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Published on: July 24, 2018
Systemic inflammation and circadian rhythm of cardiac autonomic modulation
Xian Li1, Michele L Shaffer, Sol M Rodríguez-Colón
1Department of Public Health Sciences, Penn State University College of Medicine, 600 Centerview Drive, Hershey, PA 17033, USA.
Insights
Systemic inflammation negatively impacts cardiac autonomic modulation (CAM) daily rhythms. Elevated C-reactive protein (CRP) is linked to reduced CAM function and amplitude, suggesting inflammation
Area of Science:
- Cardiology
- Autonomic Nervous System Research
- Inflammation Studies
Background:
- Systemic inflammation (SI) is known to impair cardiac autonomic modulation (CAM), a factor implicated in cardiac disease.
- Limited data exists on how SI affects the circadian patterns of CAM, particularly in middle-aged populations.
Purpose of the Study:
- To investigate the impact of systemic inflammation, using C-reactive protein (CRP) as a marker, on the circadian pattern of cardiac autonomic modulation (CAM) in a middle-aged sample.
Main Methods:
- Utilized 24-hour 12-lead ECG data to perform heart rate variability (HRV) analysis on 5-minute segments, deriving time and frequency domain HRV indices for CAM assessment.
- Employed a two-stage modeling approach: individual-level cosine modeling to quantify circadian parameters (mean, amplitude, acrophase) and random-effects meta-analysis to assess CRP's effect on these parameters.
Main Results:
- Systemic inflammation (indicated by CRP) was adversely associated with lower mean values of key HRV indices (log-HF, log-LF, SDNN, RMSSD), signifying reduced overall CAM.
- More significantly, CRP was also linked to a reduced amplitude of circadian variation in SDNN and RMSSD, indicating a blunted daily oscillation in cardiac autonomic control.
Conclusions:
- Systemic inflammation adversely affects the circadian pattern of cardiac autonomic modulation.
- These inflammation-induced alterations in CAM's daily rhythm may partially mediate the increased cardiac risk associated with systemic inflammation.
Abstract:
Systemic inflammation (SI) is associated with impairment of cardiac autonomic modulation (CAM), which is associated with cardiac disease. However, there is limited data about SI on CAM circadian pattern, which this study aimed to investigate in a middle-aged sample. C-reactive protein (CRP) was used as a SI marker. We performed HRV analysis on each 5-min segment RRs from a 24-h 12-lead ECG to obtain time and frequency domain HRV indices as measures of CAM. The circadian pattern of CAM was analyzed by a two-stage modeling. Stage one, for each individual we fit a cosine periodic model based on the 288 segments of 5-min HRV data to produce three individual-level cosine parameters that quantity the circadian pattern: mean (M), amplitude (Â), and acrophase time (θ), measure the overall average, the amplitude of the oscillation, and the timing of the highest oscillation, respectively. Stage two, we used random-effects-meta-analysis to summarize the effects of CRP on the three circadian parameters obtained in stage one. CRP was adversely associated with lower M of log-HF, log-LF, SDNN, and RMSSD [β (SE): -0.22 (0.07) ms(2), -0.20 (0.06) ms(2), -3.62 (0.99) ms, and -2.32 (0.73) ms, respectively, with all p-values <0.01]. More importantly, CRP was also adversely associated with lower  of SDNN and RMSSD [β (SE): -0.84 (0.44) ms and -0.86 (0.38) ms, respectively, both p-values <0.05]. SI is adversely associated with circadian pattern of CAM, suggesting that the cardiac risk associated with SI may be partially mediated via inflammation-related changes in CAM.
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