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March 6, 20261 citationsOpen Access

Preliminary Exploration of Structure-Immunostimulatory Activity Correlation of Spherical Pectin from Chrysanthemum Tea Infusion

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PAPeng AnYFYunzi FengLYLijun You

Key Points

  • This research aims to evaluate the immunostimulatory activity of spherical pectin derived from chrysanthemum tea and understand its structure-activity relationship.
  • Evaluated immunostimulatory activity in RAW264.7 cells
  • Investigated structure-immunostimulatory activity correlation
  • Analyzed the composition of pectin, focusing on arabinose residues
  • Conducted molecular docking analysis to assess binding interactions with TLR4/MD-2
  • Spherical pectin showed significant immunostimulatory activity in RAW264.7 cells
  • The RG-I domain was critical for its activity
  • 73.8% of arabinose residues were branched, indicating complex structure
  • Binding to TLR4/MD-2 complexes stabilized the dimer structure, contributing to its function

Abstract

The spherical pectin is an important bioactive component of chrysanthemum tea infusion, but its biological function, primary structure, and structure-activity relationship remain unclear. The present study evaluated the immunostimulatory activity of spherical pectin from Chrysanthemummorifolium Ramat. ‘Hangbaiju’ tea infusion in RAW264.7 cells and preliminarily investigated its structure-immunostimulatory activity relationship. The rhamnogalacturonan-I (RG-I) domain played a key role in the immunostimulatory activity of spherical pectin. Terminal and branched arabinose residues together accounted for 73.8% of the total arabinose residues in spherical pectin, indicating that the arabinan chains of spherical pectin were highly branched. The backbone of these arabinan chains consisted of →5)-α-Araf-(1→ repeats, and additional →5)-α-Araf-(1→ branches were linked to the backbone via α-1,3-glycosidic linkages. The spherical pectin rich in highly branched arabinan chains activated RAW264.7 cells via recognition by toll-like receptor 4 (TLR4). Molecular docking analysis revealed that →5)-α-Araf-(1→ branches in spherical pectin could bind to toll-like receptor 4/myeloid differentiation protein-2 (TLR4/MD-2) complexes and stabilize the dimer structure, which represents an important mechanism for its immunostimulatory activity. This study provides new insights into the structure-function relationship of spherical pectin.

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Cite This Study

An et al. (2026) studied this question.

synapsesocial.com/papers/69aa70d6531e4c4a9ff5af22https://doi.org/10.3390/foods15050863
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