Impaired oxygen uptake kinetics in heart failure with preserved ejection fraction.

Hearon, Christopher M; Sarma, Satyam; Dias, Katrin A; Hieda, Michinari; Levine, Benjamin D · Heart · 2019

cross_sectional · Level IV

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Abstract

The time needed to increase oxygen utilisation to meet metabolic demand (V̇O<sub>2</sub> kinetics) is impaired in heart failure (HF) with reduced ejection fraction and is an independent risk factor for HF mortality. It is not known if V̇O<sub>2</sub> kinetics are slowed in HF with preserved ejection fraction (HFpEF). We tested the hypothesis that V̇O<sub>2</sub> kinetics are slowed during submaximal exercise in HFpEF and that slower V̇O<sub>2</sub> kinetics are related to impaired peripheral oxygen extraction. Eighteen HFpEF patients (68±7 years, 10 women) and 18 healthy controls (69±6 years, 10 women) completed submaximal and peak exercise testing. Cardiac output (acetylene rebreathing, Q̇<sub>c</sub>), ventilatory oxygen uptake (V̇O<sub>2</sub>, Douglas bags) and arterial-venous O<sub>2</sub> difference (a-vO<sub>2</sub> difference) derived from Q̇<sub>c</sub> and V̇O<sub>2</sub> were assessed during exercise. Breath-by-breath O<sub>2</sub> uptake was measured continuously throughout submaximal exercise, and V̇O<sub>2</sub> kinetics was quantified as mean response time (MRT). HFpEF patients had markedly slowed V̇O<sub>2</sub> kinetics during submaximal exercise (MRT: control: 40.1±14.2, HFpEF: 65.4±27.7 s; p<0.002), despite no relative impairment in submaximal cardiac output (Q̇<sub>c</sub>: control: 8.6±1.7, HFpEF: 9.7±2.2 L/min; p=0.79). When stratified by MRT, HFpEF with an MRT ≥60 s demonstrated elevated Q̇<sub>c</sub>, and impaired peripheral oxygen extraction that was apparent during submaximal exercise compared with HFpEF with a MRT <60 s (submaximal a-vO<sub>2</sub> difference: MRT <60 s: 9.7±2.1, MRT ≥60 s: 7.9±1.1 mL/100 mL; p=0.03). HFpEF patients have slowed V̇O<sub>2</sub> kinetics that are related to impaired peripheral oxygen utilisation. MRT can identify HFpEF patients with peripheral limitations to submaximal exercise capacity and may be a target for therapeutic intervention.

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