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A Highly Flexible Research Grade Mass Spectrometer AXIMA Performance

Brochures and specifications | 2025 | ShimadzuInstrumentation
LC/MS, LC/TOF, MALDI
Industries
Manufacturer
Shimadzu

Summary

Significance of the topic


Matrix assisted laser desorption ionization tandem time of flight mass spectrometry provides a versatile platform for high resolution analysis of biomolecules and small molecules in research and quality control environments. The ability to perform high energy collision induced dissociation yields rich fragmentation data essential for confident compound identification. The next generation design addresses the demand for greater flexibility, sensitivity, and ease of use in complex analytical workflows.

Goals and overview of the study


This work presents the design and performance characteristics of the AXIMA Performance research grade MALDI-TOF-TOF mass spectrometer. The system aims to deliver high resolution MS and MS/MS data using advanced reflectron technology and a novel ion selection gate, while maintaining robustness and automation for routine and specialized applications.

Methodology


Samples are introduced via MALDI targets and ionized using a near axis laser source. The TOF analyzer operates in reflectron mode to achieve high mass accuracy. A high energy collision cell enables true laboratory frame CID at 20 keV, and the monoPULSE ion gate provides narrow precursor selection. Fragment ions pass through a curved field reflectron and are detected by an ultrafast microchannel plate detector. A low mass zoom scan enriches low m/z regions for targeted studies.

Instrumentation


  • AXIMA Performance MALDI-TOF-TOF mass spectrometer
  • monoPULSE high resolution ion gate
  • Curved field reflectron analyzer
  • High energy collision induced dissociation cell
  • Ultrafast microchannel plate detector
  • Software suites including Intellimarque, LC-MALDI workflows, Launchpad modules for oligo and polymer analysis

Main results and discussion


High resolution linear mode spectra demonstrated mass resolution exceeding 20000 full width half maximum for proteins such as immunoglobulin G across a mass range up to 200 kDa. MS/MS experiments achieved precise precursor isolation with gate resolution above 400, leading to clear fragmentation patterns for peptides with overlapping isotopic envelopes. Sensitivity experiments showed attomole level detection in peptide analyses. The low sample consumption capability supported multiple MS/MS acquisitions from single spots.

Benefits and practical applications


  • High confidence identification of proteins, metabolites, and small molecules
  • Automated peptide mass fingerprinting and database searching with integrated Mascot support
  • Flexible LC-MALDI workflows for complex mixture analysis
  • Quality control modules for oligonucleotides, polymers, and small molecules
  • Minimal sample usage extends experimental throughput

Future trends and applications


Integration with high resolution liquid chromatography and improvements in software driven data dependent acquisition will drive deeper proteomic and metabolomic insights. Advances in real time remote diagnostics and artificial intelligence based spectral interpretation promise to streamline routine analysis and accelerate discovery in biomarker research, pharmaceutical development, and industrial quality assurance.

Conclusion


The AXIMA Performance system combines high energy MS/MS, robust hardware, and intuitive software to deliver a versatile research grade platform. Its high resolution, sensitivity, and automation capabilities make it suitable for a broad range of analytical problems, from fundamental research to high throughput screening.

References


  • No references provided in the original document

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