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生酮饮食:呼吸丙酮探测技术。

The Ketogenic Diet: Breath Acetone Sensing Technology.

机构信息

Department of Pharmaceutical Sciences, Massachusetts College of Pharmacy and Health Sciences University, Boston, MA 02115, USA.

出版信息

Biosensors (Basel). 2021 Jan 19;11(1):26. doi: 10.3390/bios11010026.

Abstract

The ketogenic diet, while originally thought to treat epilepsy in children, is now used for weight loss due to increasing evidence indicating that fat is burned more rapidly when there is a low carbohydrate intake. This low carbohydrate intake can lead to elevated ketone levels in the blood and breath. Breath and blood ketones can be measured to gauge the level of ketosis and allow for adjustment of the diet to meet the user's needs. Blood ketone levels have been historically used, but now breath acetone sensors are becoming more common due to less invasiveness and convenience. New technologies are being researched in the area of acetone sensors to capitalize on the rising popularity of the diet. Current breath acetone sensors come in the form of handheld breathalyzer devices. Technologies in development mostly consist of semiconductor metal oxides in different physio-chemical formations. These current devices and future technologies are investigated here with regard to utility and efficacy. Technologies currently in development do not have extensive testing of the selectivity of the sensors including the many compounds present in human breath. While some sensors have undergone human testing, the sample sizes are very small, and the testing was not extensive. Data regarding current devices is lacking and more research needs to be done to effectively evaluate current devices if they are to have a place as medical devices. Future technologies are very promising but are still in early development stages.

摘要

生酮饮食最初被认为可以治疗儿童癫痫,现在由于越来越多的证据表明,当碳水化合物摄入量低时,脂肪燃烧得更快,因此被用于减肥。这种低碳水化合物的摄入会导致血液和呼吸中的酮水平升高。可以通过测量呼吸和血液中的酮来衡量酮症的程度,并根据需要调整饮食。历史上一直使用血液酮水平,但现在由于侵入性较小且方便,呼吸丙酮传感器变得越来越普遍。由于该饮食越来越受欢迎,研究人员正在研究丙酮传感器的新技术。目前的呼吸丙酮传感器采用手持式呼气酒精检测仪的形式。开发中的技术主要由不同物理化学形态的半导体金属氧化物组成。本文研究了当前的呼吸丙酮传感器技术和未来的技术在实用性和功效方面的情况。目前正在开发的技术并没有对传感器的选择性进行广泛测试,包括人体呼吸中存在的许多化合物。虽然一些传感器已经经过人体测试,但样本量非常小,而且测试也不广泛。关于现有设备的数据很少,需要进行更多的研究,以有效评估现有设备是否可以作为医疗器械。未来的技术很有前途,但仍处于早期开发阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/709f/7835940/cae6dd4108df/biosensors-11-00026-g001.jpg

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