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Ubiquitous distribution of salts and proteins in spider glue enhances spider silk adhesion

机译:蜘蛛胶中盐和蛋白质的普遍分布增强了蜘蛛丝的附着力

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Modern orb-weaving spiders use micron-sized glue droplets on their viscid silk to retain prey in webs. A combination of low molecular weight salts and proteins makes the glue viscoelastic and humidity responsive in a way not easily achieved by synthetic adhesives. Optically, the glue droplet shows a heterogeneous structure, but the spatial arrangement of its chemical components is poorly understood. Here, we use optical and confocal Raman microscopy to show that salts and proteins are present ubiquitously throughout the droplet. The distribution of adhesive proteins in the peripheral region explains the superior prey capture performance of orb webs as it enables the entire surface area of the glue droplet to act as a site for prey capture. The presence of salts throughout the droplet explains the recent Solid-State NMR results that show salts directly facilitate protein mobility. Understanding the function of individual glue components and the role of the droplet's macro-structure can help in designing better synthetic adhesives for humid environments.
机译:现代的织球蜘蛛在其粘稠的丝绸上使用微米级的胶滴将猎物保留在网中。低分子量盐和蛋白质的结合使胶粘剂具有粘弹性和湿度响应性,而合成胶粘剂不易实现。从光学上讲,胶滴显示出异质结构,但对其化学成分的空间排列了解得很少。在这里,我们使用光学和共聚焦拉曼显微镜显示盐和蛋白质遍及整个液滴。粘附蛋白在周边区域的分布说明了球网的卓越捕获物捕获性能,因为它使胶滴的整个表面积都能充当捕获物的位置。整个液滴中都存在盐,这说明了最近的NMR结果表明盐直接促进了蛋白质的迁移。了解单个胶水成分的功能和液滴的宏观结构的作用可以帮助设计用于潮湿环境的更好的合成胶粘剂。

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