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Effect of Humidity on the Adhesion of Black Widow Spider's Gumfoot Silk

机译:湿度对黑寡妇蜘蛛胶丝粘性的影响

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We studied the adhesive gumfoot silk from the cobweb of western black widow to understand how its composition correlates with adhesion. Solution-State NMR showed the water soluble part of the silk to be composed of majorly hygroscopic organic salts. A previously unknown water insoluble residue was found on the water washed silk threads, characterized using staining and Solid-State NMR studies was identified to consist of glycoprotein. Whole thread adhesion and Solid State NMR results showed the importance of water soluble components in humidity response while optimization of silk adhesion was seen at 30% R.H. Our study highlights the recurring observation of how salts and proteins interact to produce the adhesion of capture silk in different humid environments, a lesson that can provide clues in developing humidity responsive synthetic adhesive systems.
机译:我们从西黑寡妇蜘蛛网中研究了粘合剂Gumfoot丝绸,了解其组成与粘附性的相关性。溶液状态NMR显示丝的水溶部分,由主要吸湿有机盐组成。在水洗丝线上发现了先前未知的水不溶性残基,其特征在于使用染色,并鉴定固态NMR研究组成由糖蛋白组成。整个螺纹粘附和固态NMR结果表明,水溶性组分在湿度反应中的重要性,同时在30%RH中看到丝绸附着力的优化我们的研究我们的研究突出了盐和蛋白质如何相互作用,以产生不同的捕获丝潮湿环境,可以在开发湿度响应合成粘合剂系统中提供线索的潮流。

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