4.7 Article

Physiological role for nitrate-reducing oral bacteria in blood pressure control

Journal

FREE RADICAL BIOLOGY AND MEDICINE
Volume 55, Issue -, Pages 93-100

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.freeradbiomed.2012.11.013

Keywords

Blood pressure; Nitric oxide; Nitrite; Nitrate; Bacteria; Free radicals

Funding

  1. British Heart Foundation
  2. Swedish Heart-Lung Foundation
  3. Torsten and Ragnar Soderberg Foundation
  4. Vinnova (CIDaT)
  5. EU
  6. British Heart Foundation [SP/08/006/25110] Funding Source: researchfish

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Circulating nitrate (NO3-), derived from dietary sources or endogenous nitric oxide production, is extracted from blood by the salivary glands, accumulates in saliva, and is then reduced to nitrite (NO2-) by the oral microflora. This process has historically been viewed as harmful, because nitrite can promote formation of potentially carcinogenic N-nitrosamines. More recent research, however, suggests that nitrite can also serve as a precursor for systemic generation of vasodilatory nitric oxide, and exogenous administration of nitrate reduces blood pressure in humans. However, whether oral nitrate-reducing bacteria participate in setting blood pressure is unknown. We investigated whether suppression of the oral microflora affects systemic nitrite levels and hence blood pressure in healthy individuals. We measured blood pressure (clinic, home, and 24-h ambulatory) in 19 healthy volunteers during an initial 7-day control period followed by a 7-day treatment period with a chlorhexidine-based antiseptic mouthwash. Oral nitrate-reducing capacity and nitrite levels were measured after each study period. Antiseptic mouthwash treatment reduced oral nitrite production by 90% (p < 0.001) and plasma nitrite levels by 25% (p = 0.001) compared to the control period. Systolic and diastolic blood pressure increased by 2-3 .5 mm Hg, increases correlated to a decrease in circulating nitrite concentrations (r(2) = 0.56, p = 0.002). The blood pressure effect appeared within 1 day of disruption of the oral microflora and was sustained during the 7-day mouthwash intervention. These results suggest that the recycling of endogenous nitrate by oral bacteria plays an important role in determination of plasma nitrite levels and thereby in the physiological control of blood pressure. (c) 2012 Elsevier Inc. All rights reserved.

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