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The reno-protective role of AT(1)-receptor blockers
1Aarhus University Hospital, Denmark. carl.erik.mogensen@afdm.au.dk
Abstract:
In the 1970s and 1980s it became evident that progression of renal disease and blood pressure are correlated. Subsequently, it was shown that antihypertensive treatment, especially with agents that block the renin-angiotensin system (RAS), could slow the progression of diabetic renal disease. Several studies, particularly with RAS blockers, have confirmed beneficial effects on urinary albumin excretion in patients with diabetes and microalbuminuria or proteinuria. There are good reasons to explore dual blockade of the RAS with an AT(1)-receptor blocker and an ACE inhibitor. Receptor blockers may block the effects of angiotensin II more effectively than ACE inhibitors; moreover, ACE inhibitors increase bradykinins which may have positive effects on blood pressure and renal function. Such combination treatment has been found to be well tolerated and more effective in reducing blood pressure than either monotherapy. Positive effects on microalbuminuria or proteinuria have also been noted. Studies have shown that treatment with AT(1)-receptor blockers postpones end-stage renal disease and reduces the rate of decline in glomerular filtration rate (GFR) in patients with type 2 diabetes and nephropathy. Moreover, albuminuria was reduced to a greater extent with AT(1)-receptor blockers than with conventional antihypertensive therapy producing the same blood pressure reductions. In summary, AT(1)-receptor blockers are effective in all stages of diabetic renal disease, and have an excellent tolerability profile. Usually the side-effect profile is comparable with placebo. In certain situations, there may be a slight, readily reversible, increase in serum potassium. There may also be a slight reduction in GFR, reflecting a decrease in glomerular filtration pressure.
Insights
Angiotensin II receptor blockers (ARBs) effectively manage diabetic renal disease by slowing progression and reducing albuminuria. These treatments are well-tolerated, offering benefits across all disease stages.
Area of Science:
- Nephrology
- Cardiology
- Endocrinology
Background:
- Renal disease progression correlates with blood pressure.
- Antihypertensive treatment, particularly renin-angiotensin system (RAS) blockers, slows diabetic renal disease progression.
- RAS blockers show benefits in reducing urinary albumin excretion in diabetic patients with microalbuminuria or proteinuria.
Purpose of the Study:
- To explore dual blockade of the RAS using an AT(1)-receptor blocker and an ACE inhibitor.
- To evaluate the effectiveness of AT(1)-receptor blockers in slowing end-stage renal disease and decline in glomerular filtration rate (GFR) in type 2 diabetes with nephropathy.
Main Methods:
- Review of studies on antihypertensive treatments, focusing on RAS blockers.
- Analysis of combination therapy with AT(1)-receptor blockers and ACE inhibitors.
- Evaluation of AT(1)-receptor blockers versus conventional therapy for albuminuria reduction.
Main Results:
- Combination therapy is well-tolerated and more effective in reducing blood pressure than monotherapy.
- AT(1)-receptor blockers significantly reduce albuminuria compared to conventional antihypertensive therapy.
- AT(1)-receptor blockers postpone end-stage renal disease and reduce GFR decline in type 2 diabetes with nephropathy.
Conclusions:
- AT(1)-receptor blockers are effective in all stages of diabetic renal disease.
- These agents exhibit an excellent tolerability profile, comparable to placebo.
- Potential side effects include slight, reversible increases in serum potassium and minor GFR reduction.