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Identification Grading System™ (IGS™)

Technical notes | 2020 | LECOInstrumentation
GCxGC, GC/MSD, GC/HRMS, GC/TOF, Software
Industries
Manufacturer
LECO

Summary

Importance of the Topic


Non-targeted screening of complex mixtures demands reliable and efficient compound identification. The Identification Grading System (IGS) enhances confidence in unknown analyses by integrating multiple chemical criteria into a single grade, facilitating rapid decision-making and reducing manual review effort.

Objectives and Study Overview


This work introduces LECO’s IGS module within ChromaTOF software, developed during the EPA’s ENTACT collaborative trial. Key objectives include:
  • Defining a four-criterion grading scheme for compound identification
  • Applying the IGS filter to GCxGC-TOFMS datasets
  • Simplifying data review to prioritize the most confident hits


Methodology and Instrumentation


The workflow couples comprehensive two-dimensional gas chromatography (GCxGC) with high-resolution time-of-flight mass spectrometry (TOF-MS) on the Pegasus GC-HRT 4D platform. IGS evaluates each deconvolution result using:
  1. Accurate mass detection of molecular ions
  2. Library-based spectral similarity scoring
  3. Accurate mass matching of fragment ions
  4. Retention index agreement with reference data

Instrumental setup:
  • Pegasus GC-HRT 4D GCxGC-TOFMS system
  • ChromaTOF software with integrated IGS module
  • Curated and user-generated spectral libraries


Main Results and Discussion


In an EPA ENTACT blind sample, initial deconvolution yielded approximately 4,800 features. Applying an IGS score threshold >2 reduced this to ~245 high-confidence identifications. The system correctly identified around 80 % of known spiked compounds, demonstrating:
  • Enhanced separation of coeluting species via GCxGC
  • Unskewed, high-quality spectra across narrow chromatographic peaks using high-resolution TOF-MS
  • Efficient prioritization of true positives for follow-up


Benefits and Practical Applications


IGS streamlines non-targeted analysis by providing automated confidence grading, which is valuable for:
  • Environmental monitoring and pollutant screening
  • Quality assurance in pharmaceuticals and food safety
  • Forensic chemistry and metabolic profiling


Future Trends and Potential Applications


Emerging developments may include:
  • Machine learning integration for enhanced spectral matching
  • Extension to additional chromatographic and mass spectrometric techniques
  • Real-time IGS scoring in online analytical workflows
  • Expanded, annotated libraries covering broader chemical spaces


Conclusion


The Identification Grading System offers a unified, multi-metric approach to boost confidence and efficiency in non-targeted GCxGC-TOFMS analyses, significantly reducing review time and improving reliability of compound identification.

References


  • DOI: 10.1007/s00216-018-1435-6
  • DOI: 10.1021/es5002105

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