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Agilent Solutions for Lipidomics - Greater Insight into Lipid Metabolism

Brochures and specifications | 2019 | Agilent TechnologiesInstrumentation
GC/MSD, GC/MS/MS, GC/HRMS, Sample Preparation, GC/QQQ, GC/Q-TOF, Software, HPLC, LC/TOF, LC/HRMS, LC/MS, LC/MS/MS, LC/QQQ
Industries
Lipidomics
Manufacturer
Agilent Technologies

Summary

Significance of the Topic


Lipidomics is crucial for understanding lipid roles in cellular processes, biomarker discovery and disease mechanisms such as atherosclerosis, obesity, and cancer.

Objectives and Overview


This document presents Agilent’s comprehensive solutions for lipid analysis across infusion and separation-based approaches, covers challenges in lipid characterization, and introduces advanced platforms and informatics for high-throughput lipidomics workflows.

Methodology and Instrumentation


Agilent supports two primary workflows in lipidomics:
  • Shotgun lipidomics via direct infusion on TQ or Q-TOF systems, offering rapid class-level quantitation but limited structural resolution.
  • Profiling lipidomics using chromatographic separation (LC, SFC, 2D-LC) coupled to MS, enabling relative quantitation and detailed annotation of hundreds of lipid species.

Instrumentation Used


Agilent’s platforms for lipidomics include:
  • GC/MS: 5977B GC/MSD, 7000/7010 TQ GC/MS, 7250 GC/Q-TOF.
  • LC/MS and SFC: 1260 Infinity II SFC, 1290 Infinity II UHPLC, 6400/6500 Series QqQ and Q-TOF.
  • 2D-LC: 1290 Infinity II with agile heart-cutting and high-resolution sampling modes.
  • Ion mobility MS: 6560 IMS Q-TOF for separation by collision cross section.
  • Automated sample prep: Agilent Bravo liquid handler.

Key Results and Discussion


Infusion methods enable fast lipid class screening but suffer from ion suppression and limited structural detail. Chromatographic separations (GC/MS, normal and reversed-phase LC, SFC, 2D-LC) overcome these limits by reducing isobaric interferences and improving quantitation. Ion mobility adds an orthogonal gas-phase separation dimension, enhancing isomer resolution. Together, these platforms allow detailed lipid profiling in complex samples such as tissue extracts and biofluids.

Advantages and Practical Applications


  • High-throughput screening of lipid classes and detailed molecular annotation.
  • Enhanced sensitivity and dynamic range for low-abundance lipids.
  • Software integrative tools (MassHunter Lipid Annotator, Mass Profiler Pro) for spectral matching, targeted extraction and multivariate analysis.
  • Application across research areas: clinical biomarker discovery, agriculture, nutrition, pharmaceutical development, and biofuel engineering.

Future Trends and Opportunities


Emerging trends include deeper integration of ion mobility, multi-dimensional separations, in silico spectral libraries, AI-driven data analysis, and multi-omics workflows. Continued development in software algorithms and high-resolution instrumentation will drive more accurate lipid identification and absolute quantitation.

Conclusion


Agilent’s suite of instrumentation and informatics provides a flexible, high-resolution lipidomics workflow. By combining advanced separation techniques, high-performance MS platforms and dedicated software, researchers can achieve comprehensive lipid profiling and accelerate discoveries in diverse fields.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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