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首页> 外文期刊>Acta biomaterialia >Oxidized dextrins as alternative crosslinking agents for polysaccharides: application to hydrogels of agarose-chitosan.
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Oxidized dextrins as alternative crosslinking agents for polysaccharides: application to hydrogels of agarose-chitosan.

机译:氧化的糊精作为多糖的替代交联剂:适用于琼脂糖 - 壳聚糖的水凝胶。

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摘要

Hydrogel networks that combine suitable physical and biomechanical characteristics for tissue engineering scaffolds are in demand. The aim of this work was the development of hydrogel networks based on agarose and chitosan using oxidized dextrins as low cytotoxicity crosslinking agents, paying special attention to the study of the influence of the polysaccharide composition and oxidation degree of the dextrins in the final characteristics of the network. The results show that the formation of an interpenetrating or a semi-interpenetrating polymer network was mainly dependent on a minimum agarose content and degree of oxidation of dextrin. Spectroscopic, thermal and swelling analysis revealed good compatibility with an absence of phase separation of polysaccharides at agarose:chitosan proportions of 50:50 and 25:75. The analysis of atomic force microscopy images showed the formation of a fibrillar microstructure whose distribution within the crosslinked chitosan depended mainly on the crosslinker. All materials exhibited the viscoelastic behaviour typical of gels, with a constant storage modulus independent of frequency for all compositions. The stiffness was strongly influenced by the degree of oxidation of the crosslinker. Cellular response to the hydrogels was studied with cells of different strains, and cell adhesion and proliferation was correlated with the homogeneity of the samples and their elastic properties. Some hydrogel formulations seemed to be candidates for tissue engineering applications such as wound healing or soft tissue regeneration.
机译:适用于组织工程支架的合适物理和生物力学特性的水凝胶网络有所要求。这项工作的目的是使用氧化葡萄糖作为低细胞毒性交联剂的琼脂糖和壳聚糖的水凝胶网络的发展,特别注意对多糖组成和糊精氧化程度的影响的研究网络。结果表明,渗透性或半渗透性聚合物网络的形成主要取决于糊精的最小琼脂糖含量和氧化程度。光谱,热和溶胀分析显示琼脂糖在琼脂糖上的多糖相分离的良好相容性:壳聚糖比例为50:50和25:75。原子力显微镜图像的分析显示,形成纤维状微观结构,其在交联壳聚糖内的分布主要依赖于交联剂。所有材料都表现出典型的凝胶粘弹性行为,恒定的储存模量与所有组合物的频率无关。刚度受交联剂氧化程度的强烈影响。利用不同菌株的细胞研究了对水凝胶的细胞反应,并且细胞粘附和增殖与样品的均匀性及其弹性性能相关。一些水凝胶制剂似乎是组织工程应用的候选者,例如伤口愈合或软组织再生。

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