LCMS
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike
Organizer
Separation Science
Separation Science
Separation Science is the leading online resource for methods, applications, troubleshooting and training in chromatography and mass spectrometry.
Tags
LC/MS
LC/MS/MS
LC/TOF
LC/HRMS
LinkedIn Logo

Understanding Metabolic Pathways Using Mass Isotopologue Analysis with HILIC Zeno MRM High-Resolution

RECORD | Already taken place Tu, 23.5.2023
You will see how we developed a method that couples HILIC with Zeno trap-enabled MRMHR in order to acquire the isotopic labeling information at the intact metabolite and moiety level simultaneously.
Go to the webinar
Separation Science: Understanding Metabolic Pathways Using Mass Isotopologue Analysis with HILIC Zeno MRM High-Resolution
Separation Science: Understanding Metabolic Pathways Using Mass Isotopologue Analysis with HILIC Zeno MRM High-Resolution

Accurate reconstruction of metabolic pathways is an important prerequisite for interpreting metabolomics changes and understanding the diverse biological processes in disease models. A tracer-based metabolomics strategy utilizes stable isotope labeled precursors to resolve complex pathways by tracing the labeled atom(s) to downstream metabolites through enzymatic reactions. Isotope enrichment analysis is informative and achieved by counting total labeled atoms and acquiring the mass isotopologue distribution (MID) of the intact metabolite. However, quantitative analysis of labeled metabolite substructures/moieties can offer more valuable insights into the reaction connections through measuring metabolite transformation.

In this webinar, you will see how we developed a method that couples hydrophilic interaction liquid chromatography (HILIC) with Zeno trap-enabled high-resolution multiple reaction monitoring (MRMHR) in order to acquire the isotopic labeling information at the intact metabolite and moiety level simultaneously.

We will show the method performance of HILIC-Zeno MRMHR compared to that of the HILIC-SWATH and HILIC-general MRMHR with regards to the aspects of sensitivity, accuracy, and fragmentation reproducibility in MID analysis based on the measurement of 13C or 15N-labeled cellular samples.

Further method application will be demonstrated using a classic neuronal model of rotenone-induced neurodegeneration and reveal diverse flux regulations via glucose and glutamine metabolism into glutathione metabolism related to neurodegeneration.

By attending this presentation you will learn about:
  • utilizing the HILIC-Zeno MRMHR method for doing structurally-resolved mass isotopologue distribution analysis of metabolites
  • tracing the labeled 13C/15N atoms in the moieties of metabolite isotopologues to reconstruct the cell-type and condition-specific pathways of glutathione metabolism
  • quantitative isotopologue analysis to elucidate glutathione metabolism regulation at both metabolite and enzyme level

Presenter: Luojiao Huang (Metabolomics and Analytics Centre, Leiden Academic Centre for Drug Research, Leiden University, Leiden)

Luojiao Huang studied traditional Chinese pharmacy at China Pharmaceutical University, and obtained her BSc degree with honors in 2015. In 2018, she started her PhD work at Leiden University and during her research has developed a comprehensive analytical strategy for characterizing the metabolic activity related to PD neurodegeneration, tackling the current analytical challenges faced in selecting an appropriate polar stationary phase used in polar metabolome analysis, advancing the analytical method for tracer-based metabolome analysis, and developing a computational workflow for metabolic flux analysis.

Separation Science
LinkedIn Logo
 

Related content

Overcoming Strong Solvent Effects in the Analysis of Vepdegestrant

Applications
| 2026 | Agilent Technologies
Instrumentation
HPLC
Manufacturer
Agilent Technologies
Industries
Pharma & Biopharma

Identification of Double Bond Positions and Relative Acyl Chain Positions in Egg Yolk Phosphatidylcholines Using OAD-TOF System

Applications
| 2026 | Shimadzu
Instrumentation
LC/MS, LC/MS/MS, LC/TOF, LC/HRMS
Manufacturer
Shimadzu
Industries
Food & Agriculture

High Molecular-Weight Polysaccharide Characterization by SEC-MALS Using GTxResolve™ 1000 and 2000 Å SEC Columns

Applications
| 2026 | Waters
Instrumentation
GPC/SEC, Consumables, LC columns
Manufacturer
Waters
Industries
Pharma & Biopharma, Food & Agriculture

Development and Optimization for a Comprehensive LC/MS/MS Method for the Detection of 74 PFAS Compounds

Applications
| 2026 | Agilent Technologies
Instrumentation
LC/MS, LC/MS/MS, LC/QQQ
Manufacturer
Agilent Technologies
Industries
Food & Agriculture

PFAS in Biota: Risk Context & Robust Analytical Solutions

Others
| 2026 | ALS Europe
Instrumentation
Laboratory analysis, LC/MS, LC/MS/MS
Manufacturer
Industries
Environmental
Other projects
GCMS
ICPMS
Follow us
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike