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Vrioni, G. et al. MALDI-TOF mass spectrometry technology for detecting biomarkers of antimicrobial resistance: current achievements and future perspectives.
The recently developed stable isotope labeling with amino acids in cell culture (SILAC -based quantitative maSILAC -basedtry technology has clarified the dynamics of histone PTMs.
New mass spectrometry technology fulfils these criteria, and may well lead to a revolution in the design of new vaccines.
Our lab has developed methods for measuring a wide range of cellular metabolites using state-of-the-art mass spectrometry technology.
Taken together, these results indicate that multiple ligands binding to membrane proteins-embedded liposomes can be identified as long as the molecular weights of the ligands and receptors allow separation by current mass spectrometry technology.
PCR coupled to electrospray ionization mass spectrometry technology (PCR/ESI-TOF-MS) (PLEX-ID system, Abbott Ibis Biosciences) was developed to characterize microbial pathogens.
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Currently, the standard means of measuring strontium isotopic ratios is by mass spectrometry technologies that involve time-consuming, labor-intensive laboratory sample dissolution work with an extensive array of instrumentation.
The Mass Spectrometry technologies used in VOCs detection mainly include selected ion flow tube mass spectrometer (SIFTMS) [6], proton-transfer reaction-linear ion trap mass spectrometer (PTRMS) [7, 8] and time of flight mass spectrometer (TOFMS) [9] which show a detection level of ppb and separation time with the range from seconds to several minutes.
Additionally, proteomics-based approaches are advancing at a rapid pace as mass spectrometry technologies continue to evolve.
With the recent advances in mass spectrometry technologies especially, proteomes can now be analyzed with impressive coverage.
The development of proteomics and mass spectrometry technologies during the previous decade has enabled rapid and specific protein analyses.
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