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September 4, 2019AJP Regulatory Integrative and Comparative Physiology24 citationsOpen Access

Impact of acute antioxidant administration on inflammation and vascular function in heart failure with preserved ejection fraction

SRStephen M. RatchfordHCHeather L. CliftonJGJayson R. Gifford

Key Result

Acute antioxidant administration improved flow-mediated dilation (5.83% vs 3.49% with placebo) and decreased C-reactive protein, but did not alter microvascular function in patients with HFpEF.

Study Design

Type

RCT (n=16)

Blinding

Double-blind

Structured PICO

Does an acute antioxidant cocktail improve vascular function and reduce inflammation in patients with HFpEF?

P
Population
16 patients with heart failure with preserved ejection fraction (mean age 73 years, EF 54-70%) evaluated in a double-blind crossover study.
I
Intervention
Acute antioxidant cocktail (600 mg α-lipoic acid, 1,000 mg vitamin C, and 600 IU vitamin E) administered once
C
Comparator
Placebo
O
Outcome
Flow-mediated dilation (FMD) and reactive hyperemia (RH) evaluated 90 min after administrationsurrogate

Acute antioxidant administration improves conduit artery vasodilation and exerts anti-inflammatory effects in patients with HFpEF, though it does not affect microvascular function.

Main Result

Absolute Event Rate: 5.83% vs 3.49%

Abstract

Although it is now well established that heart failure with preserved ejection fraction (HFpEF) is associated with marked inflammation and a prooxidant state that is accompanied by vascular dysfunction, whether acute antioxidant (AO) administration can effectively target these disease-related decrements has not been evaluated. Thus, the present study sought to evaluate the efficacy of an acute over-the-counter AO cocktail (600 mg α-lipoic acid, 1,000 mg vitamin C, and 600 IU vitamin E) to mitigate inflammation and oxidative stress, and subsequently improve nitric oxide (NO) bioavailability and vascular function, in patients with HFpEF. Flow-mediated dilation (FMD) and reactive hyperemia (RH) were evaluated to assess conduit vessel and microvascular function, respectively, 90 min after administration of either placebo (PL) or AO in 16 patients with HFpEF (73 ± 10 yr, EF 54-70%) using a double-blind, crossover design. Circulating biomarkers of inflammation (C-reactive protein, CRP), oxidative stress (malondialdehyde and protein carbonyl), free radical concentration (EPR spectroscopy), antioxidant capacity, ascorbate and NO bioavailability (plasma nitrate, Formula: see text, and nitrite, Formula: see text) were also assessed. FMD improved following AO administration (PL: 3.49 ± 0.7%, AO: 5.83 ± 1.0%), whereas RH responses were similar between conditions (PL: 428 ± 51 mL, AO: 425 ± 51 mL). AO administration decreased CRP (PL: 4,429 ± 705 ng/mL, AO: 3,664 ± 520 ng/mL) and increased ascorbate (PL: 30.0 ± 2.9 µg/mL, AO: 45.1 ± 3.7 µg/mL) and Formula: see text (PL: 182 ± 21 nM, AO: 213 ± 24 nM) but did not affect other biomarkers. Together, these data suggest that acute AO administration can exert anti-inflammatory effects and improve conduit artery vasodilation, but not microvascular function, in patients with HFpEF.

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Cite This Study

Ratchford et al. (2019) conducted an RCT in Heart failure with preserved ejection fraction (HFpEF) (n=16). Antioxidant (AO) cocktail vs. Placebo was evaluated on Flow-mediated dilation (FMD). Acute antioxidant administration improved flow-mediated dilation (5.83% vs 3.49% with placebo) and decreased C-reactive protein, but did not alter microvascular function in patients with HFpEF.

synapsesocial.com/papers/6a8b8d933c68152a7ce960fchttps://doi.org/10.1152/ajpregu.00184.2019
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