Laser desorption VUV postionization MS imaging of a cocultured biofilm

被引:16
作者
Bhardwaj, Chhavi [1 ]
Moore, Jerry F. [2 ]
Cui, Yang [1 ]
Gasper, Gerald L. [1 ]
Bernstein, Hans C. [3 ]
Carlson, Ross P. [3 ]
Hanley, Luke [1 ]
机构
[1] Univ Illinois, Dept Chem, Chicago, IL 60607 USA
[2] MassThink LLC, Naperville, IL 60563 USA
[3] Montana State Univ, Ctr Biofilm Engn, Bozeman, MT 59717 USA
关键词
Laser ablation; Mass spectrometry; Biological samples; Bioanalytical methods; Interface/surface analysis; IONIZATION MASS-SPECTROMETRY; ATMOSPHERIC-PRESSURE PHOTOIONIZATION; VACUUM-ULTRAVIOLET PHOTOIONIZATION; SINGLE-PHOTON IONIZATION; ELECTROSPRAY-IONIZATION; BACTERIAL BIOFILMS; BIOLOGICAL-MATERIAL; ORGANIC-MOLECULES; SURFACE-ANALYSIS; IDENTIFICATION;
D O I
10.1007/s00216-012-6454-0
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Laser desorption postionization mass spectrometry (LDPI-MS) imaging is demonstrated with a 10.5 eV photon energy source for analysis and imaging of small endogenous molecules within intact biofilms. Biofilm consortia comprised of a synthetic Escherichia coli K12 coculture engineered for syntrophic metabolite exchange are grown on membranes and then used to test LDPI-MS analysis and imaging. Both E. coli strains displayed many similar peaks in LDPI-MS up to m/z 650, although some observed differences in peak intensities were consistent with the appearance of byproducts preferentially expressed by one strain. The relatively low mass resolution and accuracy of this specific LDPI-MS instrument prevented definitive assignment of species to peaks, but strategies are discussed to overcome this shortcoming. The results are also discussed in terms of desorption and ionization issues related to the use of 10.5 eV single-photon ionization, with control experiments providing additional mechanistic information. Finally, 10.5 eV LDPI-MS was able to collect ion images from intact, electrically insulating biofilms at 100 mu m spatial resolution. Spatial resolution of 20 mu m was possible, although a relatively long acquisition time resulted from the 10 Hz repetition rate of the single-photon ionization source.
引用
收藏
页码:6969 / 6977
页数:9
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