Simultaneous reversed-phase and anion-exchange method scouting with a dual system for mRNA impurity determination

Posters | 2022 | Thermo Fisher Scientific | ISCInstrumentation
HPLC
Industries
Pharma & Biopharma
Manufacturer
Thermo Fisher Scientific

Summary

Importance of the Topic


The rapid expansion of mRNA-based therapies and vaccines has heightened the need for robust analytical methods to detect impurities generated during in vitro transcription. High-resolution techniques are essential to ensure product quality, safety, and regulatory compliance in research, development, and quality control laboratories. The simultaneous application of reversed-phase and ion-exchange chromatographic modes offers comprehensive impurity profiling in a single workflow, increasing efficiency and data consistency.

Aims and Study Overview


This work aimed to identify optimal chromatographic conditions for simultaneous detection of post-transcriptional impurities in mRNA using ion pairing reversed-phase (IP-RP) and ion-exchange (IEX) chromatography on a dual-system LC platform. Key objectives included:
  • Screening multiple mobile phase compositions and column temperatures for both separation modes.
  • Minimizing analysis time through automated method scouting.
  • Comparing purified and non-purified mRNA samples under selected conditions.

Methodology and Instrumentation Used


The study employed a Thermo Scientific Vanquish Duo dual-system LC fitted with a solvent extension kit for automated scouting. Separation modes were run concurrently using:
  • DNAPac RP column (2.1×100 mm, 4 µm) for IP-RP analysis at 0.4 mL/min and 50 °C.
  • DNAPac PA200 RS column (4.6×150 mm, 4 µm) for IEX analysis at 1.0 mL/min and temperatures of 30–80 °C.
  • Ion-pairing reagents including heptafluorobutyric acid and diisopropylethylamine salts with acetonitrile gradients.
  • IEX buffers composed of tris/0.8 M perchlorate with 20% organic content.
  • Injection volumes of 1 µL and 0.3 µL to standardize mRNA load.
  • UV detection at 260 nm and data collection at 10 Hz.

Main Results and Discussion


Automated scouting of nine IP-RP and eight IEX conditions yielded several promising methods for mRNA impurity separation. Key findings include:
  • Optimal IP-RP condition using 25 mM heptafluoroacetic acid provided sharp mRNA peaks and effective impurity resolution.
  • Best IEX conditions employed 40 mM tris-perchlorate with 20% acetonitrile at elevated temperatures, revealing detailed impurity profiles.
  • Simultaneous dual-mode operation reduced analysis time and ensured direct comparability of results.
  • Relative peak area measurements for purified mRNA were consistent between IP-RP (92.7%) and IEX (90.97%) modes, demonstrating reliable purity estimation.
  • IEX chromatography identified additional impurity details beyond IP-RP capabilities.

Benefits and Practical Applications


The integrated dual-system approach significantly streamlines method development for mRNA analytics by:
  • Reducing instrument time and user intervention through automated mobile phase and temperature scouting.
  • Providing comprehensive impurity profiles in a single run to support faster decision-making in formulation and purification workflows.
  • Enabling flexible adaptation of selected methods to diverse mRNA constructs and purification platforms.

Future Trends and Potential Applications


Continued advancements are expected to further enhance mRNA analysis, including:
  • Integration with mass spectrometry for structural characterization of impurities.
  • Artificial intelligence-driven method optimization and predictive modeling.
  • Development of novel stationary phases and ion-pairing agents to improve resolution of complex mRNA variants.
  • High-throughput platforms for large-scale vaccine and therapeutic development.

Conclusion


The Thermo Scientific Vanquish Duo platform with the Method Scouting Kit enables efficient, simultaneous IP-RP and IEX impurity profiling of mRNA in a single instrument. Selected conditions offer robust peak shapes, detailed impurity detection, and consistent purity estimation, underscoring the value of dual-mode LC in mRNA method development and quality control.

Used Instrumentation


  • Thermo Scientific Vanquish Duo Dual LC system with Solvent Extension Kit
  • DNAPac RP column (2.1×100 mm, 4 µm)
  • DNAPac PA200 RS column (4.6×150 mm, 4 µm)
  • Autosampler maintained at 4 °C and UV detector set at 260 nm

Reference


Application Note by Andrei Ispan D., Lovejoy K., Patzelt S., De Pra M. – Simultaneous reversed-phase and anion-exchange method scouting with a dual system for mRNA impurity determination, Thermo Fisher Scientific, 2022.

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

Downloadable PDF for viewing
 

Similar PDF

Toggle
Simultaneous reversed-phase and anion-exchange method scouting with a dual system for mRNA impurity determination
Application note | 000471 Liquid chromatography Simultaneous reversed-phase and anion-exchange method scouting with a dual system for mRNA impurity determination Authors Application benefits Denis Andrei Ispan, Mauro De Pra, • Leverage two different separation chemistries in the same instrument at…
Key words
mrna, mrnapurified, purifiedscouting, scoutingimpurities, impuritiesduo, duopurification, purificationleft, leftvariables, variablesconditions, conditionspreheater, preheaterpost, postvalve, valvemecn, mecntranscription, transcriptionvanquish
Simultaneous reversed-phase and anion-exchange method scouting with a dual system for mRNA impurity determination
Simultaneous reversed-phase and anion-exchange method scouting with a dual system for mRNA impurity determination Denis Andrei Ispan1, Katherine Lovejoy1, Carsten Paul1, Alec Valenta2, Mauro De Pra1 1Thermo Fisher Scientific, Germering, Germany 2Thermo Fisher Scientific, Somerset, New Jersey, USA For more…
Key words
scouting, scoutingleft, leftpreheater, preheatershaded, shadedmrna, mrnaduo, duodual, dualkit, kitright, rightvanquish, vanquishtemperature, temperatureimpurity, impurityblue, blueaex, aexcolum
The Dual LC Concept for Productivity Increase in Various Applications and Industries
The Dual LC Concept for Productivity Increase in Various Applications and Industries Sylvia Grosse, Denis Andrei Ispan, Frank Steiner Thermo Fisher Scientific, Germering, Germany Introduction Results In research and development or quality control laboratories of industries such as pharmaceutical, biotechnology…
Key words
duo, duodual, dualvanquish, vanquishpaths, pathsimpurity, impurityflex, flexscouting, scoutingtwo, twosoluble, solubledrinks, drinksmrna, mrnaone, onedifferent, differenttablets, tabletsvitamins
Method Modernization and Method Development (e-Book)
Method Modernization and Method Development (e-Book)
2024|Thermo Fisher Scientific|Guides
HPLC and UHPLC Method Modernization and Method Development e-Book Introduction The demand for labs to develop faster, more sensitive, and robust liquid chromatography methods capable of meeting stringent regulatory criteria is a growing challenge faced by many industries. This guide…
Key words
method, methodvanquish, vanquishcontents, contentsmodernization, modernizationback, backdevelopment, developmentthermo, thermouhplc, uhplcchromsword, chromswordscientific, scientificpage, pagescouting, scoutingchromeleon, chromeleonhplc, hplcnext
Other projects
GCMS
ICPMS
Follow us
FacebookX (Twitter)LinkedInYouTube
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