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.
Abstract

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