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Experimental use of a new surface acoustic wave sensor for the rapid identification of bacteria and yeasts.

机译:新型表面声波传感器的实验用途,用于快速识别细菌和酵母菌。

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摘要

AIMS:Use of an electronic nose (zNose(TM)) to discriminate between volatile organic molecules delivered during bacterial/fungal growth on agar and in broth media. METHODS AND RESULTS: Cultures of bacteria (Klebsiella pneumoniae, Pseudomonas aeruginosa, Escherichia coli) and yeasts (two Candida albicans strains) were grown on agar and in broth media and incubated for 24 h at 37 degrees C. Headspace samples from microbial cultures were analysed by the zNose(TM), a fast gas chromatography-surface acoustic wave detector. Olfactory images of volatile production patterns were observed to be different for the various species tested after 24 h. Moreover, some strains (two K. pneumoniae, two C. albicans) did not show changes in volatile production patterns within our species.\udCONCLUSIONS: Our experiments demonstrate that the electronic nose system can recognize volatile production patterns of pathogens at species level. SIGNIFICANCE AND IMPACT OF THE STUDY: Our results, although preliminary, promise exciting challenges for microbial diagnostics.
机译:目的:使用电子鼻(zNose™)来区分在琼脂和肉汤培养基中细菌/真菌生长过程中释放的挥发性有机分子。方法和结果:将细菌(肺炎克雷伯菌,铜绿假单胞菌,大肠埃希氏菌)和酵母菌(两种白色念珠菌)的培养物在琼脂和肉汤培养基中培养,并在37°C下孵育24小时。分析了微生物培养物的顶空样品由zNose™(一种快速气相色谱表面声波检测器)提供。观察到24小时后测试的各种物种的挥发性生产模式的嗅觉图像是不同的。此外,某些菌株(两个肺炎克雷伯氏菌,两个白色念珠菌)没有显示出我们物种内挥发性生产模式的变化。研究的意义和影响:我们的结果尽管是初步的,但对微生物诊断提出了令人兴奋的挑战。

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