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呼吸分析:呼吸采样方法学方法比较。

Breath Analysis: Comparison among Methodological Approaches for Breath Sampling.

机构信息

Department of Biology, University of Bari, 70126 Bari, Italy.

Apulian Breath Analysis Center (CeRBA), Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS), Istituto Tumori "Giovanni Paolo II", 70124 Bari, Italy.

出版信息

Molecules. 2020 Dec 10;25(24):5823. doi: 10.3390/molecules25245823.

Abstract

Despite promising results obtained in the early diagnosis of several pathologies, breath analysis still remains an unused technique in clinical practice due to the lack of breath sampling standardized procedures able to guarantee a good repeatability and comparability of results. The most diffuse on an international scale breath sampling method uses polymeric bags, but, recently, devices named Mistral and ReCIVA, able to directly concentrate volatile organic compounds (VOCs) onto sorbent tubes, have been developed and launched on the market. In order to explore performances of these new automatic devices with respect to sampling in the polymeric bag and to study the differences in VOCs profile when whole or alveolar breath is collected and when pulmonary wash out with clean air is done, a tailored experimental design was developed. Three different breath sampling approaches were compared: (a) whole breath sampling by means of Tedlar bags, (b) the end-tidal breath collection using the Mistral sampler, and (c) the simultaneous collection of the whole and alveolar breath by using the ReCIVA. The obtained results showed that alveolar fraction of breath was relatively less affected by ambient air (AA) contaminants (-values equal to 0.04 for Mistral and 0.002 for ReCIVA Low) with respect to whole breath (-values equal to 0.97 for ReCIVA Whole). Compared to Tedlar bags, coherent results were obtained by using Mistral while lower VOCs levels were detected for samples (both breath and AA) collected by ReCIVA, likely due to uncorrected and fluctuating flow rates applied by this device. Finally, the analysis of all data also including data obtained by explorative analysis of the unique lung cancer (LC) breath sample showed that a clean air supply might determine a further confounding factor in breath analysis considering that lung wash-out is species-dependent.

摘要

尽管在几种病理学的早期诊断中取得了有希望的结果,但由于缺乏能够保证结果良好的可重复性和可比性的呼吸采样标准化程序,呼吸分析在临床实践中仍然未得到应用。在国际范围内最广泛使用的呼吸采样方法是使用聚合物袋,但最近,已经开发并推出了名为 Mistral 和 ReCIVA 的设备,这些设备能够直接将挥发性有机化合物 (VOC) 浓缩到吸附管上。为了探索这些新的自动设备相对于在聚合物袋中采样的性能,并研究在收集全呼或肺泡呼以及用清洁空气进行肺冲洗时收集的 VOC 谱的差异,开发了一种定制的实验设计。比较了三种不同的呼吸采样方法:(a) 使用 Tedlar 袋进行全呼采样,(b) 使用 Mistral 采样器采集呼末呼吸,(c) 使用 ReCIVA 同时采集全呼和肺泡呼。结果表明,与全呼相比,呼吸中的肺泡部分受环境空气 (AA) 污染物的影响相对较小 (-值分别等于 Mistral 的 0.04 和 ReCIVA Low 的 0.002)。与 Tedlar 袋相比,Mistral 得到了一致的结果,而 ReCIVA 收集的样本(包括呼吸和 AA)中的 VOC 水平较低,可能是由于该设备应用的未校正和波动的气流所致。最后,对所有数据(包括对独特的肺癌 (LC) 呼吸样本进行探索性分析所获得的数据)的分析还表明,考虑到肺冲洗是物种依赖性的,清洁空气供应可能会成为呼吸分析中的另一个混杂因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0997/7763204/af69c53c5630/molecules-25-05823-g001.jpg

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