Reducing Spatial Heterogeneity of MALDI Samples with Marangoni Flows During Sample Preparation

  • Yin Hung Lai
  • , Yi Hong Cai
  • , Hsun Lee
  • , Yu Meng Ou
  • , Chih Hao Hsiao
  • , Chien Wei Tsao
  • , Huan Tsung Chang
  • , Yi Sheng Wang*
  • *Corresponding author for this work

Research output: Contribution to journalJournal Article peer-review

34 Scopus citations

Abstract

This work demonstrates a method to prepare homogeneous distributions of analytes to improve data reproducibility in matrix-assisted laser desorption/ionization (MALDI) mass spectrometry (MS). Natural-air drying processes normally result in unwanted heterogeneous spatial distributions of analytes in MALDI crystals and make quantitative analysis difficult. This study demonstrates that inducing Marangoni flows within drying droplets can significantly reduce the heterogeneity problem. The Marangoni flows are accelerated by changing substrate temperatures to create temperature gradients across droplets. Such hydrodynamic flows are analyzed semi-empirically. Using imaging mass spectrometry, changes of heterogeneity of molecules with the change of substrate temperature during drying processes are demonstrated. The observed heterogeneities of the biomolecules reduce as predicted Marangoni velocities increase. In comparison to conventional methods, drying droplets on a 5 °C substrate while keeping the surroundings at ambient conditions typically reduces the heterogeneity of biomolecular ions by 65%–80%. The observation suggests that decreasing substrate temperature during droplet drying processes is a simple and effective means to reduce analyte heterogeneity for quantitative applications. [Figure not available: see fulltext.]

Original languageEnglish
Pages (from-to)1314-1321
Number of pages8
JournalJournal of the American Society for Mass Spectrometry
Volume27
Issue number8
DOIs
StatePublished - 01 08 2016
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2016, American Society for Mass Spectrometry.

Keywords

  • Heterogeneity
  • Hydrodynamic flow
  • MALDI
  • Marangoni flow
  • Sample preparation
  • Spatial distribution
  • Substrate temperature

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