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Microstructure and mechanical properties of arabinoxylan and (1,3;1,4)-β-glucan gels produced by cryo-gelation

机译:冷冻凝胶法制备阿拉伯木聚糖和(1,3; 1,4)-β-葡聚糖凝胶的微观结构和力学性能

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摘要

The interactions between heteroxylans and mixed linkage glucans determine the architecture and mechanical properties of cereal endosperm cell walls. In this work hydrogels made of cross-linked arabinoxylan with addition of β-glucan were synthesised by cryogelation as a biomimetic tool to investigate endosperm walls. Molecular and microstructural properties were characterised by nuclear magnetic resonance (C NMR), scanning electron microscopy (SEM) and immunolabelling/confocal laser scanning microscopy (CLSM). The response to mechanical stress was studied by compression-relaxation experiments. The hydrogels consisted of a scaffold characterised by dense walls interconnected by macropores with both hemicelluloses co-localised and homogeneously distributed. The gels showed a high degree of elasticity reflected in their ability to resist compression without developing cracks and recover 60–80% of their original height. Our results highlight the compatibility of these hemicelluloses to coexist in confined environments such as cell walls and their potential role in determining mechanical properties in the absence of cellulose.
机译:杂木聚糖和混合键葡聚糖之间的相互作用决定了谷物胚乳细胞壁的结构和机械性能。在这项工作中,通过冷冻凝胶法合成了由交联的阿拉伯木聚糖和β-葡聚糖制成的水凝胶,作为仿生工具研究胚乳壁。通过核磁共振(C NMR),扫描电子显微镜(SEM)和免疫标记/共聚焦激光扫描显微镜(CLSM)表征分子和微观结构特性。通过压缩松弛实验研究了对机械应力的响应。该水凝胶由一个支架组成,该支架的特征是通过大孔相互连接的致密壁和半纤维素共同定位并均匀分布。凝胶显示出高度的弹性,这体现在它们抗压缩的能力而不会产生裂纹,并能恢复其原始高度的60-80%。我们的结果强调了这些半纤维素在密闭环境(如细胞壁)中共存的相容性,以及它们在不存在纤维素的情况下确定机械性能的潜在作用。

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