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Published on: September 21, 2018
Linking allostatic load, heart rate variability and brain functional networks and structures in healthy men
Juan M Solano-Atehortua1, Gabriel Castrillón2, Jazmin X Suarez-Revelo3
1Physiology and Biochemistry Research Group (PHYSIS), Faculty of Medicine, University of Antioquia, Calle 70 No. 52-2, Medellín, Colombia; Neuromuscular Disease Research Group, Faculty of Medicine, University of Antioquia, Calle 70 No. 52-2, Medellín, Colombia.
Insights
Chronic stress, measured by the Allostatic Load Index (ALI), is linked to reduced heart rate variability (HRV) in healthy men. Brain structure and function may influence this relationship, but further research is needed.
Area of Science:
- Physiology
- Neuroscience
- Cardiology
Background:
- Allostatic Load Index (ALI) quantifies chronic stress's physiological burden.
- The relationship between ALI, heart rate variability (HRV), and potential brain moderation in healthy individuals remains underexplored.
Purpose of the Study:
- To investigate the association between ALI and HRV in healthy men.
- To explore the moderating role of brain functional connectivity and structure on the ALI-HRV relationship.
Main Methods:
- Cross-sectional study of 88 healthy men (21-40 years).
- Calculated ALI using four and seven biomarkers (ALI-4, ALI-7) via quartile-based risk summation.
- Assessed HRV from 24-hour Holter recordings.
- Utilized neuroimaging (MRI) for functional and structural metrics.
- Employed multiple linear regression and exploratory interaction models.
Main Results:
- ALI-7 showed a positive association with the LF/HF ratio, an indicator of sympathetic-vagal imbalance (β = 0.09, p=0.004).
- Exploratory analyses indicated potential moderation of ALI-7's association with SDNN by default mode network functional connectivity and salience network cortical thickness, though not significant after correction.
Conclusions:
- Higher ALI is associated with reduced HRV (higher LF/HF ratio) in healthy men.
- Further investigation in larger, diverse populations is required to confirm findings and clarify brain moderation effects.
Introduction:
The allostatic load index (ALI) measures the cumulative physiological burden exerted on the body by chronic stress known as allostatic load (AL). The relationship between ALI and heart rate variability (HRV), as well as the brain moderation effect on this relationship in healthy individuals, is underexplored.
Methods:
In this cross-sectional study of 88 healthy men (21-40 years) from Medellín, Colombia, we calculated two ALIs composed of four and seven biomarkers (ALI-4 and ALI-7) using a quartile-based risk summation method. Functional and structural neuroimaging metrics were derived from magnetic resonance imaging. Multiple linear regression models were used to evaluate the associations between the ALIs and HRV metrics derived from a 24-hour Holter. Exploratory interaction models tested whether the functional connectivity strength (FCS) of default mode (DMN), salience (SN) and control subnetworks (CEN), their cortical thickness as well as the volume of subcortical structures, moderated the ALI-HRV association.
Results:
ALI-7 was positively associated with the LF/HF ratio (β = 0.09, p = 0.004, 95 % CI = 0.03-0.15). Exploratory interactions suggested that ALI-7's association with the standard deviation of the NN intervals (SDNN) was moderated by the FCS in the posterior DMN and by cortical thickness in the anterior SN. However, none of these interactions remained significant after false discovery rate correction.
Conclusion:
In healthy men, higher ALI was associated with reduced HRV as indicated by higher LF/HF ratio. Larger studies, including women, are needed to confirm the predictive value of ALI-7 and to elucidate the brain moderation effect on the AL-HRV relationship.
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