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首页> 外文期刊>ACS Omega >In Vitro Synthesis of Branchless Linear (1 → 6)-α-d-Glucan by Glucosyltransferase K: Mechanical and Swelling Properties of Its Hydrogels Crosslinked with Diglycidyl Ethers
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In Vitro Synthesis of Branchless Linear (1 → 6)-α-d-Glucan by Glucosyltransferase K: Mechanical and Swelling Properties of Its Hydrogels Crosslinked with Diglycidyl Ethers

机译:通过葡萄糖转移酶K的分支线性(1→6)-α-D-葡聚糖的体外合成:其水凝胶的机械和溶胀性质与二缩水甘油醚交联

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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, M _(w): 1.0–3.0 × 10~(5). 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.
机译:通过在水溶液中通过单罐反应酶合成的多糖制备水凝胶,评价其作为官能材料的性质。使用蔗糖作为基材进行使用从链球菌唾液酸糖尿病ATCC 25975获得的葡萄糖酰转移酶K的酶合成。合成产物是未支链线性(1→6)-α-D-葡聚糖,具有高分子量, M _(W):1.0-3.0×10〜(5)。合成的(1→6)-α-D-葡聚糖在水中不溶于水并在单斜晶体单元细胞中结晶,其与水合形式的葡聚糖一致。通过用二缩水甘油醚交联获得透明和高溶胀(1→6)-α-D-葡聚糖水凝胶。水凝胶没有在压缩过程中没有凝结并且没有体积变化,导致重复压缩下的形状保持。这些水凝胶的弹性模量(<60kPa)小于具有相同固体含量的其他多糖的水凝胶。烘箱干燥的凝胶可以恢复到水凝胶状态,原始透明度和恢复比大于98%。使用PePPAS的动力学方程研究了水分扩散到水凝胶的机制。水凝胶的性质相对于其他基于多糖的水凝胶的性质令人印象深刻,表明其作为功能性生物材料的潜力。

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