Benefits of aldosterone receptor antagonism in chronic kidney disease: the BARACK-D RCT

F D Richard Hobbs1,2, Richard McManus1, Clare Taylor1,3

  • 1Nuffield Department of Primary Health Care Sciences, University of Oxford, Oxford, UK.

Insights

Low-dose spironolactone did not improve cardiovascular outcomes or slow kidney decline in patients with chronic kidney disease stage 3b. The treatment increased adverse events and led to early discontinuation, offering no reno- or cardio-protection.

Area of Science:

  • Nephrology
  • Cardiology
  • Pharmacology

Background:

  • Chronic kidney disease (CKD) affects 10% of the global population, increasing risks for end-stage renal disease and vascular events.
  • Aldosterone receptor antagonists show benefits in heart failure, but their impact on CKD patients remains uncertain.

Purpose of the Study:

  • To evaluate the effect of low-dose spironolactone on mortality and cardiovascular outcomes in patients with CKD stage 3b.

Main Methods:

  • A prospective, randomized, open-label, blinded-endpoint trial involving 1,434 participants across 329 UK general practices.
  • Participants with CKD stage 3b (eGFR 30-50 ml/min/1.73 m²) received either 25 mg spironolactone daily plus standard care or standard care alone.

Main Results:

  • No significant differences were observed in primary combined vascular endpoints or secondary clinical outcomes, including renal function decline, between the spironolactone and control groups.
  • The spironolactone group experienced more adverse events, with two-thirds discontinuing treatment within six months due to safety criteria. Initial creatinine rise and eGFR decline were higher in the intervention arm.
  • Cost-effectiveness analysis indicated the addition of spironolactone exceeded the NICE threshold for cost per quality-adjusted life-year gained.

Conclusions:

  • Adding low-dose spironolactone (25 mg daily) to standard care does not provide cardiovascular or renal protection in CKD stage 3b patients.
  • The treatment was associated with increased adverse events and early discontinuation, with no demonstrated benefits in cardiovascular events or renal function decline.
Abstract

Related Concept Videos

Heart Failure Drugs: Inhibitors of Renin-Angiotensin System01:26

Heart Failure Drugs: Inhibitors of Renin-Angiotensin System

The activation of the sympathetic nervous system and the renin-angiotensin-aldosterone system (RAAS) contributes to cardiac remodeling, and inhibiting the RAAS is a pharmacological target in heart failure management. As a result, neurohumoral modulation is a crucial treatment principle for managing heart failure. This approach involves using medications like ACE inhibitors (ACEIs), angiotensin receptor blockers (ARBs), β-blockers, mineralocorticoid receptor antagonists (MRAs), and neutral...
356
Antihypertensive Drugs: Direct Renin Inhibitors01:25

Antihypertensive Drugs: Direct Renin Inhibitors

The renin-angiotensin-aldosterone system (RAAS) is an intricate physiological pathway involving numerous enzymes and hormones, including renin, angiotensin-converting enzyme (ACE), angiotensin I and II, and aldosterone. Imbalances within this system increase the production of angiotensin II and aldosterone. Increased angiotensin II levels promote vasoconstriction and blood pressure elevation. Concurrently, higher aldosterone levels stimulate sodium and water reabsorption in the kidneys,...
466
Antihypertensive Drugs: Potassium-Sparing Diuretics01:28

Antihypertensive Drugs: Potassium-Sparing Diuretics

Liddle syndrome is a genetically inherited form of hypertension characterized by the overactivity of epithelial sodium channels in the nephron, the functional unit of the kidney. This heightened activity leads to increased sodium reabsorption and excessive excretion of potassium. To counteract this, potassium-sparing diuretics such as amiloride are used. They function by blocking these sodium channels, thereby reducing the influx of sodium into the epithelial cells and minimizing the loss of...
426
Antihypertensive Drugs: Angiotensin II Receptor Blockers01:30

Antihypertensive Drugs: Angiotensin II Receptor Blockers

In the renin-angiotensin-aldosterone system, a hormone called angiotensin II plays a crucial role. It binds to the AT1 receptors in vascular smooth muscles coupled with Gq proteins. The activation of these receptors activates an enzyme called phospholipase C, which releases two molecules: inositol trisphosphate and diacylglycerol. These molecules cause a chain reaction that leads to the phosphorylation of myosin light chains and promotes interaction between actin and myosin, leading to smooth...
561