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April 1, 2011Journal of Applied Physiology317 citations

Dietary nitrate supplementation enhances exercise performance in peripheral arterial disease

AKAarti A. KenjaleKHKatherine L. HamTSThomas Stäbler

Key Result

Dietary nitrate supplementation via beetroot juice increased time to claudication onset by 18% and peak walking time by 17% compared to placebo in patients with peripheral arterial disease.

Study Design

Type

RCT (n=8)

Blinding

Open-label

Randomization

Crossover

Multicenter

No

Structured PICO

Does dietary nitrate supplementation (beetroot juice) improve exercise tolerance and tissue oxygenation in patients with peripheral arterial disease?

P
Population
8 subjects with peripheral arterial disease (PAD) presenting with claudication pain during walking
I
Intervention
500 ml beetroot (BR) juice (dietary supplementation of inorganic nitrate) consumed prior to exercise testing
C
Comparator
500 ml placebo (PL)
O
Outcome
Plasma NO2- concentration, exercise tolerance (time to claudication pain and peak walking time), and gastrocnemius fractional O2 extraction during a maximal cardiopulmonary exercise (CPX) testsurrogate

Dietary nitrate supplementation via beetroot juice acutely improves exercise tolerance and peripheral tissue oxygenation in patients with peripheral arterial disease.

Main Result

Effect estimate: 18% increase

Absolute Event Rate: 215% vs 183%

p-value: p=<0.01

Limitations

  • Small sample size (n=8)
  • Open-label design
  • Acute administration only
  • NIRS [HHb tot] does not include measures of actual limb blood flow

Abstract

Peripheral arterial disease (PAD) results in a failure to adequately supply blood and oxygen (O(2)) to working tissues and presents as claudication pain during walking. Nitric oxide (NO) bioavailability is essential for vascular health and function. Plasma nitrite (NO(2)(-)) is a marker of vascular NO production but may also be a protected circulating "source" that can be converted to NO during hypoxic conditions, possibly aiding perfusion. We hypothesized that dietary supplementation of inorganic nitrate in the form of beetroot (BR) juice would increase plasma NO(2)(-) concentration, increase exercise tolerance, and decrease gastrocnemius fractional O(2) extraction, compared with placebo (PL). This was a randomized, open-label, crossover study. At each visit, subjects (n = 8) underwent resting blood draws, followed by consumption of 500 ml BR or PL and subsequent blood draws prior to, during, and following a maximal cardiopulmonary exercise (CPX) test. Gastrocnemius oxygenation during the CPX was measured by near-infrared spectroscopy. There were no changes from rest for NO(2)(-) (152 ± 72 nM) following PL. BR increased plasma NO(2)(-) after 3 h (943 ± 826 nM; P ≤ 0.01). Subjects walked 18% longer before the onset of claudication pain (183 ± 84 s vs. 215 ± 99 s; P ≤ 0.01) and had a 17% longer peak walking time (467 ± 223 s vs. 533 ± 233 s; P ≤ 0.05) following BR vs. PL. Gastrocnemius tissue fractional O(2) extraction was lower during exercise following BR (7.3 ± 6.2 vs. 10.4 ± 6.1 arbitrary units; P ≤ 0.01). Diastolic blood pressure was lower in the BR group at rest and during CPX testing (P ≤ 0.05). These findings support the hypothesis that NO(2)(-)-related NO signaling increases peripheral tissue oxygenation in areas of hypoxia and increases exercise tolerance in PAD.

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Cite This Study

Kenjale et al. (2011) conducted an RCT in Peripheral arterial disease (PAD) (n=8). Beetroot juice (dietary nitrate) vs. Orange juice (placebo) was evaluated on Claudication onset time (seconds) (18% increase, p=<0.01). Dietary nitrate supplementation via beetroot juice increased time to claudication onset by 18% and peak walking time by 17% compared to placebo in patients with peripheral arterial disease.

synapsesocial.com/papers/6a18c9230048a5c8b24adfd5https://doi.org/10.1152/japplphysiol.00071.2011
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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