Association of Aldosterone Concentration and Mineralocorticoid Receptor Genotype with Potassium Response to Spironolactone in Patients with Heart Failure
PHARMACOTHERAPY
Authors: Cavallari, Larisa H.; Groo, Vicki L.; Viana, Marlos A. G.; Dai, Yang; Patel, Shitalben R.; Stamos, Thomas D.
Abstract
Study Objective. To identify patient-specific factors associated with spironolactone-induced potassium level elevation in patients with heart failure. Design. Prospective cohort study. Setting. Two adult heart failure clinics. Patients. Sixty-two adult (mean +/- SD age 54 +/- 16 yrs) aldosterone antagonist-naive patients with heart failure. Intervention. Patients received spironolactone 12.5 mg/day, titrated to 25 mg/day if tolerated. Measurements and Main Results. Blood samples were obtained at baseline, 1 week after spironolactone initiation, and 1 week after spironolactone dose titration for assessment of baseline aldosterone level, serum chemistry, and angiotensinogen (AGT) c.-6G>A and p.M268T and mineralocorticoid receptor (NR3C2) c.21.5C>G and p.1180V genotypes. Patient characteristics, laboratory values, and genotypes were compared between those whose potassium levels increased by more than 0.5 mEq/L (15 patients) and those with lower potassium level elevations (47 patients) after spironolactone initiation and dose titration. Patients with a greater potassium level elevation had a higher mean +/- SD aldosterone concentration (178 +/- 92 vs 1.02 +/- 57 pg/ml, p=0.007) and NR3C2 215G allele frequency (50% vs 22%, p<0.01). Aldosterone concentrations positively correlated with diuretic dose (r=0.31.3, p=0.014) and negatively correlated with serum potassium level (r=-0.319, p=0.012). On regression analysis, factors predictive of potassium level increases greater than 0.5 mEq/L with spironolactone were aldosterone level greater than 150 pg/ml (odds ratio [OR] 30, 95% confidence interval [CI] 3.2-2871 and NR3C2 215G carrier status (OR 17, 95% CI 1.6-467). Conclusion. Our data suggest that potassium should be monitored with particular caution when spironolactone is started in patients with heart failure who have evidence of elevated aldosterone levels, such as high diuretic requirements, or the NR3C2 215G allele.
Clinical features and molecular basis of pseudohypoaldosteronism type 1
CLINICAL PEDIATRIC ENDOCRINOLOGY
Authors: Tajima, Toshihiro; Morikawa, Shuntaro; Nakamura, Akie
Abstract
Pseudohypoaldosteronism (PHA) type 1 is a disease showing mineralocorticoid resistance in the kidney and/or other mineralocorticoid target tissues. Patients with PHA1 present very high plasma aldosterone and renin levels, but they develop excessive salt wasting. There are three types of PHA1. The systemic form of PHA1 is inherited in an autosomal recessive manner and causes severe life-long salt loss in multiple target tissues, such as sweat glands, salivary glands, the colonic epithelium, and the lung. In the systemic form of PHA1, life-long salt supplementation is necessary. The second type is the renal form, where aldosterone resistance is shown only in the kidney, and its inheritance is autosomal dominant. In the renal form of PHA1, salt supplementation generally becomes unnecessary by 1-3 yr of age. The third type is the secondary PHA1, which is strongly associated with urinary tract infections and/or urinary tract malformations. This review summarizes the clinical features and molecular basis of PHA1. Understanding of its pathogenesis can be helpful for the early diagnosis and clinical care of affected children with PHA1.