MassHunter Forensic Toxicology Triggered MRM Database and Library - Quick Start Guide
Manuals | 2016 | Agilent TechnologiesInstrumentation
Triggered MRM workflows play a critical role in forensic toxicology by enabling highly sensitive and selective detection of target compounds in complex biological and environmental samples. The availability of a comprehensive MRM database simplifies method development, reduces analysis time, and improves data reliability in forensic casework.
This guide introduces the MassHunter Forensic Toxicology Triggered MRM Database and Library, which contains over 2 800 analytes with up to ten optimized transitions each. It aims to facilitate rapid screening and quantitation via MRM, dynamic MRM (dMRM), and triggered MRM (tMRM) approaches and to outline a streamlined workflow from initial method setup to advanced data-dependent acquisition.
The methodology builds on sequential method development:
The database provides optimized fragmentor voltages and collision energies for each analyte, enabling immediate import into MassHunter Data Acquisition. Workflow examples demonstrate method expansion from single-standard MRM to multi-component tMRM analyses, highlighting efficient RT determination, overlap resolution, and dwell time optimization. The tMRM approach significantly enhances detection of low-abundance or co-eluting compounds.
The combined MRM/dMRM/tMRM strategy offers:
Future developments may include:
The MassHunter Forensic Toxicology Triggered MRM Database and Library provides a robust, ready-to-use framework for developing sensitive and specific forensic toxicology assays. By following the recommended workflow, laboratories can achieve rapid, reproducible screening and quantitation across a broad analyte panel.
No external references cited.
Software, LC/MS, LC/MS/MS, LC/QQQ
IndustriesForensics
ManufacturerAgilent Technologies
Summary
Význam tématu
Triggered MRM workflows play a critical role in forensic toxicology by enabling highly sensitive and selective detection of target compounds in complex biological and environmental samples. The availability of a comprehensive MRM database simplifies method development, reduces analysis time, and improves data reliability in forensic casework.
Cíle a přehled studie / článku
This guide introduces the MassHunter Forensic Toxicology Triggered MRM Database and Library, which contains over 2 800 analytes with up to ten optimized transitions each. It aims to facilitate rapid screening and quantitation via MRM, dynamic MRM (dMRM), and triggered MRM (tMRM) approaches and to outline a streamlined workflow from initial method setup to advanced data-dependent acquisition.
Použitá metodika a instrumentace
The methodology builds on sequential method development:
- Standard MRM methods for initial screening without retention time knowledge.
- Dynamic MRM (dMRM) methods with scheduled retention time windows to enhance dwell time and sensitivity.
- Triggered MRM (tMRM) methods that use primary transition thresholds to initiate acquisition of up to ten secondary transitions, improving specificity for isobaric and matrix-affected compounds.
- Agilent 6400 Series Triple Quadrupole LC/MS system.
- MassHunter Data Acquisition B.08.00 or higher.
- MassHunter Quantitative Analysis B.07.01 or higher.
- MassHunter Qualitative Analysis B.07.01 or higher.
Hlavní výsledky a diskuse
The database provides optimized fragmentor voltages and collision energies for each analyte, enabling immediate import into MassHunter Data Acquisition. Workflow examples demonstrate method expansion from single-standard MRM to multi-component tMRM analyses, highlighting efficient RT determination, overlap resolution, and dwell time optimization. The tMRM approach significantly enhances detection of low-abundance or co-eluting compounds.
Přínosy a praktické využití metody
The combined MRM/dMRM/tMRM strategy offers:
- Faster method development by leveraging pre-optimized transitions.
- High-throughput screening of hundreds of toxicologically relevant compounds in a single run.
- Improved specificity for challenging analytes affected by matrix interferences.
- Scalability to multi-sample and multi-mix analyses.
Budoucí trendy a možnosti využití
Future developments may include:
- Integration of high-resolution MS libraries for hybrid workflows.
- Machine learning algorithms for automated transition selection and retention time prediction.
- Expanded compound coverage to emerging drugs and metabolites.
- Cloud-based database updates and collaborative method sharing.
Závěr
The MassHunter Forensic Toxicology Triggered MRM Database and Library provides a robust, ready-to-use framework for developing sensitive and specific forensic toxicology assays. By following the recommended workflow, laboratories can achieve rapid, reproducible screening and quantitation across a broad analyte panel.
Reference
No external references cited.
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