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Published on: October 12, 2017
Oxidized low-density lipoprotein cholesterol is associated with decreases in cardiac function independent of vascular
Ernst R Rietzschel1, Michel Langlois, Marc L De Buyzere
1Department of Cardiovascular Diseases, Ghent University, Ghent, Belgium. errietzschel@yahoo.com
Insights
Oxidized low-density lipoprotein cholesterol (ox-LDL) is linked to early cardiac damage in the general population. Higher ox-LDL levels correlate with altered heart structure and reduced systolic and diastolic function, independent of traditional risk factors.
Area of Science:
- Cardiology
- Oxidative Stress Research
- Public Health
Background:
- Oxidized low-density lipoprotein cholesterol (ox-LDL) is implicated in various vascular diseases.
- Limited data exist on the association between ox-LDL and myocardial (dys)function in the general population.
- Oxidative stress is a key factor in cardiovascular disease development.
Purpose of the Study:
- To investigate the link between ox-LDL levels and early cardiac structural and functional damage.
- To assess the impact of ox-LDL on the general population, independent of established cardiovascular risk factors.
- To establish a proof of concept for ox-LDL's role in subclinical cardiac alterations.
Main Methods:
- The Asklepios Study enrolled 2524 healthy volunteers aged 35-55.
- Echocardiography assessed cardiac morphology and tissue Doppler mitral annulus velocities (systolic and diastolic).
- Serum ox-LDL was measured via ELISA; data were adjusted for multiple covariates.
Main Results:
- Elevated ox-LDL levels were associated with a more spherical left ventricular cavity.
- Increasing ox-LDL correlated with decreased diastolic function (early diastolic mitral annulus velocity), particularly in women.
- Higher ox-LDL was also linked to reduced systolic function (systolic mitral annulus velocity amplitude), more pronounced in men.
Conclusions:
- Oxidized low-density lipoprotein cholesterol (ox-LDL) impacts cardiac structure and function at a community level.
- These effects are observed independently of classic risk factors, lifestyle, inflammation, and prevalent vascular damage.
- Ox-LDL may serve as a risk marker for early ventricular remodeling, though the effect size in the general population is small.
Abstract:
In contrast to the plethora of vasculopathies to which oxidized low-density lipoprotein cholesterol (ox-LDL) can be linked, there are no data linking ox-LDL to myocardial (dys)function in the community. We tested whether ox-LDL, a marker of oxidative stress, was linked to early cardiac structural and functional damage in the general population. The Asklepios Study is a random sample of 2524 male and female volunteers, comparable to the Belgian population between 35 and 55 years free from overt cardiovascular disease. Cardiac morphology, systolic, and early and late diastolic tissue Doppler mitral annulus velocities were recorded during an echocardiography, followed by a vascular examination (carotid and femoral arteries). Serum ox-LDL was measured by sandwich ELISA using the mAb-4E6 monoclonal antibody. Effects of ox-LDL were assessed after adjustment for age, gender, lipid fractions, blood pressure, heart rate, height, weight, glycemia, smoking, and drug treatment. Mean ox-LDL was 96.0+/-38.9 U/L. After adjustment, increasing ox-LDL levels were associated with a more spherical left ventricular cavity (minor/major axis dimensions; P<0.001) and decreasing diastolic (early diastolic tissue Doppler mitral annulus velocity; P<0.001, more pronounced in women) and systolic function (amplitude of systolic tissue Doppler mitral annulus velocity; P=0.008, more pronounced in men). These results remained unaffected when further adjustments were made for inflammatory markers, lifestyle, or vascular damage (atherosclerosis and arterial stiffening). These results are the first "proof of concept" that ox-LDL impacts cardiac structure and function at a community level, independent of classic risk factors, lifestyle, inflammation, and prevalent vascular damage. Our data suggest that ox-LDL is a risk marker for early ventricular remodelling. However, the effect size in the general population is small.
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