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酵母几丁质-葡聚糖复合物的低温溶解及再生聚合物的表征

Low Temperature Dissolution of Yeast Chitin-Glucan Complex and Characterization of the Regenerated Polymer.

作者信息

Araújo Diana, Alves Vítor D, Marques Ana C, Fortunato Elvira, Reis Maria A M, Freitas Filomena

机构信息

UCIBIO-REQUIMTE, Chemistry Department, Faculty of Science and Technology, NOVA University of Lisbon, 2829-516 Caparica, Portugal.

LEAF-Linking Landscape, Environment, Agriculture and Food, Instituto Superior de Agronomia, Universidade de Lisboa, Tapada da Ajuda, 1349-017 Lisbon, Portugal.

出版信息

Bioengineering (Basel). 2020 Mar 14;7(1):28. doi: 10.3390/bioengineering7010028.

Abstract

Chitin-glucan complex (CGC) is a copolymer composed of chitin and glucan moieties extracted from the cell-walls of several yeasts and fungi. Despite its proven valuable properties, that include antibacterial, antioxidant and anticancer activity, the utilization of CGC in many applications is hindered by its insolubility in water and most solvents. In this study, NaOH/urea solvent systems were used for the first time for solubilization of CGC extracted from the yeast . Different NaOH/urea ratios (6:8, 8:4 and 11:4 (w/w), respectively) were used to obtain aqueous solutions using a freeze/thaw procedure. There was an overall solubilization of 63-68%, with the highest solubilization rate obtained for the highest tested urea concentration (8 wt%). The regenerated polymer, obtained by dialysis of the alkali solutions followed by lyophilization, formed porous macrostructures characterized by a chemical composition similar to that of the starting co-polymer, although the acetylation degree decreased from 61.3% to 33.9-50.6%, indicating that chitin was converted into chitosan, yielding chitosan-glucan complex (ChGC). Consistent with this, there was a reduction of the crystallinity index and thermal degradation temperature. Given these results, this study reports a simple and green procedure to solubilize CGC and obtain aqueous ChGC solutions that can be processed as novel biomaterials.

摘要

几丁质-葡聚糖复合物(CGC)是一种由几丁质和葡聚糖部分组成的共聚物,从几种酵母和真菌的细胞壁中提取。尽管其已被证实具有包括抗菌、抗氧化和抗癌活性等有价值的特性,但CGC在许多应用中的利用受到其在水和大多数溶剂中不溶性的阻碍。在本研究中,首次使用氢氧化钠/尿素溶剂体系来溶解从酵母中提取的CGC。使用不同的氢氧化钠/尿素比例(分别为6:8、8:4和11:4(w/w)),通过冻融法获得水溶液。总体溶解度为63-68%,在所测试的最高尿素浓度(8 wt%)下获得了最高的溶解速率。通过对碱性溶液进行透析然后冻干得到的再生聚合物形成了多孔宏观结构,其化学组成与起始共聚物相似,尽管乙酰化程度从61.3%降至33.9-50.6%,这表明几丁质转化为了壳聚糖,生成了壳聚糖-葡聚糖复合物(ChGC)。与此一致的是,结晶度指数和热降解温度降低。基于这些结果,本研究报道了一种简单且绿色的方法来溶解CGC并获得可作为新型生物材料进行加工的ChGC水溶液。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f00/7175172/09d755b2b84c/bioengineering-07-00028-g001.jpg

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