Key result
Higher plasma kynurenine levels in patients with stable heart failure were independently associated with an increased risk of all-cause mortality (HR 1.46 per 1 μmol/L increase) and reduced functional capacity.
Why the study?
Is higher plasma kynurenine associated with worse functional capacity and increased mortality in patients with heart failure?
Observational (n=294)
No
Is higher plasma kynurenine associated with worse functional capacity and increased mortality in patients with heart failure?
Hazard Ratio: 1.46 (95% CI 1.15–1.86)
p-value: p=<0.01
In patients with stable heart failure, elevated plasma kynurenine levels are associated with reduced functional capacity, lower muscle strength, and increased mortality.
Kynurenine may aid risk stratification in stable heart failure; hypothesis-generating and should not yet change practice.
BACKGROUND: Kynurenine is a circulating metabolite from the essential amino acid tryptophan. Accelerated degradation of kynurenine in skeletal muscle has been reported to provide an anti-inflammatory effect. The aim of this study was to investigate the association between blood kynurenine and muscle mass/function in patients with heart failure (HF), in whom diseased muscle mass/function plays a pathophysiological role. METHODS AND RESULTS: Plasma kynurenine was assessed in 249 patients with HF (67±11 years, 21% women) and in 45 controls from the SICA-HF study. Kynurenine was higher in 173 HF patients with reduced ejection fraction (EF) and in 76 patients with preserved EF than controls (3.5±1.5, 3.4±1.3, and 2.4±1.1 μmol/L, P<0.001). In HF patients, kynurenine had an inverse association with handgrip strength (r=-0.26, P<0.01), peak oxygen consumption (r=-0.29, P<0.01), 6-min walk distance (r=-0.23, P<0.01), and had a positive association with kidney and liver function parameters. No correlation was observed between kynurenine and lean mass. On multivariable linear regression analysis, a significant association was noted between kynurenine and peak oxygen consumption even after adjustment for age, gender, BMI, and hemoglobin (β=-0.23, P<0.001). Patients with higher kynurenine were at higher risk of death (adjusted HR, 1.46 per 1 μmol/L, P<0.01). CONCLUSIONS: In stable HF patients, plasma kynurenine was inversely correlated with muscle strength and functional capacity as well as with liver and kidney function.
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Konishi et al. (2016) conducted an observational in Heart Failure (n=294). Plasma kynurenine level vs. Lower kynurenine level / healthy controls was evaluated on All-cause death (HR 1.46, 95% CI 1.15-1.86, p=<0.01). Higher plasma kynurenine levels in patients with stable heart failure were independently associated with an increased risk of all-cause mortality (HR 1.46 per 1 μmol/L increase) and reduced functional capacity.
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