Prolonged Baroreflex Activation Abolishes Salt-Induced Hypertension After Reductions in Kidney Mass

Drew A Hildebrandt1, Eric D Irwin1, Thomas E Lohmeier2

  • 1From the Department of Physiology and Biophysics (D.A.H., T.E.L.) and Department of Surgery (D.A.H.), University of Mississippi Medical Center, Jackson; and Trauma Services, North Memorial Medical Center, Robbinsdale, MN (E.D.I.).

Insights

Chronic carotid baroreflex activation lowers blood pressure and sympathetic activity. In dogs with reduced kidney function, this therapy abolished salt-induced hypertension without harming the remaining nephrons.

Area of Science:

  • Cardiovascular Physiology
  • Renal Physiology
  • Hypertension Therapeutics

Background:

  • Resistant hypertension is often linked to chronic kidney disease.
  • Carotid baroreflex activation (CBA) lowers sympathetic activity and blood pressure.
  • The effects of CBA on blood pressure and renal function in advanced chronic kidney disease are unknown.

Purpose of the Study:

  • To investigate the effects of chronic baroreflex activation on arterial pressure and glomerular filtration rate in a canine model with reduced renal mass.
  • To determine if CBA can mitigate salt-induced hypertension in the presence of significant kidney impairment.

Main Methods:

  • Created a canine model with approximately 70% reduction in renal mass.
  • Administered high sodium intake to induce hypertension.
  • Applied chronic baroreflex activation for 7 days.
  • Monitored mean arterial pressure, plasma norepinephrine, and glomerular filtration rate.

Main Results:

  • High salt intake increased mean arterial pressure and glomerular filtration rate in dogs with reduced renal mass.
  • Chronic baroreflex activation abolished salt-induced hypertension and reduced plasma norepinephrine.
  • Glomerular filtration rate remained unchanged despite significant blood pressure reduction.
  • All measured variables returned to baseline after cessation of baroreflex activation.

Conclusions:

  • Chronic baroreflex activation effectively lowers blood pressure in a model of reduced renal mass and high salt intake.
  • Antihypertensive effects of baroreflex activation are achieved without compromising glomerular filtration rate in remaining nephrons.
  • Baroreflex activation represents a potential therapeutic strategy for resistant hypertension in patients with chronic kidney disease.

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