自愈水凝胶
肿胀 的
分离
化学工程
葡聚糖
化学
生物材料
多糖
高分子化学
右旋糖酐
材料科学
有机化学
工程类
作者
Qinfeng He,Kayoko Kobayashi,Ryosuke Kusumi,Satoshi Kimura,Yukiko Enomoto-Rogers,Makoto Yoshida,Ung‐Jin Kim,Masahisa Wada
出处
期刊:ACS omega
[American Chemical Society]
日期:2020-11-26
卷期号:5 (48): 31272-31280
被引量:12
标识
DOI:10.1021/acsomega.0c04699
摘要
A hydrogel was prepared from a polysaccharide, enzymatically synthesized through a one-pot reaction in aqueous solution, and its properties as a functional material were evaluated. Enzymatic synthesis using glucosyltransferase K obtained from Streptococcus salivarius ATCC 25975 was performed with sucrose as a substrate. The synthetic product was unbranched linear (1 → 6)-α-d-glucan with a high molecular weight, Mw: 1.0–3.0 × 105. The synthesized (1 → 6)-α-d-glucan was insoluble in water and crystallized in a monoclinic unit cell, which is consistent with the hydrated form of dextran. Transparent and highly swellable (1 → 6)-α-d-glucan hydrogels were obtained by crosslinking with diglycidyl ethers. The hydrogels showed no syneresis and no volume change during compression, resulting in the retention of shape under repeated compression. The elastic moduli of these hydrogels (<60 kPa) are smaller than those of other polysaccharide-based hydrogels having the same solid contents. The oven-dried gels could be restored to the hydrogel state with the original transparency and a recovery ratio greater than 98%. The mechanism of water diffusion into the hydrogel was investigated using the kinetic equation of Peppas. The properties of the hydrogel are impressive relative to those of other polysaccharide-based hydrogels, suggesting its potential as a functional biomaterial.
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