Tyshkunova Irina V, Chukhchin Dmitry G, Gofman Iosif V, Pavlova Ekaterina N, Ushakov Vadim A, Vlasova Elena N, Poshina Daria N, Skorik Yury A
Institute of Macromolecular Compounds of the Russian Academy of Sciences, Bolshoi VO 31, St. Petersburg 199004, Russia.
Department of Biology, Ecology and Biotechnology, Northern (Arctic) Federal University Named after M.V. Lomonosov, Severnaya Dvina Emb. 17, Arkhangelsk 163002, Russia.
Materials (Basel). 2021 Sep 9;14(18):5191. doi: 10.3390/ma14185191.
Cryogelation is a developing technique for the production of polysaccharide materials for biomedical applications. The formation of a macroporous structure during the freeze-drying of polysaccharide solutions creates biomaterials suitable for tissue engineering. Due to its availability, biocompatibility, biodegradability, and non-toxicity, chitin is a promising natural polysaccharide for the production of porous materials for tissue engineering; however, its use is limited due to the difficulty of dissolving it. This work describes the preparation of cryogels using phosphoric acid as the solvent. Compared to typical chitin solvents phosphoric acid can be easily removed from the product and recovered. The effects of chitin dissolution conditions on the structure and properties of cryogels were studied. Lightweight (ρ 0.025-0.059 g/cm), highly porous (96-98%) chitin cryogels with various heterogeneous morphology were produced at a dissolution temperature of 20 ± 3 °C, a chitin concentration of 3-15%, and a dissolution time of 6-25 h. The crystallinity of the chitin and chitin cryogels was evaluated by C CP-MAS NMR spectroscopy and X-ray diffractometry. Using FTIR spectroscopy, no phosphoric acid esters were found in the chitin cryogels. The cryogels had compressive modulus E values from 118-345 kPa and specific surface areas of 0.3-0.7 m/g. The results indicate that chitin cryogels can be promising biomaterials for tissue engineering.
冷冻胶凝是一种用于生产生物医学应用多糖材料的新兴技术。多糖溶液冷冻干燥过程中形成的大孔结构造就了适用于组织工程的生物材料。由于几丁质具有可得性、生物相容性、生物降解性和无毒等特性,它是一种很有前景的天然多糖,可用于生产组织工程多孔材料;然而,由于其溶解性困难,其应用受到限制。这项工作描述了使用磷酸作为溶剂制备冷冻胶的过程。与典型的几丁质溶剂相比,磷酸易于从产品中去除并回收。研究了几丁质溶解条件对冷冻胶结构和性能的影响。在溶解温度为20±3℃、几丁质浓度为3-15%、溶解时间为6-25小时的条件下,制备出了具有各种非均匀形态的轻质(ρ0.025-0.059 g/cm)、高孔隙率(96-98%)的几丁质冷冻胶。通过C CP-MAS NMR光谱和X射线衍射法对几丁质和几丁质冷冻胶的结晶度进行了评估。使用FTIR光谱法,在几丁质冷冻胶中未发现磷酸酯。冷冻胶的压缩模量E值为118-345 kPa,比表面积为0.3-0.7 m/g。结果表明,几丁质冷冻胶有望成为组织工程的生物材料。