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首页> 外文期刊>Journal of breath research >Dynamic collection and analysis of volatile organic compounds from the headspace of cell cultures
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Dynamic collection and analysis of volatile organic compounds from the headspace of cell cultures

机译:从细胞培养液的顶空动态收集和分析挥发性有机化合物

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摘要

Exhaled breath has proven to be a valuable source of information about human bodies. Subtle differences between volatile organic compounds (VOCs) formed endogenously can be detected and become a base for a potential monitoring tool for health and disease. Until now, there has been a lack of biological and mechanistic knowledge of the processes involved in the production of relevant VOCs. Among the possible sources of health-related and disease-related VOCs are microorganisms found in the respiratory tract and in the gut. Other VOCs in the body are produced by cells that are influenced by the disease, for instance, due to metabolic disorders and/or inflammation. To gain insight into the in vivo production of VOCs by human cells and thus the exhaled breath composition, in vitro experiments involving relevant cells should be studied because they may provide valuable information on the production of VOCs by the affected cells. To this aim we developed and validated a system for dynamically (continuously) collecting headspace air in vitro using a Caco-2 cell line. The system allows the application of different cell lines as well as different experimental setups, including varying exposure times and treatment options while preserving cell viability. Significant correlation (p <= 0.0001) between collection outputs within each studied group confirmed high reproducibility of the collection system. An example of such an application is presented here. We studied the influence of oxidative stress on the VOC composition of the headspace air of Caco-2 cells.
机译:呼气被证明是有关人体信息的宝贵资源。可以检测到内源性形成的挥发性有机化合物(VOC)之间的细微差异,并成为潜在的健康和疾病监测工具的基础。到现在为止,对相关VOC的生产所涉及的过程的生物学和机械知识仍然缺乏。与健康有关和与疾病有关的挥发性有机化合物的可能来源是呼吸道和肠道中发现的微生物。人体内其他VOC是由受疾病影响的细胞产生的,例如由于代谢失调和/或炎症。为了深入了解人细胞体内VOC的产生以及呼出的呼吸成分,应研究涉及相关细胞的体外实验,因为它们可能提供有关受影响细胞产生VOC的有价值的信息。为此,我们开发并验证了使用Caco-2细胞系体外动态(连续)收集顶空空气的系统。该系统允许应用不同的细胞系以及不同的实验设置,包括变化的暴露时间和处理选项,同时保持细胞活力。每个研究组内的采集输出之间的显着相关性(p <= 0.0001)证实了采集系统的高再现性。此处提供了此类应用程序的示例。我们研究了氧化应激对Caco-2细胞顶空空气VOC组成的影响。

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