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Ethanol vapor imaging system 'sniffer camera' for evaluation of alcohol metabolism from breath and palm skin gas

机译:乙醇蒸汽成像系统“Sniffer摄像头”用于评估呼吸和棕榈皮肤气体的酒精新陈代谢

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摘要

Breath and body odors are composed of various volatile organic compounds in human transpiration. The gaseous components are related to disease and human metabolic function. Therefore, a novel two-dimensional fluorometric imaging system, known as a "sniffer camera" for gaseous ethanol emissions from human breath and palm skin was constructed and tested. The imaging system measures ethanol vapor concentrations as intensities of fluorescence through an enzymatic reaction induced by alcohol dehydrogenase (ADH). The imaging system consisted of a enzyme immobilized cotton mesh, a multi UV-LED excitation sheet and a high-sensitive CCD camera. This imaging system utilized ADH for recognition of ethanol vapor. It measured ethanol vapor by analysing fluorescent intensity of nicotinamide adenine dinucleotide (NADH), which is produced by an enzymatic reaction on a cotton mesh. This NADH fluorometric imaging system achieved the two-dimensional real-time imaging of ethanol vapor distribution from 0.5 to 200 ppm. The system showed a rapidly and accurately responses and a visible measurement, which could lead an analysis to metabolism function.
机译:呼吸和体臭由人蒸腾中的各种挥发性有机化合物组成。气态组分与疾病和人类代谢功能有关。因此,构建并测试了一种新的二维荧光成像系统,称为用于来自人呼吸和棕榈皮肤的气态乙醇排放的“嗅探器相机”。成像系统通过醇脱氢酶(ADH)诱导的酶促反应测量乙醇蒸汽浓度作为荧光的强度。成像系统由酶固定的棉网,多紫外线LED激励片和高敏感的CCD相机组成。该成像系统利用ADH识别乙醇蒸气。通过分析烟氨基酰胺腺嘌呤二核苷酸(NADH)的荧光强度来测量乙醇蒸气,这是通过棉网上的酶反应产生的。该NADH荧光成像系统实现了0.5至200ppm的乙醇蒸汽分布的二维实时成像。该系统展示了快速准确的响应和可见测量,这可能导致代谢功能的分析。

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