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April 1, 2026Biomacromolecules2 citationsOpen Access

Linkage Progression Mapping: Precision Structure Analysis of Individual Oligomers in Birch Milled Wood Lignin

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FLFilippa LudvigÅEÅsa EmmerMLMartin Lawoko

Key Points

  • The study aims to advance understanding of the molecular structure of oligomers in birch milled wood lignin.
  • Applied MALDI-TOF MS analysis on birch milled wood lignin
  • Utilized various NMR techniques for structural studies
  • Categorized oligomers into three types based on unit composition
  • Analyzed molecule-specific syringyl/guaiacyl ratios
  • Identified dominance of linear aryl ether homo-oligomers
  • Subdivided oligomers into sinapyl-only, guaiacyl-only, and mixed units
  • Elucidated oligomeric linkage progressions with common interunits
  • Most oligomers featured enone or enal groups and phenolic hydroxyls

Abstract

Molecular heterogeneity in lignin remains poorly understood due to the lack of analytics robust enough to determine the precise structure of individual molecules in isolated lignin samples. Recently, we showed that MALDI-TOF MS analysis, combined with a range of NMR techniques, facilitated comprehensive structural studies of oligomer populations present in milled wood lignin from spruce, without prior fractionation. Here, the developed methodology is applied to study populations in milled wood lignin from birch. We report a dominance of linear aryl ether homo-oligomers subdivided into three categories: oligomers exclusively of sinapyl units, oligomers exclusively of guaiacyl units, and oligomers with both guaiacyl and sinapyl units. Linkage progressions in oligomeric structures with the other common interunits are also elucidated. Unlike previous reports, the study enabled the determination of molecule-specific syringyl/guaiacyl ratios. All of the elucidated oligomers contain enone or enal groups at the aliphatic end and phenolic hydroxyls on the other, highlighting homolytic cleavage reactions that occur during lignin procurement. Overall, the study provides a comprehensive framework for an atomistic understanding, offering significant potential for both fundamental and applied research.

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Cite This Study

Ludvig et al. (2026) studied this question.

synapsesocial.com/papers/69ccb79916edfba7beb8999ahttps://doi.org/10.1021/acs.biomac.5c02761
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