Key result
Hyperkalemia and hypokalemia are linked to ~231% higher mortality in CKD patients.
Why the study?
Does abnormal serum potassium (hyperkalemia or hypokalemia) increase the risk of mortality, MACE, hospitalization, and RAAS blocker discontinuation in patients with CKD?
Cohort (n=55,266)
No
Does abnormal serum potassium (hyperkalemia or hypokalemia) increase the risk of mortality, MACE, hospitalization, and RAAS blocker discontinuation in patients with CKD?
Effect estimate: aIRR 3.31 (95% CI 2.52 to 4.34)
p-value: p=<0.001
Both hyperkalemia and hypokalemia are independently associated with higher rates of death, MACE, hospitalization, and RAAS blocker discontinuation in patients with CKD not undergoing dialysis.
May prompt closer potassium monitoring in CKD; leaves open whether correction reduces mortality.
BACKGROUND AND OBJECTIVES: Patients with CKD are more likely than others to have abnormalities in serum potassium (K(+)). Aside from severe hyperkalemia, the clinical significance of K(+) abnormalities is not known. We sought to examine the association of serum K(+) with mortality and hospitalization rates within narrow eGFR strata to understand how the burden of hyperkalemia varies by CKD severity. Associations were examined between serum K(+) and discontinuation of medications that block the renin-angiotensin-aldosterone system (RAAS), which are known to increase serum K(+). DESIGN, SETTING, PARTICIPANTS, & MEASUREMENTS: A cohort of patients with CKD (eGFR<60 ml/min per 1.73 m(2)) with serum K(+) data were studied (n=55,266) between January 1, 2009, and June 30, 2013 (study end). Serum K(+), eGFR, and covariates were considered on a time-updated basis. Mortality, major adverse cardiovascular events (MACE), hospitalization, and discontinuation of RAAS blockers were considered per time at risk. RESULTS: During the study, serum K(+) levels of 5.5-5.9 and ≥6.0 mEq/L were most prevalent at lower eGFR: they were present, respectively, in 1.7% and 0.2% of patient-time for eGFR of 50-59 ml/min per 1.73 m(2) versus 7.6% and 1.8% of patient-time for eGFR<30 ml/min per 1.73 m(2). Serum K(+) level <3.5 mEq/L was present in 1.2%-1.4% of patient-time across eGFR strata. The median follow-up time was 2.76 years. There was a U-shaped association between serum K(+) and mortality; pooled adjusted incidence rate ratios were 3.05 (95% confidence interval, 2.53 to 3.68) and 3.31 (95% confidence interval, 2.52 to 4.34) for K(+) levels <3.5 mEq/L and ≥6.0 mEq/L, respectively. Within eGFR strata, there were U-shaped associations of serum K(+) with rates of MACE, hospitalization, and discontinuation of RAAS blockers. CONCLUSIONS: Both hyperkalemia and hypokalemia were independently associated with higher rates of death, MACE, hospitalization, and discontinuation of RAAS blockers in patients with CKD who were not undergoing dialysis. Future studies are needed to determine whether interventions targeted at maintaining normal serum K(+) improve outcomes in this population.
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Luo et al. (2015) conducted a cohort in Chronic Kidney Disease (n=55,266). Abnormal serum potassium (≥6.0 mEq/L or <3.5 mEq/L) vs. Normal serum potassium (4.5-4.9 mEq/L) was evaluated on Mortality (aIRR 3.31, 95% CI 2.52 to 4.34, p=<0.001). Hyperkalemia (≥6.0 mEq/L) and hypokalemia (<3.5 mEq/L) were independently associated with higher mortality in CKD patients, with adjusted incidence rate ratios of 3.31 and 3.05, respectively.
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