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Published on: November 28, 2016
Central and Brachial Blood Pressures, Statins, and Low-Density Lipoprotein Cholesterol: A Mediation Analysis
Florence Lamarche1, Mohsen Agharazii1, Annie-Claire Nadeau-Fredette1
1From the Hôpital du Sacré-Cœur de Montréal (F.L., F.M., R.G.) and Hôpital Maisonneuve-Rosemont (A.-C.N.-F.), Université de Montréal, Canada; and CHU de Québec, Hôtel-Dieu de Québec, Université Laval, Canada (M.A.).
Insights
Statins lower central blood pressure, but reduced LDL-c explains only a portion of this effect. Non-LDL-c pathways significantly impact pulsatile pressure changes in statin users.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Biostatistics
Background:
- Central blood pressure is a superior cardiovascular disease predictor compared to brachial pressure.
- Statins are known to reduce brachial pressure, but their effect on central pressure and the underlying mechanisms remain unclear.
Purpose of the Study:
- To investigate the association between statins, LDL-c, and central/brachial blood pressures.
- To quantify the impact of LDL-c on statin-induced blood pressure changes.
Main Methods:
- Multivariate analyses of 16,507 CARTaGENE participants with central blood pressure and LDL-c data.
- Mediation analyses to assess the role of LDL-c in the statin-blood pressure relationship.
Main Results:
- LDL-c positively correlated with central systolic and diastolic pressures in both statin users and non-users.
- Statins for primary prevention significantly lowered central systolic, diastolic, and pulse pressures.
- LDL-c reduction accounted for 15% of systolic and 44% of diastolic central pressure changes, with non-LDL-c pathways influencing pulsatile pressure.
Conclusions:
- LDL-c reduction explains only a fraction of the blood pressure-lowering effects of statins.
- Non-LDL-c-mediated mechanisms are crucial for statin's impact on pulsatile central pressure components.
Abstract:
Central blood pressure may be a better predictor of cardiovascular disease than brachial pressure. Although statins reduce brachial pressure, their impact on central pressure remains unknown. Furthermore, whether this effect is mediated through a decrease in low-density lipoprotein cholesterol (LDL-c) is unknown. This study aims to characterize the association of statins and LDL-c with central and brachial blood pressures and to quantify their respective effects. Of the 20 004 CARTaGENE participants, 16 507 had available central blood pressure, LDL-c, and Framingham risk score. Multivariate analyses were used to evaluate the association between central pressure and LDL-c in subjects with or without statins. The impact of LDL-c on the association between statin and pressure parameters was determined through mediation analyses. LDL-c was positively associated with systolic and diastolic central pressure in nonusers (β=0.077 and 0.106; P<0.001) and in participants with statins for primary (β=0.086 and 0.114; P<0.001) and secondary prevention (β=0.120 and 0.194; P<0.003). Statins as primary prevention were associated with lower central systolic, diastolic, and pulse pressures (-3.0, -1.6, and -1.3 mm Hg; P<0.001). Mediation analyses showed that LDL-c reduction contributed to 15% of central systolic and 44% of central diastolic pressure changes associated with statins and attenuated 22% of the effects on central pulse pressure. Similar results were found with brachial pressure components. In conclusion, reduction of LDL-c was associated with only a fraction of the lower blood pressures in statin user and seemed to be mostly associated with improvement of steady (diastolic) pressure, whereas non-LDL-c-mediated pathways were mostly associated with changes in pulsatile pressure components.
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Blood Pressure
The average BP in an adult is typically around 120/80 mmHg (millimeters of mercury). In this measurement, the numerator (120) indicates the systolic pressure, which is the pressure in the arteries during the contraction of the heart's ventricles as blood is expelled. The denominator (80) represents the...
Central Tendency: Analysis
The mean is one such measure, calculated by totaling all values in a dataset and dividing by the number of values. For instance, the mean blood pressure reading (120, 130, 140, 150) would be 135. However, the mean can be affected by extreme values or outliers.
The median, another measure,...

