Reversible tissue sticker inspired by chemistry in plant-pathogen relationship

  • Lee, Jeehee; 
  • Park, Eunsook; 
  • Lee, Kyueui; 
  • Shin, Mikyung; 
  • Lee, Soohyeon; 
  • 외 2명
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초록

Plants release phenolic molecules to protect against invading pathogens. In plant-microorganism rela-tionships, phenolics bind to surface oligosaccharides, inactivating microorganism activities. Inspired by phenol-saccharide interactions in plant defense systems, we designed an adhesive sealant. By screening 16 different saccharides, the O-acetyl group, rich in glucomannan (GM), exhibited rapid, robust bind-ing with the galloyl moiety of a model phenolic molecule, tannic acid (TA). Furthermore, the interaction showed both pH and temperature (upper critical solution temperature) sensitivities. Utilizing O-acetyl-galloyl interactions, materials of all dimensions from beads (0D) to strings (1D), films (2D), and objects (3D) could be prepared, as a suitable platform for printing techniques. GMTA films are elastic, adhesive, water-resistant, and effectively sealed perforations, as demonstrated by (1) a lung incision followed by an air inflation model and (2) a thoracic diaphragm model.Statement of significanceIn nature, phenolic molecules are 'nearly always' physically bound with polysaccharides, indicating that the phenolics widen the functions of polysaccharides. An example includes that phenolic-polysaccharide interactions are key defense mechanisms against microbial infection in plants whereas polysaccharide alone functions poorly. Despite the ubiquitous biochemistry of polysaccharide-phenolic interactions, ef-forts on understanding binding chemistry focusing on phenol/polysaccharide interactions is little. This study is important because we found for the first time that O-acetyl group is the moiety in polysaccha-rides to which phenolic cis-diol and/or cis-triol is spontaneously bound. The phenol-polysaccharide inter-action is non-covalent yet robust, kinetically fast, and reversible. Inspired by the interaction chemistry, a simple mixture of phenolic molecules and O-acetyl group containing polysaccharides such as glucoman-nan opens a promising fabrication strategy toward functional polysaccharide-based material.(c) 2022 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

키워드

Polysaccharide; Phenol; O-acetyl; Bio-inspired; Hydrogen bonding; TANNIC-ACID; MICROCYSTIS-AERUGINOSA; KONJAC GLUCOMANNAN; GENE-EXPRESSION; POLYPHENOLS; ANTIOXIDANT; CONSEQUENCES; HYDROGELS; ADHESIVE
제목
Reversible tissue sticker inspired by chemistry in plant-pathogen relationship
저자
Lee, Jeehee; Park, Eunsook; Lee, Kyueui; Shin, Mikyung; Lee, Soohyeon; Moreno-Villaecija, Miguel Angel; Lee, Haeshin
DOI
10.1016/j.actbio.2022.09.075
발행일
2023-01-01
유형
Article
저널명
Acta Biomaterialia
권
155
페이지
247 ~ 257