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首页> 外文期刊>Analytical chemistry >Laser Desorption Postionization Mass Spectrometry of Antibiotic-Treated Bacterial Biofilms Using Tunable Vacuum Ultraviolet Radiation
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Laser Desorption Postionization Mass Spectrometry of Antibiotic-Treated Bacterial Biofilms Using Tunable Vacuum Ultraviolet Radiation

机译:可调真空紫外辐射对抗生素处理的细菌生物膜的激光解吸后电离质谱分析

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Laser desorption postionization mass spectrometry (LDPI-MS) with 8.0-12.5 eV vacuum ultraviolet synchrotron radiation is used to single photon ionize antibiotics and extracellular neutrals that are laser desorbed both from neat and intact bacterial biofilms. Neat antibiotics are optimally detected using 10.5 eV LDPI-MS but can be ionized using 8.0 eV radiation, in agreement with prior work using 7.87 eV LDPI-MS. Tunable vacuum ultraviolet radiation also postionizes laser desorbed neutrals of antibiotics and extracellular material from within intact bacterial biofilms. Different extracellular material is observed by LDPI-MS in response to rifampicin or trime-thoprim antibiotic treatment. Once again, 10.5 eV LDPI-MS displays the optimum trade-off between improved sensitivity and minimum fragmentation. Higher energy photons at 12.5 eV produce significant parent ion signal, but fragment intensity and other low mass ions are also enhanced. No matrix is added to enhance desorption, which is performed at peak power densities insufficient to directly produce ions, thus allowing observation of true VUV postionization mass spectra of antibiotic treated biofilms.
机译:具有8.0-12.5 eV真空紫外同步辐射的激光解吸后电离质谱(LDPI-MS)用于单光子电离从纯净和完整的细菌生物膜上解吸的抗生素和细胞外中性离子。使用10.5 eV LDPI-MS可以最佳地检测出纯净的抗生素,但可以使用8.0 eV辐射将其离子化,这与使用7.87 eV LDPI-MS的先前工作相一致。可调节的真空紫外线辐射还可以使完整的细菌生物膜内部的激光解吸的抗生素和细胞外物质的中性离子离子化。通过LDPI-MS观察到对利福平或曲美索普灵抗生素治疗有反应的不同细胞外物质。 10.5 eV LDPI-MS再次显示出在灵敏度提高和最小碎片化之间的最佳折衷。 12.5 eV的高能光子会产生明显的母离子信号,但碎片强度和其他低质量离子也会增强。没有添加任何基质来增强解吸,解吸是在峰值功率密度不足以直接产生离子的情况下进行的,因此可以观察到抗生素处理过的生物膜的真实VUV后电离质谱。

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