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Headspace volatile organic compounds from bacteria implicated in ventilator-associated pneumonia analysed by TD-GC/MS

机译:来自细菌的顶部空间挥发性有机化合物涉及通过TD-GC / MS分析的呼吸机相关的肺炎

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摘要

Ventilator-associated pneumonia ( VAP ) is a healthcare-acquired infection arising from the invasion of the lower respiratory tract by opportunistic pathogens in ventilated patients. The current method of diagnosis requires the culture of an airway sample such as bronchoalveolar lavage, which is invasive to obtain and may take up to seven days to identify a causal pathogen, or indeed rule out infection. While awaiting results, patients are administered empirical antibiotics; risks of this approach include lack of effect on the causal pathogen, contribution to the development of antibiotic resistance and downstream effects such as increased length of intensive care stay, cost, morbidity and mortality. Specific biomarkers which could identify causal pathogens in a timely manner are needed as they would allow judicious use of the most appropriate antimicrobial therapy. Volatile organic compound ( VOC ) analysis in exhaled breath is proposed as an alternative due to its non-invasive nature and its potential to provide rapid diagnosis at the patient ' s bedside. VOCs in exhaled breath originate from exogenous, endogenous, as well as microbial sources. To identify potential markers, VAP-associated pathogens Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, and Staphylococcus aureus were cultured in both artificial sputum medium and nutrient broth, and their headspaces were sampled and analysed for VOCs. Previously reported volatile markers were identified in this study, including indole and 1-undecene, alongside compounds that are novel to this investigation, cyclopentanone and 1-hexanol. We further investigated media components ( substrates ) to identify those that are essential for indole and cyclopentanone production, with potential implications for understanding microbial metabolism in the lung.
机译:呼吸机相关的肺炎(VAP)是通过通风患者的机会主义病原体侵袭下呼吸道引起的医疗获得的感染。目前的诊断方法需要诸如支气管肺泡灌洗之类的气道样品的培养,这是侵入性的,可能需要长达七天以鉴定因果病原体,或确实排除感染。在等待结果的同时,患者经验抗生素施用;这种方法的风险包括缺乏对因果病原体的影响,对抗生素抗性和下游效应的贡献,如增加的重症监护者住宿时间,成本,发病率和死亡率。可以及时识别因果病原体的特异性生物标志物,因为它们允许明智地使用最适当的抗微生物治疗。由于其非侵入性性质及其在患者床边提供了快速诊断,提出了呼出气息的挥发性有机化合物(VOC)分析作为替代方案。呼出呼吸的VOC来自外源性,内源性,以及微生物来源。为了鉴定潜在的标志物,VAP相关病原体大肠杆菌,Klebsiella肺炎,假单胞菌和金黄色葡萄球菌在人造痰培养基和营养肉汤中培养,并且它们的顶部空间被取样并分析VOCs。在本研究中确定了先前报道的挥发性标记,包括吲哚和1-赤索,以及本研究的化合物,该研究是本研究,环戊酮和1-己醇的新颖。我们进一步研究了介质组分(基质)以鉴定那些对吲哚和环戊酮产生至关重要的那些,具有对理解肺中微生物代谢的潜在影响。

著录项

  • 来源
    《Journal of breath research》 |2018年第2期|共11页
  • 作者单位

    Division of Infection Immunity and Respiratory Medicine School of Biological Sciences Faculty of Biology Medicine and Health The University of Manchester Manchester United Kingdom;

    School of Chemistry Manchester Institute of Biotechnology The University of Manchester Manchester United Kingdom;

    Division of Infection Immunity and Respiratory Medicine School of Biological Sciences Faculty of Biology Medicine and Health The University of Manchester Manchester United Kingdom;

    School of Chemistry Manchester Institute of Biotechnology The University of Manchester Manchester United Kingdom;

    Philips Research Royal Philips B.V. Eindhoven The Netherlands;

    School of Chemistry Manchester Institute of Biotechnology The University of Manchester Manchester United Kingdom;

    Division of Infection Immunity and Respiratory Medicine School of Biological Sciences Faculty of Biology Medicine and Health The University of Manchester Manchester United Kingdom;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 内科学;
  • 关键词

    bacteria; exhaled breath; infection; ventilator-associated pneumonia; volatile organic compounds;

    机译:细菌;呼气呼吸;感染;呼吸机相关的肺炎;挥发性有机化合物;
  • 入库时间 2022-08-20 08:51:09

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