Related Experiment Videos
Renal and vascular injury induced by exogenous angiotensin II is AT1 receptor-dependent
D M Lombardi1, M Viswanathan, C P Vio
1Department of Pathology, University of Washington, Vascular Biology, Seattle, WA 98195, USA.
Abstract:
Angiotensin II (Ang II) infusion in rats augments vascular injury in balloon-injured carotid arteries and induces marked vascular and tubulointerstitial injury in kidneys. We examined how the AT1 receptor is modulated and whether blockade of the receptor with losartan could prevent the phenotypic and cellular changes. We also examined the role of the local renin-angiotensin system (RAS) by examining the expression of angiotensin-converting enzyme (ACE) and the effect of treatment with the ACE inhibitor, ramipril. Ang II infusion resulted in systemic hypertension and accelerated intimal and medial thickening in balloon-injured carotid arteries. Renal injury was manifested by proteinuria, glomerular phenotypic changes (mesangial expression of alpha-actin and podocyte expression of desmin), and tubulointerstitial injury with the tubular upregulation of the macrophage-adhesive protein, osteopontin, the interstitial accumulation of macrophages and myofibroblasts, and the deposition of collagen types III and IV. Ang II infusion decreased AT1 receptor number in the renal interstitium but not in glomeruli. Losartan completely blocked the Ang II-mediated hypertension, proteinuria, and injury to both carotid and kidney. Ang II infusion was also associated with an increase in ACE protein in both the proximal tubular brush border as well as at interstitial sites of injury, but despite evidence for activation of the local RAS, treatment with ramipril was without effect. These studies demonstrate that the renal and vascular injury induced by Ang II infusion is mediated by the AT1 receptor despite downregulation of the receptor in the interstitium. In addition, although there is evidence for local RAS activation, the injury appears to be mediated solely by the exogenous Ang II.
Insights
Angiotensin II infusion causes hypertension and injury to blood vessels and kidneys in rats. Losartan, an AT1 receptor blocker, prevented these harmful effects, showing its therapeutic potential.
Area of Science:
- Cardiovascular Science
- Renal Physiology
- Pharmacology
Background:
- Angiotensin II (Ang II) infusion in rats causes systemic hypertension and significant vascular and kidney injury.
- The role of the AT1 receptor and local renin-angiotensin system (RAS) activation in Ang II-induced injury requires further elucidation.
Purpose of the Study:
- To investigate the modulation of the AT1 receptor during Ang II infusion.
- To determine if losartan blockade of the AT1 receptor can prevent Ang II-induced vascular and renal changes.
- To examine the role of the local RAS, including angiotensin-converting enzyme (ACE) expression, and the effect of ramipril treatment.
Main Methods:
- Rats underwent balloon injury to carotid arteries followed by Ang II infusion.
- Renal and vascular tissues were analyzed for phenotypic and cellular changes, AT1 receptor expression, and ACE protein levels.
- Rats were treated with either losartan (AT1 receptor blocker) or ramipril (ACE inhibitor).
Main Results:
- Ang II infusion induced hypertension, accelerated carotid artery thickening, proteinuria, glomerular changes, and tubulointerstitial injury.
- AT1 receptor number decreased in the renal interstitium but not glomeruli.
- Losartan completely prevented Ang II-induced hypertension and injury.
- ACE protein increased in injured areas, but ramipril treatment had no protective effect.
Conclusions:
- Ang II-induced renal and vascular injury is mediated by the AT1 receptor, even with interstitial downregulation.
- Despite evidence of local RAS activation, exogenous Ang II appears to be the primary driver of injury, as ACE inhibition was ineffective.