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Screening and discrimination of Hepatocellular carcinoma patients by testing exhaled breath with smart devices using composite polymer/carbon nanotube gas sensors

机译:用复合聚合物/碳纳米管气体传感器测试呼吸呼吸呼吸呼吸呼吸呼吸筛查和辨别

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There is currently great interest in the medical application of electronic nose and chemical sensors, especially in the area of early diagnosis and screening of diseases. In this study, a pocket electronic nose based on eight nanocomposite gas sensors made of polymer and functionalized single-walled carbon nanotubes (f-SWCNTs) was shown to be capable to discriminate between the two sample groups of hepatocellular carcinoma (HCC) patients and healthy control subjects. Polymer/f-SWCNTs sensor-integrated electronic nose system has been designed and fabricated to be suitable for exhaled breath detection. This chemical gas sensor array has a good sensitivity to a broad range of volatile organic compounds (VOCs), sufficiently to cover the chemical species contained in the human exhaled breath such as acetone, ammonia, methyl-ethyl-ketone, and toluene (excluding water that has negligible impact on sensitivity of the sensors). The obtained results demonstrate that the e-nose has a potential to discriminate the patterns of exhaled breath odor from five healthy controls from five HCC patients, as analyzed by the principal component analysis (PCA) with 95% of the confidence level. In the near future, this approach may become very useful in clinical application to serve as a non-invasive device for screening patients with early-stage liver cancer.
机译:目前对电子鼻子和化学传感器的医疗应用有很大的兴趣,特别是在早期诊断和筛查疾病领域。在该研究中,基于八个由聚合物和官能化的单壁碳纳米管(F-SWCNT)制成的八个纳米复合材料气体传感器的口袋电子鼻部能够能够区分肝细胞癌(HCC)患者的两个样品组和健康控制主题。聚合物/ F-SWCNTS传感器集成的电子鼻系统已经设计和制造,适用于呼气呼吸检测。这种化学气体传感器阵列对广泛的挥发性有机化合物(VOC)具有良好的敏感性,足以覆盖人呼出的呼吸中含有的化学物质,例如丙酮,氨,甲基 - 乙基 - 酮和甲苯(不包括水)对传感器的灵敏度的影响可忽略不计)。所获得的结果表明,E-鼻子有可能歧视来自五个HCC患者的五种健康对照的呼出气味的模式,通过主成分分析(PCA)的分析,置位95%的置信水平分析。在不久的将来,这种方法在临床应用中可能变得非常有用,以作为筛选早期肝癌患者的非侵入性设备。

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