Vascular smooth muscle responses to endothelial autacoids in rats with chronic coarctation hypertension

D R Bell1

  • 1Department of Physiology, Indiana University School of Medicine, Fort Wayne 46805.

Journal of Hypertension
|January 1, 1993
PubMed

Insights

Hypertension impairs vascular smooth muscle relaxation to histamine, iloprost, and nitroglycerin. Chronically elevated blood pressure reduces the endothelium's ability to produce relaxing factors, affecting blood vessel function.

Area of Science:

  • Cardiovascular Physiology
  • Vascular Biology
  • Hypertension Research

Background:

  • Chronic hypertension is associated with altered vascular function.
  • Endothelial dysfunction plays a key role in the pathophysiology of hypertension.
  • Understanding pressure-induced changes in vascular smooth muscle response is crucial.

Purpose of the Study:

  • To investigate how elevated intravascular pressure in chronic hypertension affects vascular smooth muscle responses.
  • To determine the impact of hypertension on responses to endothelial-derived agents.

Main Methods:

  • Utilized coarctation hypertensive, sham normotensive control, and one-kidney, one clip hypertensive (1K1C) rat models.
  • Measured arterial pressures and evaluated vasorelaxation responses in isolated aortic strips.
  • Tested responses to histamine, endothelin-1, iloprost, and nitroglycerin with and without endothelium.

Main Results:

  • Endothelium-dependent relaxation to histamine was significantly reduced in thoracic aortas of hypertensive rats and abdominal aortas of 1K1C rats.
  • Sensitivity to nitroglycerin was impaired in abdominal aortas of 1K1C rats.
  • Relaxation to iloprost was impaired in thoracic aortas of hypertensive rats.

Conclusions:

  • Vasorelaxation responses to histamine, iloprost, and nitroglycerin are impaired in hypertensive states.
  • Impaired histamine-induced relaxation is linked to chronic elevated pressure exposure on the vascular endothelium.
  • This impairment may involve reduced endothelium-derived relaxing factor production and cyclic GMP signaling.
Abstract