Thermoplastic molding of silk protein composite plastic toothbrush handles with on-demand degradability

Junqi Wu, Rodrick D. Wiggins, Casey H. Weaver, G. Kugel, D. Kaplan
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Abstract

Toothbrush handles made from synthetic polymers like polypropylene and polyethylene accumulate in the environment at an annual rate of 1 billion devices per year and without significant degradation, resulting in severe burdens particularly in marine environments. Herein, we report a new process to generate these plastic handles using natural, biopolymer-based components using a direct thermoplastic molding approach, that also offers on-demand degradation of the materials. The materials are prepared directly from whole silk cocoons that are thermoplastically transformed into biodegradable plastic parts for consumer needs, here in the form of toothbrush handles; either with silk alone or in combination with other natural sourced materials such as cellulose, chitosan and hydroxyapatite. We demonstrate the on-demand degradation of these bioplastics in different ways, using natural exogenous protease digestion either offered through soil exposure of the silk based plastics or via unique on-demand activation of proteases sequestered in the plastic materials to drive the degradation on-demand (hydration). The approaches described here demonstrate a new approach to bio-plastic formation and degradation from biopolymers that offers widespread options for future consumer materials with a focus on sustainability.
丝蛋白复合塑料牙刷柄的热塑性成型,可按需降解
由聚丙烯和聚乙烯等合成聚合物制成的牙刷柄每年以10亿个装置的速度积聚在环境中,而且没有明显的降解,造成了严重的负担,特别是在海洋环境中。在此,我们报告了一种使用天然生物聚合物为基础的组件使用直接热塑性成型方法生成这些塑料手柄的新工艺,该工艺还提供了材料的按需降解。这些材料是直接从整个蚕茧中制备的,这些蚕茧通过热塑性转化为可生物降解的塑料部件,以满足消费者的需求,在这里以牙刷柄的形式;可以单独使用蚕丝,也可以与其他天然材料如纤维素、壳聚糖和羟基磷灰石结合使用。我们以不同的方式展示了这些生物塑料的按需降解,使用天然外源蛋白酶消化,要么通过暴露在土壤中的丝基塑料提供,要么通过独特的按需激活隔离在塑料材料中的蛋白酶来驱动按需降解(水合作用)。本文描述的方法展示了一种从生物聚合物形成和降解生物塑料的新方法,为未来的消费材料提供了广泛的选择,重点是可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.30
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