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Published on: September 15, 2018
Familial Hypercholesterolemia Variant and Cardiovascular Risk in Individuals With Elevated Cholesterol
Yiyi Zhang1, Jacqueline S Dron2,3, Brandon K Bellows1
1Division of General Medicine, Columbia University, New York, New York.
Insights
Familial hypercholesterolemia (FH) variants significantly increase coronary heart disease (CHD) risk, even with moderately high LDL-C. This risk is linked to cumulative LDL-C exposure, highlighting the importance of genetic factors in cardiovascular health.
Area of Science:
- Cardiovascular Genetics
- Lipid Metabolism
- Public Health
Background:
- Familial hypercholesterolemia (FH) is a genetic disorder causing severely high LDL-C and premature coronary heart disease (CHD).
- The CHD risk associated with FH variants in individuals with moderately elevated LDL-C is not well understood.
Purpose of the Study:
- To assess CHD risk linked to FH variants in individuals with moderately and severely elevated LDL-C.
- To quantify excess CHD deaths attributable to FH variants in US adults.
Main Methods:
- Pooled analysis of 6 US cohort studies including 21,426 individuals without pre-existing CHD.
- Cox proportional hazards models and the Cardiovascular Disease Policy Model were used.
- Data collected from 1971-2018, analyzed March-May 2023.
Main Results:
- FH variants were found in 0.3% of individuals with moderately elevated LDL-C and 2.5% with severely elevated LDL-C.
- Adjusted hazard ratios for incident CHD were 2.9 (moderate LDL-C) and 2.6 (severe LDL-C).
- Excess CHD deaths projected over 12,000 (moderate) and 15,000 (severe) among US adults with LDL-C ≥130 mg/dL.
Conclusions:
- FH variants are associated with a 2-fold higher CHD risk, even with moderately elevated LDL-C.
- Higher cumulative LDL-C exposure largely explains the increased CHD risk.
- Further research on genetic testing for FH screening is warranted.
Importance:
Familial hypercholesterolemia (FH) is a genetic disorder that often results in severely high low-density lipoprotein cholesterol (LDL-C) and high risk of premature coronary heart disease (CHD). However, the impact of FH variants on CHD risk among individuals with moderately elevated LDL-C is not well quantified.
Objective:
To assess CHD risk associated with FH variants among individuals with moderately (130-189 mg/dL) and severely (≥190 mg/dL) elevated LDL-C and to quantify excess CHD deaths attributable to FH variants in US adults.
Design, Setting, And Participants:
A total of 21 426 individuals without preexisting CHD from 6 US cohort studies (Atherosclerosis Risk in Communities study, Coronary Artery Risk Development in Young Adults study, Cardiovascular Health Study, Framingham Heart Study Offspring cohort, Jackson Heart Study, and Multi-Ethnic Study of Atherosclerosis) were included, 63 of whom had an FH variant. Data were collected from 1971 to 2018, and the median (IQR) follow-up was 18 (13-28) years. Data were analyzed from March to May 2023.
Exposures:
LDL-C, cumulative past LDL-C, FH variant status.
Main Outcomes And Measures:
Cox proportional hazards models estimated associations between FH variants and incident CHD. The Cardiovascular Disease Policy Model projected excess CHD deaths associated with FH variants in US adults.
Results:
Of the 21 426 individuals without preexisting CHD (mean [SD] age 52.1 [15.5] years; 12 041 [56.2%] female), an FH variant was found in 22 individuals with moderately elevated LDL-C (0.3%) and in 33 individuals with severely elevated LDL-C (2.5%). The adjusted hazard ratios for incident CHD comparing those with and without FH variants were 2.9 (95% CI, 1.4-6.0) and 2.6 (95% CI, 1.4-4.9) among individuals with moderately and severely elevated LDL-C, respectively. The association between FH variants and CHD was slightly attenuated when further adjusting for baseline LDL-C level, whereas the association was no longer statistically significant after adjusting for cumulative past LDL-C exposure. Among US adults 20 years and older with no history of CHD and LDL-C 130 mg/dL or higher, more than 417 000 carry an FH variant and were projected to experience more than 12 000 excess CHD deaths in those with moderately elevated LDL-C and 15 000 in those with severely elevated LDL-C compared with individuals without an FH variant.
Conclusions And Relevance:
In this pooled cohort study, the presence of FH variants was associated with a 2-fold higher CHD risk, even when LDL-C was only moderately elevated. The increased CHD risk appeared to be largely explained by the higher cumulative LDL-C exposure in individuals with an FH variant compared to those without. Further research is needed to assess the value of adding genetic testing to traditional phenotypic FH screening.
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