Lipid Infusion Enhances Sympathetic Transduction via Redox-Sensitive Pathways
Colten G. Miller, Jack C. Kovarik, Megan E. Gangwish, Davina A. Clonch, Leonidas E. Bantis, John P. Thyfault, John M. Miles, Seth W. HolwerdaBACKGROUND:
Elevated circulating lipids increase oxidative stress and impair vascular function, but their effects on sympathetic-vascular control in humans are not well understood. We tested the hypothesis that intravenous lipid infusion enhances sympathetic-vascular transduction and beat-to-beat arterial pressure variability in humans, and that these effects are mediated, in part, by oxidative stress.
METHODS:
In a randomized, double-blind, placebo-controlled crossover study, healthy adults underwent 2 hours of intravenous lipid infusion (20% Intralipid) with coinfusion of ascorbic acid or saline control. Endothelial function was assessed by brachial artery flow-mediated dilation, and muscle sympathetic nerve activity (MSNA) was recorded using microneurography. Sympathetic-vascular transduction was quantified by signal-averaging beat-to-beat mean arterial pressure (MAP) and brachial vascular conductance responses after spontaneous MSNA bursts.
RESULTS:
Plasma malondialdehyde increased during lipid+saline (peak: 48±12 versus BL: 42±11 ng/mL;
CONCLUSIONS:
Lipid infusion enhances sympathetic-vascular transduction and arterial pressure variability, consistent with a redox-sensitive mechanism, while impairing endothelial function via pathways that ascorbic acid does not fully reverse.
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