Plant heteropolysaccharides and their bioadhesion to animal glycocalyx visualized at the nanoscale

Abstract The plant-derived biopolymer pectin has been explored as sealant in lung surgery. Interpenetration of pectin’s heteropolysaccharide chains with sugar-chains on components of the mesothelial glycocalyx is thought to mediate adhesion. To visualize a potential adhesion complex, we first establish a method to preserve pectin ultrastructure by limiting hydration during sample preparation for electron microscopy. Depending on actual hydration states and pectic domains selected we find distinct morphologies: Citrus pectic polysaccharides, combining both, smooth homogalacturonan and hairy rhamnogalacturonan domains, form a loose network of thin filaments. Rhamnogalacturonan and xylogalacturonan domains from soy show a denser mesh, while pectic galactan from potato or pectic arabinan from sugar beet display more globular aspects. As proof of concept, we finally apply the filamentous lemon pectin to the surface of murine lung in a surgical setting. Ultrastructural visualization of the sealant-tissue assembly shows tight association between the carbohydrate fibers, possibly driven by polymer-typical chain interactions.

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Publication Details

Journal
Communications Biology
Published
2026-09-22
DOI
https://doi.org/10.1038/s42003-026-10872-y
Primary Topic
Polysaccharides and Plant Cell Walls
Type
article
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article

Plant heteropolysaccharides and their bioadhesion to animal glycocalyx visualized at the nanoscale

Steven J. Mentzer, Irene U. Wacker, Mirko Bunzel, Rasmus R. Schröder et al.
Communications Biology
Polysaccharides and Plant Cell Walls
article

Plant heteropolysaccharides and their bioadhesion to animal glycocalyx visualized at the nanoscale

Steven J. Mentzer, Irene U. Wacker, Mirko Bunzel, Rasmus R. Schröder, Jennifer M. Pan, Anna Schoch, Ronald Curticean, Endre Majorovits, Willi Wagner
article en

Abstract

Abstract The plant-derived biopolymer pectin has been explored as sealant in lung surgery. Interpenetration of pectin’s heteropolysaccharide chains with sugar-chains on components of the mesothelial glycocalyx is thought to mediate adhesion. To visualize a potential adhesion complex, we first establish a method to preserve pectin ultrastructure by limiting hydration during sample preparation for electron microscopy. Depending on actual hydration states and pectic domains selected we find distinct morphologies: Citrus pectic polysaccharides, combining both, smooth homogalacturonan and hairy rhamnogalacturonan domains, form a loose network of thin filaments. Rhamnogalacturonan and xylogalacturonan domains from soy show a denser mesh, while pectic galactan from potato or pectic arabinan from sugar beet display more globular aspects. As proof of concept, we finally apply the filamentous lemon pectin to the surface of murine lung in a surgical setting. Ultrastructural visualization of the sealant-tissue assembly shows tight association between the carbohydrate fibers, possibly driven by polymer-typical chain interactions.

Communications BiologyVol. 9(1)
Openalex Percentile: Top 13%
Polysaccharides and Plant Cell Walls
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Plant heteropolysaccharides and their bioadhesion to animal glycocalyx visualized at the nanoscale — Steven J. Mentzer, Irene U. Wacker, et al. · Communications Biology (2026) | TGRS Research Map | TGRS