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November 1, 1983Hypertension411 citationsOpen Access

Role of endothelium in dilator responses of spontaneously hypertensive rat arteries.

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MKM KonishiCSC Su

Key Points

  • The study aims to explore how the endothelium affects the vascular responses to vasodilator drugs in hypertensive rats.
  • Short ring segments of thoracic aorta and femoral artery were collected from spontaneously hypertensive and normotensive rats.
  • Segments were treated by rubbing to destroy endothelial cells or left unrubbed, then analyzed in Krebs-bicarbonate solution.
  • Isometric recordings were made to assess contractile and relaxant responses.
  • Endothelium removal abolished relaxant response to acetylcholine in all arteries tested.
  • Relaxation induced by adenosine was significantly reduced in both SHR aorta and femoral artery compared to WKY rats.
  • Norepinephrine contractile response increased after endothelial damage in all arteries except WKY aorta.

Abstract

The possible role of endothelium in the vascular responses to vasodilator drugs was studied in relation to experimental hypertension. Short ring segments of the thoracic aorta and femoral artery were removed from spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto (WKY) rats. They were rubbed on the intimal surface to destruct endothelial cells or unrubbed, and bathed in Krebs-bicarbonate solution for isometric recording of contractile and relaxant responses. The relaxant response to acetylcholine was abolished by rubbing all arteries tested. Rubbing also significantly attenuated the relaxation induced by adenosine in the SHR aorta and SHR and WKY femoral artery, and attenuated the relaxation by isoproterenol in the SHR femoral artery. In contrast, contractile response to norepinephrine was augmented by intimal surface rubbing in all arteries except the aorta of WKY. It is suggested that an endothelial compensatory mechanism develops to offset the diminished relaxant and/or increased contractile responsiveness of smooth muscle cells in the hypertensive rat arteries.

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Cite This Study

Konishi et al. (1983) studied this question.

synapsesocial.com/papers/6a19c12f407564563bf67f93https://doi.org/10.1161/01.hyp.5.6.881
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