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Published on: October 26, 2020
Aldosterone and aldosterone synthase inhibitors in cardiorenal disease
Subodh Verma1,2,3, Avinash Pandey4, Arjun K Pandey5
1Division of Cardiac Surgery, St. Michael's Hospital-Unity Health Toronto, Toronto, Ontario, Canada.
Insights
New aldosterone synthase inhibitors show promise for treating hypertension and may protect against heart and kidney diseases. Further research is needed to confirm their therapeutic role.
Area of Science:
- Endocrinology
- Cardiovascular Medicine
- Nephrology
Background:
- The renin-angiotensin-aldosterone system is crucial for managing cardiovascular and kidney diseases.
- Excess aldosterone contributes to cardiovascular pathology via genomic and nongenomic mechanisms.
- Mineralocorticoid receptor antagonists are standard therapy but have limitations.
Purpose of the Study:
- To explore the therapeutic potential of aldosterone synthase inhibitors.
- To address challenges in developing specific CYP11B2 inhibitors.
- To evaluate the role of these inhibitors in hypertension and other diseases.
Main Methods:
- Review of existing literature on aldosterone synthesis and mineralocorticoid receptor antagonists.
- Analysis of early-phase clinical trial data for newer aldosterone synthase inhibitors.
- Discussion of challenges and future directions in inhibitor development.
Main Results:
- Early aldosterone synthase inhibitors show potential in lowering blood pressure in resistant hypertension.
- Newer agents may offer advantages over existing therapies.
- Challenges include enzyme specificity and off-target effects.
Conclusions:
- Aldosterone synthase inhibitors represent a promising therapeutic class.
- Further clinical trials are necessary to establish their efficacy in hypertension, heart failure, and chronic kidney disease.
- These agents could offer a major therapeutic advance.
Abstract:
Modulation of the renin-angiotensin-aldosterone system is a foundation of therapy for cardiovascular and kidney diseases. Excess aldosterone plays an important role in cardiovascular disease, contributing to inflammation, fibrosis, and dysfunction in the heart, kidneys, and vasculature through both genomic and mineralocorticoid receptor (MR)-mediated as well as nongenomic mechanisms. MR antagonists have been a key therapy for attenuating the pathologic effects of aldosterone but are associated with some side effects and may not always adequately attenuate the nongenomic effects of aldosterone. Aldosterone is primarily synthesized by the CYP11B2 aldosterone synthase enzyme, which is very similar in structure to other enzymes involved in steroid biosynthesis including CYP11B1, a key enzyme involved in glucocorticoid production. Lack of specificity for CYP11B2, off-target effects on the hypothalamic-pituitary-adrenal axis, and counterproductive increased levels of bioactive steroid intermediates such as 11-deoxycorticosterone have posed challenges in the development of early aldosterone synthase inhibitors such as osilodrostat. In early-phase clinical trials, newer aldosterone synthase inhibitors demonstrated promise in lowering blood pressure in patients with treatment-resistant and uncontrolled hypertension. It is therefore plausible that these agents offer protection in other disease states including heart failure or chronic kidney disease. Further clinical evaluation will be needed to clarify the role of aldosterone synthase inhibitors, a promising class of agents that represent a potentially major therapeutic advance.
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