Inorganic Nitrate Supplementation Lowers Blood Pressure in Humans

亚硝酸盐 硝酸盐 血压 摄入 化学 膳食硝酸盐 内科学 血红蛋白 交叉研究 内分泌学 一氧化氮 动物科学 生物化学 医学 生物 替代医学 有机化学 病理 安慰剂
作者
Vikas Kapil,Alexandra B. Milsom,M Okorie,Sheiva Maleki-Toyserkani,Farihah Akram,Farkhanda Rehman,S. Arghandawi,Vanessa Pearl,Nigel Benjamin,Stavros P. Loukogeorgakis,Raymond J. MacAllister,Adrian J. Hobbs,Andrew G. Webb,Amrita Ahluwalia
出处
期刊:Hypertension [Ovid Technologies (Wolters Kluwer)]
卷期号:56 (2): 274-281 被引量:491
标识
DOI:10.1161/hypertensionaha.110.153536
摘要

Ingestion of dietary (inorganic) nitrate elevates circulating and tissue levels of nitrite via bioconversion in the entero-salivary circulation. In addition, nitrite is a potent vasodilator in humans, an effect thought to underlie the blood pressure–lowering effects of dietary nitrate (in the form of beetroot juice) ingestion. Whether inorganic nitrate underlies these effects and whether the effects of either naturally occurring dietary nitrate or inorganic nitrate supplementation are dose dependent remain uncertain. Using a randomized crossover study design, we show that nitrate supplementation (KNO 3 capsules: 4 versus 12 mmol [n=6] or 24 mmol of KNO 3 (1488 mg of nitrate) versus 24 mmol of KCl [n=20]) or vegetable intake (250 mL of beetroot juice [5.5 mmol nitrate] versus 250 mL of water [n=9]) causes dose-dependent elevation in plasma nitrite concentration and elevation of cGMP concentration with a consequent decrease in blood pressure in healthy volunteers. In addition, post hoc analysis demonstrates a sex difference in sensitivity to nitrate supplementation dependent on resting baseline blood pressure and plasma nitrite concentration, whereby blood pressure is decreased in male volunteers, with higher baseline blood pressure and lower plasma nitrite concentration but not in female volunteers. Our findings demonstrate dose-dependent decreases in blood pressure and vasoprotection after inorganic nitrate ingestion in the form of either supplementation or by dietary elevation. In addition, our post hoc analyses intimate sex differences in nitrate processing involving the entero-salivary circulation that are likely to be major contributing factors to the lower blood pressures and the vasoprotective phenotype of premenopausal women.

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