate markers to assess signs of atherosclerosis, such as arterial stiffness, might be useful to evaluate the cardiovascular risk in young patients. The aim of this study is to evaluate the contribution of Lp(a) to arterial stiffness, as measured by carotid pulse wave velocity (cPWV) in young adults with FH. Methods: For this cross-sectional study, 214 children with FH who participated in a randomized controlled trial between 1997 and 1999 on the efficacy and safety of pravastatin were eligible. After 20 years, these patients were invited for a hospital visit, including cPWV assessment (by 4D flow MRI) and Lp(a) measurement. Linear mixed-effects models were used to evaluate the association between Lp(a) and cPWV. Results: We included 143 patients (mean [standard deviation] age: 31.8 [3.2] years) from 108 families. Median (interquartile range) cPWV was 1.62 (1.31-2.06) m/s. Both the unadjusted (ß = -0.0014 m/s per 1 mg/dL increase in Lp(a), 95% CI: -0.0052 to 0.0023, p = 0.455) and adjusted model (ß = -0.0005 m/s per 1 mg/dL increase in Lp(a), 95% CI: -0.0042 to 0.0032, p = 0.785) showed no significant association between Lp(a) and cPWV. Conclusions: Our findings indicate that Lp(a) levels are not associated with carotid arterial stiffness in young adults with FH. Possibly, High Lp(a) might cause atherosclerosis by mechanisms beyond arterial stiffness in young adults. Other surrogate markers of early signs of atherosclerosis may be more suitable to evaluate the Lp(a)-mediated contribution to atherosclerosis in young FH patients.
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