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Published on: October 26, 2020
Non-steroidal mineralocorticoid receptor antagonists in cardiorenal disease
Arjun K Pandey1, Deepak L Bhatt2, Francesco Cosentino3
1Michael G. DeGroote School of Medicine, McMaster University, Hamilton, ON, Canada.
Insights
New non-steroidal mineralocorticoid receptor antagonists (MRAs) offer improved cardiorenal disease therapy. These agents show promise in reducing adverse events for patients with heart failure and chronic kidney disease (CKD), addressing limitations of older steroidal MRAs.
Area of Science:
- Pharmacology and Therapeutics
- Cardiology
- Nephrology
Background:
- Patients with heart failure and chronic kidney disease (CKD) face high risks despite current treatments.
- Steroidal mineralocorticoid receptor antagonists (MRAs) improve survival but are underused due to hyperkalemia and hormonal side effects.
- Non-steroidal MRAs represent a novel therapeutic class for cardiorenal conditions.
Purpose of the Study:
- To review the development and therapeutic potential of non-steroidal mineralocorticoid receptor antagonists (MRAs).
- To compare non-steroidal MRAs with steroidal counterparts, highlighting improved safety and efficacy profiles.
- To discuss the role of non-steroidal MRAs in managing cardiorenal diseases, including heart failure and CKD.
Main Methods:
- Review of clinical trial data for non-steroidal MRAs, including esaxerenone and finerenone.
- Analysis of pharmacokinetic, pharmacodynamic, and physiochemical properties of non-steroidal MRAs.
- Evaluation of anti-inflammatory, anti-remodeling, and anti-fibrotic effects in cardiorenal tissues.
Main Results:
- Non-steroidal MRAs exhibit high affinity and specificity for the mineralocorticoid receptor (MR).
- Finerenone demonstrated significant reduction in kidney and cardiovascular events in Type 2 diabetes with CKD patients (FIGARO-DKD, FIDELIO-DKD trials).
- These agents possess beneficial properties like anti-inflammation and anti-fibrosis in the heart and kidneys.
Conclusions:
- Non-steroidal MRAs offer a promising therapeutic advance for cardiorenal disease.
- They present a potentially safer and more effective alternative to steroidal MRAs, with ongoing evaluation in heart failure and combination therapies.
- These agents are poised to become a cornerstone therapy across the cardiorenal disease spectrum.
Abstract:
Despite existing treatments, patients with heart failure and chronic kidney disease (CKD) remain at high risk for adverse outcomes and progression to end-stage disease. Steroidal mineralocorticoid receptor antagonists (MRAs) such as spironolactone and eplerenone reduce mortality but remain under-prescribed due to the perceived risk of hyperkalaemia and hormonal side effects. The discovery of non-steroidal MRAs represents a major new dimension in cardiorenal disease therapy. Non-steroidal MRAs have high affinity and specificity for the mineralocorticoid receptor (MR) and differ from both steroidal agents and each other with respect to important physiochemical, pharmacodynamic, and pharmacokinetic parameters. Similar to their steroidal counterparts, they have beneficial anti-inflammatory, anti-remodelling, and anti-fibrotic properties in the kidneys, heart, and vasculature. There are several non-steroidal MRAs under development and clinical assessment; of these, only esaxerenone and finerenone are approved for treatment globally. In Japan, esaxerenone is approved for essential hypertension and has been studied in diabetic nephropathy. Compared with steroidal MRAs, finerenone more potently inhibits MR co-regulator recruitment and fibrosis and distributes more evenly between the heart and kidneys. The landmark Phase III trials FIGARO-DKD and FIDELIO-DKD demonstrated that finerenone-reduced major kidney and cardiovascular events on top of maximally tolerated renin-angiotensin-aldosterone system inhibition in patients with CKD associated with Type 2 diabetes. Non-steroidal MRAs are currently under evaluation in heart failure and for synergistic treatment with sodium-glucose contransporter 2 inhibitors. These ground-breaking agents could become an important therapy across the spectrum of cardiorenal disease.
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