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首页> 外文期刊>Food and bioprocess technology >Application of mid-infrared and Raman spectroscopy to the study of bacteria. (Special Issue: Innovations in food technology.)
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Application of mid-infrared and Raman spectroscopy to the study of bacteria. (Special Issue: Innovations in food technology.)

机译:中红外和拉曼光谱在细菌研究中的应用。 (特刊:食品技术创新。)

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摘要

Infrared spectroscopy and Raman spectroscopy provide complementary technologies for rapid and precise detection of microorganisms and are emerging methods in food analysis. It is possible to use either of these techniques to differentiate and quantify microorganisms in relatively simple matrices such as liquid media and simple solutions with determinations taking less than an hour. Vibrational spectroscopy, unlike other techniques used in microbiology, is a relatively simple method for studying structural changes occurring within a microbial cell following environmental stress and applications of food processing treatments. Vibrational spectroscopy provides a wide range of biochemical properties about bacteria in a single spectrum, most importantly characteristics of the cell membrane. These techniques are especially useful for studying properties of bacterial biofilms on contact surfaces, the presence and viability of bacterial vegetative cells and spores, the type and degree of bacterial injury, and assessment of antibiotic susceptibility. Future trends in food analysis will involve combining vibrational spectroscopy with microscopy, mass spectroscopy, or DNA-based methods to comprehensively study bacterial stress. Further advances in selectivity, sensitivity, and improved chemometric methods, along with reduction in the cost of instrumentation, may lead to the development of field-ready and real-time analytical systems.
机译:红外光谱和拉曼光谱为快速,精确地检测微生物提供了补充技术,是食品分析中新兴的方法。可以使用这些技术中的任何一种在相对简单的基质(例如液体培养基和简单的溶液)中对微生物进行区分和定量,而测定所需的时间少于一个小时。与微生物学中使用的其他技术不同,振动光谱法是一种相对简单的方法,用于研究环境应力和食品加工处理应用后微生物细胞内部发生的结构变化。振动光谱法在单个光谱中为细菌提供了广泛的生化特性,最重要的是细胞膜的特性。这些技术对于研究接触表面细菌生物膜的特性,细菌营养细胞和孢子的存在和生存力,细菌损伤的类型和程度以及评估抗生素的敏感性特别有用。食品分析的未来趋势将涉及将振动光谱与显微镜,质谱或基于DNA的方法相结合,以全面研究细菌的压力。选择性,灵敏度和化学计量方法的进一步发展,以及仪器成本的降低,可能会导致开发现成的实时分析系统。

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