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Agilent Extractables and Leachables LC/MS PCDL

Others | 2016 | Agilent TechnologiesInstrumentation
Software
Industries
Food & Agriculture, Pharma & Biopharma
Manufacturer
Agilent Technologies

Summary

Significance of the Topic


Ensuring the safety and compliance of pharmaceuticals, medical devices, and food packaging demands sensitive and accurate detection of extractable and leachable substances. These analyses protect patient health, meet regulatory requirements, and mitigate material compatibility risks.

Objectives and Study Overview


This study introduces a comprehensive workflow combining accurate-mass LC/TOF or Q-TOF instrumentation with a curated Personal Compound Database and Library (PCDL) to streamline the screening of over 1,000 potential extractables and leachables. The approach aims to enhance compound identification confidence, enable retrospective data mining, and support high-throughput laboratory operations.

Applied Methodology and Instrumentation


  • Data Acquisition: Full-scan untargeted methods, including MS-only and All Ions MS/MS, ensure broad compound coverage without predefined target lists.
  • Compound Identification: Utilizes accurate mass measurements, isotope patterns, retention times, and MS/MS fragmentation matching.
  • Database Resources: Agilent Extractables and Leachables PCDL with over 1,000 entries, MS/MS spectra for 360 compounds, regulatory and class tags, and retention time data for more than 125 analytes.
  • Software Tools: Agilent MassHunter suite for acquisition, Profinder for feature extraction, Mass Profiler for statistical comparisons, and PCDL Manager for custom library curation.
  • Instrumentation:
    • Agilent 1260/1290 Infinity II LC with Ultra Clean Option
    • Agilent 6200 Series TOF or 6500 Series Q-TOF LC/MS
    • Jet Stream electrospray ion source for enhanced sensitivity

Main Results and Discussion


The integrated workflow demonstrated reliable detection and confirmation of extractable and leachable compounds across diverse material classes. All Ions MS/MS data enabled retrospective re-analysis without rerunning samples, increasing efficiency. Regulatory tags and compound classification simplified threat prioritization, while library matching reduced false positives and accelerated reporting.

Benefits and Practical Applications


  • Comprehensive Screening: Capable of evaluating unlimited compounds in a single run.
  • Retrospective Analysis: New suspect compounds can be searched in existing datasets without additional experiments.
  • Customizable Libraries: Laboratories can expand the PCDL with in-house standards to address specific materials.
  • Regulatory Compliance: Embedded regulation tags facilitate adherence to FDA, EU, and other global guidelines.

Future Trends and Potential Applications


Rapid advances in high-resolution mass spectrometry and machine learning-driven data mining promise further automation and deeper insights into complex leachable profiles. Integration of predictive algorithms for material degradation and expansion of spectral libraries will support real-time monitoring and risk assessment workflows.

Conclusion


The described LC/MS PCDL-based screening platform provides a robust, flexible, and time-saving solution for extractables and leachables analysis. By combining accurate-mass detection, extensive library resources, and advanced software tools, laboratories can achieve high confidence in compound identification and streamline compliance workflows.

Reference


Agilent Technologies. Extractables and Leachables LC/MS Personal Compound Database and Library (PCDL) Brochure, 2016.

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