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呼吸丙酮浓度;生物学变异性和饮食的影响。

Breath acetone concentration; biological variability and the influence of diet.

机构信息

J Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, Dolejškova 3, 182 23, Prague 8, Czech Republic.

出版信息

Physiol Meas. 2011 Aug;32(8):N23-31. doi: 10.1088/0967-3334/32/8/N01. Epub 2011 Jul 1.

Abstract

Previous measurements of acetone concentrations in the exhaled breath of healthy individuals and the small amount of comparable data for individuals suffering from diabetes are briefly reviewed as a prelude to the presentation of new data on the sporadic and wide variations of breath acetone that occur in ostensibly healthy individuals. Data are also presented which show that following a ketogenic diet taken by eight healthy individuals their breath acetone concentrations increased up to five times over the subsequent 6 h. Similarly, the breath acetone increased six and nine times when a low carbohydrate diet was taken by two volunteers and remained high for the several days for which the diet was continued. These new data, together with the previous data, clearly indicate that diet and natural intra-individual biological and diurnal variability result in wide variations in breath acetone concentration. This places an uncertainty in the use of breath acetone alone to monitor blood glucose and glycaemic control, except and unless the individual acts as their own control and is cognizant of the need for dietary control.

摘要

简要回顾了健康个体呼气中丙酮浓度的先前测量值,以及少量患有糖尿病个体的可比数据,作为呈现新的关于健康个体呼气中丙酮间歇性和广泛变化的数据的前奏。还提供了数据,表明在八名健康个体摄入生酮饮食后,他们的呼气丙酮浓度在随后的 6 小时内增加了五倍。同样,当两名志愿者摄入低碳水化合物饮食时,呼气中的丙酮增加了六倍和九倍,并且在继续饮食的几天内仍保持较高水平。这些新数据与先前的数据一起清楚地表明,饮食和自然个体内生物学和昼夜变化导致呼气丙酮浓度广泛变化。这使得仅使用呼气丙酮来监测血糖和血糖控制存在不确定性,除非个体作为自己的对照并意识到需要进行饮食控制。

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