Agilent MassHunter Profinder: Solving the Challenge of Isotopologue Extraction for Qualitative Flux Analysis
Technical notes | 2016 | Agilent TechnologiesInstrumentation
This overview addresses the critical need to move beyond static metabolite profiling into qualitative metabolic flux analysis. By tracing stable isotopes through pathways, researchers gain insight into dynamic biochemical processes that are not evident from concentration changes alone
The study describes the implementation of a batch isotopologue extraction algorithm within Agilent MassHunter Profinder. The goal is to enable reliable identification and quantitation of 13C 15N and 2H labeled metabolites in complex LC MS datasets acquired on Agilent TOF and Q TOF systems
The workflow employs a multistage ion extraction strategy to isolate isotopologue traces from background ions and matrix interferences
Instrumentation details
Application of the algorithm demonstrated accurate discrimination of true isotopologues from spurious background peaks across multiple sample groups and time points. Visualization options include raw corrected normalized and averaged isotopologue abundances as chromatograms spectra or summary tables. An example with fumaric acid shows removal of a false M 2 peak through mass spectral filtering steps. Batch results can be viewed in compound group tables and exported for further analysis
The Profinder batch extraction provides an intuitive wizard guided setup and high throughput automated processing. Users benefit from reduced false positives improved quantitation accuracy and seamless data export for pathway mapping facilitating metabolic flux studies in academic and industrial laboratories
Advances may include integration with cloud based analytics expansion to multi isotope labeling strategies improved machine learning based peak detection and tighter coupling with metabolic network modeling and multi omics platforms to deepen flux insights
The Agilent MassHunter Profinder batch isotopologue extraction algorithm delivers robust automated targeted data mining of stable isotope labeled metabolites on LC MS systems. It achieves reliable extraction visualization and export of qualitative flux data supporting high throughput metabolic pathway analysis
Software
IndustriesManufacturerAgilent Technologies
Summary
Significance of the Topic
This overview addresses the critical need to move beyond static metabolite profiling into qualitative metabolic flux analysis. By tracing stable isotopes through pathways, researchers gain insight into dynamic biochemical processes that are not evident from concentration changes alone
Objectives and Study Overview
The study describes the implementation of a batch isotopologue extraction algorithm within Agilent MassHunter Profinder. The goal is to enable reliable identification and quantitation of 13C 15N and 2H labeled metabolites in complex LC MS datasets acquired on Agilent TOF and Q TOF systems
Methodology and Instrumentation
The workflow employs a multistage ion extraction strategy to isolate isotopologue traces from background ions and matrix interferences
- Extraction of individual extracted ion chromatograms EICs for each theoretical isotopologue with wide m/z tolerance
- Integration to define refined retention time windows
- Mass spectral filtering with stringent m/z criteria and elution profile matching
- Reconstruction of combined EIC from qualified ions and peak scoring based on ion count abundance and retention time alignment
- Correction for natural isotope abundance and tracer purity
Instrumentation details
- Agilent LC/TOF and LC/Q TOF systems including 6230 TOF in negative ion mode
- MassHunter Profinder B08 00 software with VistaFlux module
- Omix Premium for pathway visualization
Main Results and Discussion
Application of the algorithm demonstrated accurate discrimination of true isotopologues from spurious background peaks across multiple sample groups and time points. Visualization options include raw corrected normalized and averaged isotopologue abundances as chromatograms spectra or summary tables. An example with fumaric acid shows removal of a false M 2 peak through mass spectral filtering steps. Batch results can be viewed in compound group tables and exported for further analysis
Benefits and Practical Applications
The Profinder batch extraction provides an intuitive wizard guided setup and high throughput automated processing. Users benefit from reduced false positives improved quantitation accuracy and seamless data export for pathway mapping facilitating metabolic flux studies in academic and industrial laboratories
Future Trends and Opportunities
Advances may include integration with cloud based analytics expansion to multi isotope labeling strategies improved machine learning based peak detection and tighter coupling with metabolic network modeling and multi omics platforms to deepen flux insights
Conclusion
The Agilent MassHunter Profinder batch isotopologue extraction algorithm delivers robust automated targeted data mining of stable isotope labeled metabolites on LC MS systems. It achieves reliable extraction visualization and export of qualitative flux data supporting high throughput metabolic pathway analysis
References
- MassHunter Profinder Batch Processing Software for High Quality Feature Extraction of Mass Spectrometry Data Agilent Technologies Technical Overview publication number 5991 3947EN 2014
- MassHunter VistaFlux for Qualitative Flux Analysis Agilent Technologies Technical Overview publication number 5991 6756EN 2016
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