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Mineralcorticoid receptor blockers in chronic kidney disease
Sara Erraez1, Manuel López-Mesa2, Pablo Gómez-Fernández1
1Unidad de Factores de Riesgo Vascular, Nefrología, Hospital Universitario de Jerez, Jerez de la Frontera, Cádiz, Spain.
Abstract:
There are many experimental data supporting the involvement of aldosterone and mineralcorticoid receptor (MR) activation in the genesis and progression of chronic kidney disease (CKD) and cardiovascular damage. Many studies have shown that in diabetic and non-diabetic CKD, blocking the renin-angiotensin-aldosterone (RAAS) system with conversion enzyme inhibitors (ACEi) or angiotensin II receptor blockers (ARBs) decreases proteinuria, progression of CKD and mortality, but there is still a significant residual risk of developing these events. In subjects treated with ACEi or ARBs there may be an aldosterone breakthrough whose prevalence in subjects with CKD can reach 50%. Several studies have shown that in CKD, the aldosterone antagonists (spironolactone, eplerenone) added to ACEi or ARBs, reduce proteinuria, but increase the risk of hyperkalemia. Other studies in subjects treated with dialysis suggest a possible beneficial effect of antialdosteronic drugs on CV events and mortality. Newer potassium binders drugs can prevent/decrease hyperkalemia induced by RAAS blockade, and may reduce the high discontinuation rates or dose reduction of RAAS-blockers. The nonsteroidal MR blockers, with more potency and selectivity than the classic ones, reduce proteinuria and have a lower risk of hyperkalemia. Several clinical trials, currently underway, will determine the effect of classic MR blockers on CV events and mortality in subjects with stage 3b CKD and in dialysis patients, and whether in patients with type 2 diabetes mellitus and CKD, optimally treated and with high risk of CV and kidney events, the addition of finerenone to their treatment produces cardiorenal benefits. Large randomized trials have shown that sodium glucose type 2 cotransporter inhibitors (SGLT2i) reduce mortality and the development and progression of diabetic and nondiabetic CKD. There are pathophysiological arguments, which raise the possibility that the triple combination ACEi or ARBs, SGLT2i and aldosterone antagonist provide additional renal and cardiovascular protection.
Insights
Aldosterone and mineralocorticoid receptor (MR) activation contribute to chronic kidney disease (CKD) and cardiovascular damage. Newer therapies targeting MR, alongside existing treatments, may offer improved cardiorenal protection in CKD patients.
Area of Science:
- Nephrology
- Cardiology
- Endocrinology
Background:
- Aldosterone and mineralocorticoid receptor (MR) activation play a role in chronic kidney disease (CKD) and cardiovascular damage.
- Blocking the renin-angiotensin-aldosterone (RAAS) system with ACE inhibitors (ACEi) or angiotensin II receptor blockers (ARBs) reduces CKD progression but leaves residual risk.
- Aldosterone breakthrough occurs in up to 50% of CKD patients on ACEi/ARBs, necessitating further therapeutic strategies.
Purpose of the Study:
- To review the role of aldosterone and MR antagonists in CKD management.
- To evaluate the efficacy and safety of novel therapeutic approaches, including potassium binders and nonsteroidal MR blockers.
- To explore the potential benefits of triple therapy combining RAAS blockade, SGLT2 inhibitors, and MR antagonists for cardiorenal protection.
Main Methods:
- Review of experimental data and clinical studies on aldosterone, MR activation, and RAAS blockade in CKD.
- Analysis of the impact of aldosterone antagonists (spironolactone, eplerenone) and newer nonsteroidal MR blockers on proteinuria and hyperkalemia.
- Examination of the role of potassium binders in mitigating hyperkalemia and improving RAAS inhibitor adherence.
- Consideration of ongoing clinical trials investigating MR blockers and SGLT2 inhibitors in CKD populations.
Main Results:
- Aldosterone antagonists reduce proteinuria in CKD but increase hyperkalemia risk.
- Newer potassium binders can prevent/decrease hyperkalemia, potentially improving RAAS blocker adherence.
- Nonsteroidal MR blockers show promise with reduced hyperkalemia risk and proteinuria reduction.
- Sodium glucose type 2 cotransporter inhibitors (SGLT2i) significantly reduce mortality and CKD progression.
Conclusions:
- Targeting the MR pathway offers potential for improved cardiorenal outcomes in CKD.
- Combination therapies, including RAAS blockade, SGLT2 inhibitors, and MR antagonists, may provide additive renal and cardiovascular protection.
- Ongoing trials will clarify the role of MR blockers in CKD and type 2 diabetes mellitus patients.
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