Lactate infusion improves cardiac function in a porcine model of ischemic cardiogenic shock.

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Tác giả: Kristoffer Berg-Hansen, Mark Stoltenberg Ellegaard, Nigopan Gopalasingam, Halvor Guldbrandsen, Ole Kristian Lerche Helgestad, Oskar Kjærgaard Hørsdal, Alexander Møller Larsen, Niels Moeslund, Jacob Eifer Møller, Roni Nielsen, Hanne Berg Ravn, Henrik Wiggers

Ngôn ngữ: eng

Ký hiệu phân loại:

Thông tin xuất bản: England : Critical care (London, England) , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 711933

 BACKGROUND: Cardiogenic shock (CS) is associated with high mortality and medical therapies have failed to improve survival. Treatment with lactate is associated with improved cardiac function which may benefit this condition. Comprehensive hemodynamic assessment of lactate administration in CS is lacking, and the mechanisms underlying the cardiovascular effects of lactate in CS have not yet been elucidated. In this study we aimed to study the cardiovascular and cardiometabolic effects of treatment with lactate in experimental ischemic CS. METHODS: In a randomized, blinded design, 20 female pigs (60 kg) were studied. Left main coronary artery microsphere injections were used to cause CS, defined as a 30% reduction in CO or mixed venous saturation (SvO RESULTS: Arterial lactate levels increased from 2.4 ± 1.1 to 7.7 ± 1.1 mmol/L (P <
  0.001) during lactate infusion. CO increased by 0.7 L/min (P <
  0.001) compared with control, due to increased stroke volume (P = 0.003). Notably, heart rate and mean arterial pressure did not differ significantly between treatments. End-systolic elastance (load independent contractility) was enhanced during lactate infusion (P = 0.048), together with LV ejection fraction (P = 0.009) and dP/dt(max) (P = 0.041). Arterial elastance (afterload) did not differ significantly (P = 0.12). This resulted in improved ventriculo-arterial coupling efficiency (P = 0.012). Cardiac mechanical efficiency (P = 0.003), diuresis (P = 0.016), and SvO CONCLUSIONS: Lactate infusion improved cardiac function and myocardial mitochondrial respiration in a porcine model of CS. The hemodynamic effects included increased CO mediated through stroke volume increase. These favorable cardiovascular effects may benefit patients with CS.
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