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Effects of intrarenal angiotensin 1-7 infusion on renal haemodynamic and excretory function in anaesthetised two-kidney one-clip and deoxycorticosterone acetate-salt hypertensive rats.
Barry, Elaine F; Abdulla, Mohammed H; O'Neill, Julie; AlMarabeh, Sara; Beshara, Julie; Parna-Gile, Erin; Johns, Edward J.
Affiliation
  • Barry EF; Department of Physiology, University College Cork, Cork, Republic of Ireland.
  • Abdulla MH; Department of Physiology, University College Cork, Cork, Republic of Ireland.
  • O'Neill J; Department of Gastroenterology, Mercy University Hospital, Cork, Republic of Ireland.
  • AlMarabeh S; Department of Physiology, University of Arizona Health Sciences Center, Tucson, AZ, USA.
  • Beshara J; Department of Biopharmaceutics and Clinical Pharmacy, School of Pharmacy, University of Jordan, Amman, Jordan.
  • Parna-Gile E; Department of Physiology, University College Cork, Cork, Republic of Ireland.
  • Johns EJ; Department of Physiology, University College Cork, Cork, Republic of Ireland.
Exp Physiol ; 108(2): 268-279, 2023 02.
Article in En | MEDLINE | ID: mdl-36454195
ABSTRACT
NEW

FINDINGS:

What is the central question of this study? Are renal functional responses to intrarenal angiotensin 1-7 (Ang (1-7)) infusion dependent on the level of the endogenous renin-angiotensin system (RAS) in the two-kidney one-clip (2K1C) and deoxycorticosterone acetate (DOCA)-salt animal models of hypertension? What is the main finding and its importance? The renal actions of Ang (1-7) are dependent on the relative endogenous levels of each arm of the classical angiotensin II-angiotensin II type 1 receptor (AT1 R) axis and those of the Ang (1-7)-Mas receptor axis. These findings support the hypothesis that a balance exists between the intrarenal classical and novel arms of the RAS, and in particular the relative abundance of AT1 R to Mas receptor, which may to a large extent determine the renal excretory response to Ang (1-7) infusion. ABSTRACT This study investigated the action of angiotensin 1-7 (Ang (1-7)) on renal haemodynamic and excretory function in the two-kidney one-clip (2K1C) and deoxycorticosterone acetate (DOCA)-salt rat models of hypertension, in which the endogenous renin-angiotensin system (RAS) activity was likely to be raised or lowered, respectively. Rats were anaesthetised and prepared for the measurement of mean arterial pressure and kidney function during renal interstitial infusion of Ang (1-7) or saline. Kidney tissue concentrations of angiotensin II (Ang II) and Ang (1-7) were determined. Intrarenal infusion of Ang (1-7) into the clipped kidney of 2K1C rats increased urine flow (UV), absolute (UNa V) and fractional sodium (FENa ) excretions by 110%, 214% and 147%, respectively. Renal Ang II concentrations of the clipped kidney were increased with no major changes in Ang (1-7) concentration. By contrast, Ang (1-7) infusion decreased UV, UNa V, and FENa by 27%, 24% and 21%, respectively in the non-clipped kidney in which tissue Ang (1-7) concentrations were increased, but renal Ang II concentrations were unchanged compared to sham animals. Ang (1-7) infusion in DOCA-salt rats had minimal effects on glomerular filtration rate but significantly decreased UV, UNa V and FENa by ∼30%. Renal Ang (1-7) concentrations were higher and Ang II concentrations were lower in DOCA-salt rats compared to sham rats. These findings demonstrate that the intrarenal infusion of exogenous Ang (1-7) elicits different renal excretory responses the magnitude of which is dependent on the balance between the endogenous renal Ang II-AT1 receptor axis and Ang (1-7)-Mas receptor axis.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Desoxycorticosterone Acetate / Hypertension Type of study: Prognostic_studies Limits: Animals Language: En Journal: Exp Physiol Journal subject: FISIOLOGIA Year: 2023 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Desoxycorticosterone Acetate / Hypertension Type of study: Prognostic_studies Limits: Animals Language: En Journal: Exp Physiol Journal subject: FISIOLOGIA Year: 2023 Document type: Article