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首页> 外文期刊>Advanced Sustainable Systems >Plant Protein Amyloid Fibrils for Multifunctional Sustainable Materials
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Plant Protein Amyloid Fibrils for Multifunctional Sustainable Materials

机译:用于多功能可持续材料的植物蛋白淀粉样蛋白原纤维

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摘要

Abstract Artificial functional materials based on amyloid fibrils are proven to be a promising strategy toward functional materials. However, scaling‐up applications present sustainability concerns, as animal proteins are the main sources for fabricating amyloid fibrils. Plant‐protein‐based amyloid fibrils, a more sustainable alternative to animal proteins, are attracting increasing interests as building blocks in functional materials. Herein, 11 different sources from a wide range of plants are evaluated, and a comprehensive analysis of seven species of plant proteins, including kidney bean, black bean, cowpea, mung bean, chickpea, lentil, and pumpkin seed, with an excellent ability to form fibrils, is presented. A universal strategy for a diversity of plant protein extraction and fibrillization is applied. Flexible fibrils with a persistence length of ≈100 nm and rigid fibrils of several micrometers are discovered in 7S/8S and 11S subunits dominated protein, respectively. Structural evolution toward the β‐sheet content on these proteinaceous assemblies is characterized by thioflavin T (ThT) intensity, circular dichroism (CD) spectra, attenuated total reflectance‐Fourier transform infrared (ATR‐FTIR) spectra, and typical wide angle X‐ray scattering (WAXS) spectra. Finally, their multifunctional applications are further explored and proven that these sustainable protein amyloids demonstrate excellent performance in renewable and degradable bioplastics, and in water purification membranes for heavy metal removal.
机译:摘要基于人工功能材料淀粉样原纤维也被证明是一种很有前途的策略对功能材料。应用程序现在可持续性扩展所致问题,如动物蛋白的主要来源制造淀粉样原纤维。植物量蛋白质淀粉样原纤维为基础,应承担更多可持续替代动物蛋白吸引越来越多的利益块的功能材料。不同来源的各种各样的植物评估和综合分析的7物种的植物蛋白质,包括芸豆,黑豆、豇豆、绿豆、鹰嘴豆、扁豆、和南瓜种子,一个优秀的能力形成原纤维,。多样性的植物蛋白提取和fibrillization。一个持久化≈100海里和刚性纤维的长度几个微米发现7 / 8年代分别和11 s亚基蛋白为主。构造演化对β单内容在这些蛋白质的组装特点是thioflavin T(阻)强度,圆二色性(CD)光谱,减毒地理地理反射率傅里叶变换红外(ATR红外光谱)光谱,典型的广角X射线散射(蜡)光谱。应用程序是进一步探索和证明这些可持续蛋白质淀粉样展示在可再生和可降解性能优良生物塑料,在水净化膜对重金属去除。

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