MALDI imaging of animal tissues and fingermarks using the MALDI-8020 benchtop linear MALDI-TOF mass spectrometer
Applications | 2023 | ShimadzuInstrumentation
A benchtop MALDI-TOF mass spectrometer capable of imaging at cellular resolutions expands the accessibility of spatial molecular analysis in both research and applied environments.
High ease of use and rapid workflow facilitate adoption in laboratories without dedicated high-end MSI expertise.
This study evaluates the performance of the MALDI-8020 linear MALDI-TOF MS combined with the iMLayer automated matrix deposition system and IonView imaging software.
Applications include mapping lipid distributions in rat brain tissue and detecting molecular features in latent fingermarks at 30 µm spatial resolution.
• Instrumentation: MALDI-8020 benchtop linear MALDI-TOF mass spectrometer.
• Sample preparation: DHB matrix sublimated in 7 min by the iMLayer device onto ITO-coated slides for tissue and stainless steel for fingermarks.
• Acquisition parameters: positive ion mode, 200 Hz laser repetition rate, 30 µm step size; ~84 000 pixels for rat brain, ~23 000 pixels for fingermark.
• Data processing: IonView software for MS image visualization and analysis.
• Rat brain MSI revealed distinct phosphatidylcholine distributions, clearly delineating white and grey matter regions in the cerebellum.
• Fingermark imaging detected lipid signals in ridge interspaces (m/z 549), ridge features (m/z 829), and sweat gland areas (m/z 375, 567) invisible in optical images.
• The iMLayer system ensured reproducible matrix coverage and consistent data quality across experiments.
The compact MALDI-8020 platform offers rapid setup, straightforward operation, and high reproducibility, making it suitable for:
• Further miniaturization and integration with multimodal imaging techniques may enhance molecular insights.
• Automated sample preparation and AI-driven data analysis will lower the barrier to entry for non-specialists.
• Standardization of benchtop MSI workflows could promote broader use in industrial and regulatory settings.
The MALDI-8020, coupled with the iMLayer and IonView tools, delivers accessible, high-resolution MSI at 30 µm, enabling clear visualization of biomolecular distributions in tissues and fingermarks.
This workflow offers a practical solution for expanding MSI applications beyond specialized facilities.
MALDI, MS Imaging, LC/TOF, LC/MS
IndustriesClinical Research
ManufacturerShimadzu
Summary
Importance of the topic
A benchtop MALDI-TOF mass spectrometer capable of imaging at cellular resolutions expands the accessibility of spatial molecular analysis in both research and applied environments.
High ease of use and rapid workflow facilitate adoption in laboratories without dedicated high-end MSI expertise.
Objectives and overview of the study
This study evaluates the performance of the MALDI-8020 linear MALDI-TOF MS combined with the iMLayer automated matrix deposition system and IonView imaging software.
Applications include mapping lipid distributions in rat brain tissue and detecting molecular features in latent fingermarks at 30 µm spatial resolution.
Methodology and instrumentation
• Instrumentation: MALDI-8020 benchtop linear MALDI-TOF mass spectrometer.
• Sample preparation: DHB matrix sublimated in 7 min by the iMLayer device onto ITO-coated slides for tissue and stainless steel for fingermarks.
• Acquisition parameters: positive ion mode, 200 Hz laser repetition rate, 30 µm step size; ~84 000 pixels for rat brain, ~23 000 pixels for fingermark.
• Data processing: IonView software for MS image visualization and analysis.
Main results and discussion
• Rat brain MSI revealed distinct phosphatidylcholine distributions, clearly delineating white and grey matter regions in the cerebellum.
• Fingermark imaging detected lipid signals in ridge interspaces (m/z 549), ridge features (m/z 829), and sweat gland areas (m/z 375, 567) invisible in optical images.
• The iMLayer system ensured reproducible matrix coverage and consistent data quality across experiments.
Benefits and practical applications
The compact MALDI-8020 platform offers rapid setup, straightforward operation, and high reproducibility, making it suitable for:
- Neuroscience and histology studies
- Forensic fingerprint analysis
- Quality control in pharmaceutical and clinical laboratories
Future trends and potential applications
• Further miniaturization and integration with multimodal imaging techniques may enhance molecular insights.
• Automated sample preparation and AI-driven data analysis will lower the barrier to entry for non-specialists.
• Standardization of benchtop MSI workflows could promote broader use in industrial and regulatory settings.
Conclusion
The MALDI-8020, coupled with the iMLayer and IonView tools, delivers accessible, high-resolution MSI at 30 µm, enabling clear visualization of biomolecular distributions in tissues and fingermarks.
This workflow offers a practical solution for expanding MSI applications beyond specialized facilities.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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