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  4. Glyco-Nanogels for Modulating Pseudomonas aeruginosa Biofilm
 
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2026
Journal Article
Title

Glyco-Nanogels for Modulating Pseudomonas aeruginosa Biofilm

Abstract
Pseudomonas aeruginosa forms biofilms that complicate treatment of infections, with lectins LecA and LecB playing crucial roles in this process. This study investigates the inhibitory effect of glycosylated nanogels on lectin binding and biofilm formation. Nanogels presenting melibiose (α-galactose) and fucose (β-fucose) effectively reduce LecA and LecB binding, respectively, in competitive inhibition assays against immobilized glycoproteins. Melibiose nanogels are more potent inhibitors than fucose nanogels, as α-galactose is more strongly bound by LecA than β-fucose by LecB. Both types of glycogels have a high impact on P. aeruginosa biofilm formation. Notably, the timing of glycogel application significantly influences biofilm dynamics; pre-treatment leads to a 75% reduction in biofilm formation, whereas treatment after biofilm initiation results in a 60% increase in biofilm growth, suggesting that these glycogels can act as both inhibitors and enhancers of biofilm development. The findings highlight the complexity of carbohydrate-based interactions in biofilm modulation and underscore the necessity for precise dosing and structural optimization in developing effective strategies against infections caused by biofilm-forming bacteria.
Author(s)
Rosencrantz, Sophia  
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
Tang, Jo Sing Julia  
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
König, Karina
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
Chea, Sany
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
Rosencrantz, Ruben Raul  
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
Journal
Macromolecular rapid communications  
Open Access
DOI
10.1002/marc.202500807
Additional link
Full text
Language
English
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
Keyword(s)
  • biofilm modulation

  • glycopolymers

  • lectins

  • nanogels

  • pathoblockers

  • Pseudomonas aeruginosa

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