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Published on: September 11, 2018
Evaluation of elevated heart rate as a sympathetic nervous system biomarker in essential hypertension
Murray Esler1, Gavin Lambert2, Danielle Esler1
1Baker Heart and Diabetes Institute.
Insights
Elevated heart rate (HR) in essential hypertension indicates cardiac sympathetic activation, but not necessarily global sympathetic nervous system activity. This finding is crucial for understanding hypertension tachycardia and cardiovascular risk management.
Area of Science:
- Cardiology
- Hypertension Research
- Neuroscience
Background:
- Essential hypertension lacks an accessible biomarker for sympathetic nervous system activation.
- Elevated heart rate (HR) is a potential biomarker, increasingly recognized as an independent cardiovascular risk factor in hypertension.
Purpose of the Study:
- To validate heart rate (HR) as a biomarker of sympathetic nervous system activation in essential hypertension.
- To investigate the relationship between HR and cardiac sympathetic activity.
Main Methods:
- Isotope dilution methodology was employed to measure noradrenaline spillover and adrenaline secretion rates.
- 30 patients with unmedicated essential hypertension and 48 healthy participants were studied.
- The correlation between measured HR and cardiac noradrenaline spillover was specifically examined.
Main Results:
- Patients with essential hypertension exhibited significantly increased cardiac, renal, and total noradrenaline spillover, indicating sympathetic activation.
- Heart rate (HR) in hypertensive patients correlated directly with cardiac noradrenaline spillover (r=0.82), with 67% of HR variance explained by cardiac sympathetic activity.
- Sympathetic activation in hypertension was often regionally differentiated, not global, with normal adrenaline secretion.
Conclusions:
- Elevated heart rate (HR) serves as a valid biomarker for cardiac sympathetic activation in essential hypertension.
- HR does not reflect renal sympathetic outflow activation or global sympathetic responses.
- Understanding the cardiac specificity of HR as a biomarker is vital for targeted therapies to mitigate cardiovascular risk in hypertensive patients.
Background:
There is a need for an easily accessible biomarker of sympathetic nervous activation in essential hypertension, but none exists. Heart rate (HR) has been suggested, but requires validation, now doubly important as an elevated HR in hypertension has emerged as an independent cardiovascular risk factor.
Methods:
Isotope dilution methodology was used to measure total and regional noradrenaline spillover and adrenaline secretion rates in 30 patients with unmedicated essential hypertension and in a comparator group of 48 healthy participants with normal blood pressure. The particular interest was in the relationship of measured HR to cardiac noradrenaline spillover, the measure of cardiac sympathetic activity.
Results:
Sympathetic activation was present in the patients with essential hypertension, evident in significantly increased mean cardiac, renal and total noradrenaline spillover rates. Adrenaline secretion was normal. HR in hypertension correlated directly with cardiac noradrenaline spillover (r = 0.82, P = 9.3 × 10), but not with renal noradrenaline spillover or adrenaline secretion. 67% of the variance in HR was attributable to differences in cardiac sympathetic activity. Among hypertensive patients there was no internal correlation between cardiac noradrenaline spillover, renal noradrenaline spillover and adrenaline secretion; the sympathetic activation commonly was not 'global'. In healthy participants HR did not correlate with measures of sympathetic activity or adrenaline secretion.
Conclusion:
When sympathetic activation exists in essential hypertension it is differentiated, not necessarily involving all sympathetic outflows. An elevated HR proved to be a biomarker of cardiac sympathetic activation but not activation of the renal sympathetic outflow. Identifying activation of the cardiac sympathetic outflow as the prime mechanism of hypertension tachycardia is relevant to therapies which should now be considered to minimize cardiovascular risk in this clinical setting. Is an elevated HR a valid biomarker of sympathetic activation in essential hypertension? Yes, but only for the cardiac sympathetic outflow. The unavoidable principle is that regional differentiation of sympathetic responses in essential hypertension means that no simple test can ever represent each and every sympathetic outflow.
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