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首页> 外文期刊>Journal of Structural Biology >Structural and mechanical properties of the arthropod cuticle: Comparison between the fang of the spider Cupiennius salei and the carapace of American lobster Homarus americanus
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Structural and mechanical properties of the arthropod cuticle: Comparison between the fang of the spider Cupiennius salei and the carapace of American lobster Homarus americanus

机译:节肢动物角质层的结构和力学特性:蜘蛛Cupiennius salei的毒牙和美洲龙虾Homarus americanus的甲壳的比较

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摘要

Most biological materials are nanocomposites characterized by a multi-level structural hierarchy. Particularly, the arthropod cuticle is a chitin-based composite material where the mechanical properties strongly depend on both molecular chitin/protein properties, and the structural arrangement of chitin-fibrils within the protein matrix. Here materials properties and structural organization of two types of cuticle from distantly related arthropods, the wandering spider Cupiennius salei and American lobster Homarus americanus were studied using nanoindentation and X-ray diffraction. The structural analysis of the two types of cuticle including the packing and alignment of chitin-fibrils is supported by Monte Carlo simulations of the experimental X-ray data, thereby regions of parallel and rotated fibril arrangement can be clearly distinguished. The tip of the spider fang which is used to inject venom into the prey was found to be considerably harder than the lobster carapace, while its stiffness is slightly lower
机译:大多数生物材料是纳米复合材料,具有多层结构层次。特别地,节肢动物表皮是一种基于甲壳质的复合材料,其中机械性能强烈取决于分子甲壳质/蛋白质性能以及甲壳质原纤维在蛋白质基质内的结构排列。在这里,使用纳米压痕和X射线衍射研究了来自远缘节肢动物的两种类型的角质层的材料特性和结构组织,它们是游走的蜘蛛Cupiennius salei和美洲龙虾Homarus americanus。 X射线实验数据的蒙特卡洛模拟支持了两种类型的角质层的结构分析,包括几丁质纤维的堆积和排列,从而可以清楚地区分平行和旋转的纤维排列区域。发现用来向猎物中注入毒液的蜘蛛牙的尖端比龙虾的甲壳坚硬得多,而刚度却稍低

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