Raman spectroscopy and chemical imaging for quantification of filtered waterborne bacteria

被引:52
|
作者
Escoriza, Maria Fernanda [1 ]
VanBriesen, Jeanne M.
Stewart, Shona
Maier, John
Treado, Patrick J.
机构
[1] Carnegie Mellon Univ, Dept Civil & Environm Engn, Pittsburgh, PA 15213 USA
[2] ChemImage Corp, Pittsburgh, PA 15208 USA
基金
美国安德鲁·梅隆基金会;
关键词
bacterial quantification; Chemical Imaging; Raman spectroscopy; waterborne pathogen;
D O I
10.1016/j.mimet.2005.10.013
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Rapid and reliable assessment of pathogenic microbial contamination in water is critically important. fit the present work we evaluated the suitability of Raman Spectroscopy and Chemical Imaging as enumeration techniques for waterborne pathogens. The prominent C-H stretching band observed between 2800-3000 cm(-1) of the spectrum is used for quantification purposes. This band provides the highest intensity of the bacterial-spectrum hands facilitating the detection of low number of microorganisms. The intensity of the Raman response correlates with number of cells present in drops of sample water on aluminum-coated slides. However, concentration of pathogens in drinking and recreational water is low, requiring a concentration step, i.e., filtering. Subsequent evaluation of filtering approaches for water sampling for Raman detection showed significant background signal from alumina and silver membranes that reduces method sensitivity. Samples concentrated by filtration show good correlation between Raman spectroscopy and other quantification methods including turbidity (R-2=0.92), plate counts (R-2=0.87) and dry weight (R-2=0.97). Background interferences did not allow for evaluation of this relationship at low cell concentrations. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:63 / 72
页数:10
相关论文
共 50 条
  • [1] Visualization and Non-Destructive Quantification of Inkjet-Printed Pharmaceuticals on Different Substrates Using Raman Spectroscopy and Raman Chemical Imaging
    Edinger, Magnus
    Bar-Shalom, Daniel
    Rantanen, Jukka
    Genina, Natalja
    PHARMACEUTICAL RESEARCH, 2017, 34 (05) : 1023 - 1036
  • [2] Visualization and Non-Destructive Quantification of Inkjet-Printed Pharmaceuticals on Different Substrates Using Raman Spectroscopy and Raman Chemical Imaging
    Magnus Edinger
    Daniel Bar-Shalom
    Jukka Rantanen
    Natalja Genina
    Pharmaceutical Research, 2017, 34 : 1023 - 1036
  • [3] Raman spectroscopy and Raman chemical imaging of apoptotic cells
    Panza, Janice L.
    Maier, John S.
    IMAGING, MANIPULATION, AND ANALYSIS OF BIOMOLECULES, CELLS, AND TISSUES V, 2007, 6441
  • [4] Characterization of condom lubricant components using Raman spectroscopy and Raman chemical imaging
    Wolfe, J
    Exline, DL
    JOURNAL OF FORENSIC SCIENCES, 2003, 48 (05) : 1065 - 1074
  • [5] Chemical fixation methods for Raman spectroscopy-based analysis of bacteria
    Read, Daniel S.
    Whiteley, Andrew S.
    JOURNAL OF MICROBIOLOGICAL METHODS, 2015, 109 : 79 - 83
  • [6] Raman chemical imaging for spectroscopic screening and direct quantification of falsified drugs
    Rebiere, Herve
    Martin, Maxime
    Ghyselinck, Celine
    Bonnet, Pierre-Antoine
    Brenier, Charlotte
    JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2018, 148 : 316 - 323
  • [7] Combining hyperspectral imaging and Raman spectroscopy for remote chemical sensing
    Ingram, John M.
    Lo, Edsanter
    CHEMICAL, BIOLOGICAL, RADIOLOGICAL, NUCLEAR, AND EXPLOSIVES (CBRNE) SENSING IX, 2008, 6954
  • [8] Detection and quantification of adulterants in milk powder using a high-throughput Raman chemical imaging technique
    Qin, Jianwei
    Kim, Moon S.
    Chao, Kuanglin
    Dhakal, Sagar
    Lee, Hoonsoo
    Cho, Byoung-Kwan
    Mo, Changyeun
    FOOD ADDITIVES AND CONTAMINANTS PART A-CHEMISTRY ANALYSIS CONTROL EXPOSURE & RISK ASSESSMENT, 2017, 34 (02): : 152 - 161
  • [9] Imaging with Raman Spectroscopy
    Zhang, Yin
    Hong, Hao
    Cai, Weibo
    CURRENT PHARMACEUTICAL BIOTECHNOLOGY, 2010, 11 (06) : 654 - 661
  • [10] Raman imaging microscopy: A novel chemical imaging technique
    Kidder, LH
    Goldstein, SR
    Levin, IW
    Lewis, EN
    THREE-DIMENSIONAL MICROSCOPY: IMAGE ACQUISITION AND PROCESSING III, 1996, 2655 : 140 - 147