Thermo Scientific TSQ Altis triple-stage quadrupole mass spectrometer
Brochures and specifications | 2019 | Thermo Fisher ScientificInstrumentation
The ability to achieve confident, ultra-trace quantitation using triple-stage quadrupole mass spectrometry is vital across pharmaceutical, clinical, forensic, food and environmental laboratories. High sensitivity, robust performance, and streamlined workflows enable analysts to detect compounds at attogram to femtogram levels in complex matrices, supporting regulatory compliance, research innovation, and quality control.
This application note introduces the Thermo Scientific TSQ Altis triple-stage quadrupole mass spectrometer featuring Active Ion Management Plus (AIM+) technology. It aims to demonstrate how optimized ion optics, enhanced collision cell design, and advanced electronics deliver robust, sensitive, and reproducible selected reaction monitoring (SRM) for diverse targeted quantitation workflows.
Key design elements include:
Pharmaceutical assays achieved remarkable sensitivity: 25 fg on column of fluticasone propionate yielded 4.2% CV using 0.7 Da SRM, while high-resolution SRM (0.2 Da FWHM) detected 0.5 fmol of a peptide in plasma digest. In clinical and forensic workflows, immunosuppressant quantitation in whole blood showed stable ion ratios over hundreds of injections, and steroid assays returned linear calibration (R² > 0.999) at femtogram levels.
Environmental testing of glyphosate by IC-MS/MS at 5 ng/L displayed 3% RSD for replicate injections. Pesticide analysis in leek achieved detection 10× below regulatory MRL, illustrating robust quantitation in challenging matrices.
Emerging applications include personalized medicine assays, multi-omics integration, high-resolution SRM for greater selectivity, and expanded environmental and food safety screening for novel contaminants. Integration with web-based monitoring and AI-driven data analytics will further enhance lab productivity and decision-making.
The TSQ Altis MS with AIM+ technology transforms targeted quantitation, offering ultra-sensitive, high-speed SRM in a robust and user-friendly platform. Its versatile workflows and comprehensive software ecosystem enable laboratories to meet evolving analytical demands with confidence.
Not applicable
LC/MS, LC/MS/MS, LC/QQQ
IndustriesManufacturerThermo Fisher Scientific
Summary
Importance of the Topic
The ability to achieve confident, ultra-trace quantitation using triple-stage quadrupole mass spectrometry is vital across pharmaceutical, clinical, forensic, food and environmental laboratories. High sensitivity, robust performance, and streamlined workflows enable analysts to detect compounds at attogram to femtogram levels in complex matrices, supporting regulatory compliance, research innovation, and quality control.
Objectives and Overview
This application note introduces the Thermo Scientific TSQ Altis triple-stage quadrupole mass spectrometer featuring Active Ion Management Plus (AIM+) technology. It aims to demonstrate how optimized ion optics, enhanced collision cell design, and advanced electronics deliver robust, sensitive, and reproducible selected reaction monitoring (SRM) for diverse targeted quantitation workflows.
Methodology and Instrumentation
Key design elements include:
- Active collision cell with axial DC field for ultra-fast SRM transitions
- High-capacity transfer tube (HCTT) maximizing ion introduction and robustness
- Electrodynamic Ion Funnel (EDIF) for efficient capture and transmission of ions
- QR5 segmented quadrupole mass filters for consistent ion transmission and selectivity
- AIM+ system integrating OptaMax NG ion source housing, segmented quadrupoles, and enhanced RF electronics
- OptaMax NG source with automated gas and voltage connections supporting HESI and APCI modes
Main Results and Discussion
Pharmaceutical assays achieved remarkable sensitivity: 25 fg on column of fluticasone propionate yielded 4.2% CV using 0.7 Da SRM, while high-resolution SRM (0.2 Da FWHM) detected 0.5 fmol of a peptide in plasma digest. In clinical and forensic workflows, immunosuppressant quantitation in whole blood showed stable ion ratios over hundreds of injections, and steroid assays returned linear calibration (R² > 0.999) at femtogram levels.
Environmental testing of glyphosate by IC-MS/MS at 5 ng/L displayed 3% RSD for replicate injections. Pesticide analysis in leek achieved detection 10× below regulatory MRL, illustrating robust quantitation in challenging matrices.
Benefits and Practical Applications
- Supreme sensitivity for trace analytes in pharma R&D, biomarker discovery, therapeutic drug monitoring, and toxicology
- Robust, reproducible performance for high-throughput QA/QC and routine screening
- Flexible workflows from nano- to high-flow LC and IC applications
- Streamlined software solutions (TraceFinder, Chromeleon, AppsLab) for method development, SRM optimization, data review, and reporting
Future Trends and Opportunities
Emerging applications include personalized medicine assays, multi-omics integration, high-resolution SRM for greater selectivity, and expanded environmental and food safety screening for novel contaminants. Integration with web-based monitoring and AI-driven data analytics will further enhance lab productivity and decision-making.
Conclusion
The TSQ Altis MS with AIM+ technology transforms targeted quantitation, offering ultra-sensitive, high-speed SRM in a robust and user-friendly platform. Its versatile workflows and comprehensive software ecosystem enable laboratories to meet evolving analytical demands with confidence.
Reference
Not applicable
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