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Temperature-induced self-assembly of degaloctosylated xyloglucan at low concentration

Academic Article
Publication Date:
2015
abstract:
Xyloglucan is a natural polysaccharide having a hemicellulose backbone and hydroxyl groups-rich side-chains. In its native form the polymer is water-soluble and forms gel only in presence of selected co-solutes. When a given fraction of galactosyl residues are removed by enzymatic reaction, the polymer acquires the ability to form a gel in aqueous solution at physiological temperatures, a property of great interest for biomedical/pharmaceutical applications. This work presents data on the effect of a temperature increase on degalactosylated xyloglucan dispersed in water at concentration low enough not to run into macroscopic gelation. Results obtained over a wide interval of length scales show that, on increasing temperature, individual polymer chains and pre-existing clusters self-assemble into larger structures. The process implies a structural rearrangement over a few nanometers scale and an increase of dynamics homogeneity. The relation of these findings to coil-globule transition and phase separation is discussed. KEYWORDS: thermally responsive polymer, degalactosylated xyloglucan, self-assembly, mesoglobules, supramolecular structure
Iris type:
01.01 Articolo in rivista
Keywords:
thermally responsive polymer; degalactosylated xyloglucan; self-assembly; mesoglobules; supramolecular structure
List of contributors:
Bulone, Donatella; SAN BIAGIO, PIER LUIGI; Passantino, Rosa
Authors of the University:
BULONE DONATELLA
Handle:
https://iris.cnr.it/handle/20.500.14243/303500
Published in:
JOURNAL OF POLYMER SCIENCE. PART B, POLYMER PHYSICS (ONLINE)
Journal
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