Relationship between heart rate variability, interleukin-6, and soluble tissue factor in healthy subjects
Roland von Känel1, Richard A Nelesen, Paul J Mills
1Department of General Internal Medicine, University Hospital Berne, Switzerland.
Insights
Decreased heart rate variability (HRV) is linked to higher inflammation markers, interleukin-6 (IL-6) and soluble tissue factor (sTF). Low HRV indicates increased risk for atherothrombotic events, especially when inflammation is present.
Area of Science:
- Cardiovascular Physiology
- Immunology
- Biomarkers
Background:
- Decreased heart rate variability (HRV) is a known risk factor for atherosclerosis.
- Interleukin-6 (IL-6) and soluble tissue factor (sTF) are established predictors of atherothrombotic events.
Purpose of the Study:
- To investigate the association between resting heart rate variability (HRV) frequency domains and plasma levels of IL-6 and sTF in healthy adults.
- To determine if low HRV predicts elevated IL-6 and sTF, and if these markers interact to predict atherothrombotic risk.
Main Methods:
- 102 healthy, unmedicated middle-aged men and women underwent HRV measurement via spectral analysis of electrocardiogram data.
- Plasma levels of IL-6 and sTF were quantified.
- Statistical analyses controlled for age, gender, ethnicity, smoking status, blood pressure, and body mass index.
Main Results:
- Low frequency (LF) and high frequency (HF) power of HRV were significantly associated with increased IL-6 levels.
- Interactions between HRV power (LF and HF) and IL-6 explained significant variance in sTF levels.
- A positive relationship between IL-6 and sTF was observed specifically in individuals with low HRV.
Conclusions:
- Systemic low-grade inflammation is associated with reduced HRV.
- The interplay between IL-6 and sTF, particularly in the context of low HRV, may contribute to atherothrombotic events.
- HRV may serve as a crucial indicator in assessing cardiovascular risk related to inflammation and hypercoagulability.
Abstract:
Decreased heart rate variability (HRV) has been associated with an increased risk of atherosclerosis. We hypothesized that a decrease in frequency domains of resting HRV would be associated with elevated plasma levels of interleukin (IL)-6 and soluble tissue factor (sTF) both previously shown to prospectively predict atherothrombotic events in healthy subjects. Subjects were 102 healthy and unmedicated black and white middle-aged men and women. We determined IL-6 and sTF antigen in plasma and HRV measures from surface electrocardiogram data using spectral analysis. All statistical analyses controlled for age, gender, ethnicity, smoking status, blood pressure, and body mass index. Low amounts of low frequency (LF) power (beta=-0.31, p=0.007) and high frequency (HF) power (beta=-0.36, p=0.002) were associated with increased amounts of IL-6, explaining 7% and 9% of the variance, respectively. Interactions between LF power and IL-6 (p=0.002) and between HF power and IL-6 (p=0.012) explained 8% and 5%, respectively, of the variance in sTF. Post hoc analyses showed associations between IL-6 and sTF when LF power (beta=0.51, p<0.001) and HF power (beta=0.48, p<0.001) were low but not when LF power and high HF power were high. The findings suggest that systemic low-grade inflammatory activity is associated with a decrease in HRV. Furthermore, there was a positive relationship between plasma levels of IL-6 and sTF antigen when HRV was low. Inflammation and related hypercoagulability might particularly contribute to atherothrombotic events in a setting of decreased HRV.
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