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C-reactive protein modulates vagal heart rate control in patients with coronary artery disease
Robert P Nolan1, Graham J Reid, Peter H Seidelin
1Division of Cardiology, University Health Network, Toronto, Ontario, Canada. rnolan@uhnres.utoronto.ca
Insights
Systemic inflammation, measured by C-reactive protein (CRP), negatively impacts heart rate variability in coronary artery disease (CAD) patients. Behavioural relaxation improved heart rate control, but this benefit was reduced in individuals with higher CRP levels.
Area of Science:
- Cardiology
- Psychophysiology
- Inflammation Research
Background:
- Systemic inflammation is linked to sympathetic cardiac activation and reduced heart rate variability (HRV) in individuals at high risk for coronary artery disease (CAD).
- Understanding the impact of inflammation on autonomic nervous system control is crucial for managing cardiovascular health.
Purpose of the Study:
- To investigate the influence of systemic inflammation, quantified by C-reactive protein (CRP), on vagal heart rate (HR) control during behavioral relaxation in patients with CAD.
- To determine if CRP levels moderate the effects of behavioral relaxation on vagal HR modulation.
Main Methods:
- The study included 29 patients with CAD, divided into low and high CRP groups based on C-reactive protein concentration.
- Vagal HR control was assessed using RR high-frequency spectral power (logHF power) during silent reading and self-guided behavioral relaxation.
- High-sensitivity CRP concentration was measured using a near-IR particle immunoassay.
Main Results:
- The high CRP group exhibited significantly decreased RR logHF power compared to the low CRP group during both assessment conditions.
- Behavioral relaxation led to a significant increase in RR logHF power in both low and high CRP groups.
- Hierarchical linear regression analysis indicated that CRP explained 18.9% of the variance in RR logHF power during behavioral relaxation, independent of other factors.
Conclusions:
- Patients with CAD demonstrate enhanced vagal HR control through behavioral relaxation.
- The effectiveness of behavioral relaxation in improving vagal HR control is moderated by the severity of systemic inflammation (CRP levels).
- Assessing systemic inflammation may be beneficial for tailoring interventions aimed at improving neurocardiac regulation in CAD patients.
Abstract:
Systemic inflammation is associated with sympathetic cardiac activation and decreased HRV (heart rate variability) in subjects at high risk of CAD (coronary artery disease). In the present study, we examined the influence of systemic inflammation, measured by CRP (C-reactive protein), on vagal HR (heart rate) control during behavioural relaxation in patients with CAD. It was hypothesized that CRP would be associated with decreased vagal HR modulation. Consecutive patients were screened 2 weeks prior to elective PTCA (percutaneous transluminal coronary angioplasty). The study was comprised of 29 subjects who represented the first and fourth quartiles of the CRP distribution: Low (0.47+/-0.07 microg/ml)- and High (8.19+/-1.95 microg/ml)-CRP groups respectively. Vagal HR control was quantified as RR high-frequency spectral power (0.15 to 0.40 Hz), and was assessed in log-transformed absolute units (logHF power). Near-IR particle immunoassay was used to determine high-sensitivity CRP concentration. Assessment entailed 5 min of silent reading and self-guided behavioural relaxation. RR logHF power was decreased in the High-CRP group across both assessment procedures (P=0.032). Behavioural relaxation increased RR logHF power for both the Low- and High-CRP groups (P=0.033). Hierarchical linear regression determined that CRP accounted for 18.9% of the variance in RR logHF power during behavioural relaxation (P=0.03), independent of baseline RR interval, cardiac medication, respiratory logHF power and body mass index. In conclusion, patients with CAD had augmented vagal HR control with behavioural relaxation, but this effect was moderated by the severity of CRP. Therefore it may be advisable to assess systemic inflammation in interventions aimed at improving neurocardiac regulation in patients with CAD.
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