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Novel protein-based bio-aerogels derived from canola seed meal

机译:基于新型蛋白质的生物气凝胶衍生自牛油籽粉

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Novel bio-aerogels produced via the gelation of protein extracts from canola seed meal (CSM) are described for the first time, representing a new class of advanced materials that are derived from plant-based biotechnology. The bio-aerogels were synthesised by firstly manipulating the pH of the protein solution to form a gel, followed by freeze drying to form an aerogel with an average pore size and density of 75 mu m and 0.13 g cm(-3), respectively. The resulting protein-based structures were observed to have pores sizes down to the meso-scale. The mechanical behaviour of CSM-derived protein aerogels was investigated using static compressive testing. The average compressive elastic moduli and strength of the aerogels were 0.97 +/- 0.32 MPa and 0.055 +/- 0.011 MPa, respectively. The CSM-derived protein aerogels had compressive mechanical properties up to 196% of soy protein composite aerogels. The mechanical properties could also be manipulated by altering the pH and temperature during gelation. Gels held at ambient temperature during processing were revealed to have the highest elastic moduli (2.0 +/- 0.6 MPa) and compressive strength (0.096 +/- 0.014 MPa) at a pH of 8. In contrast, gels that were heated at 90 degrees C demonstrated the highest compressive modulus and strength at a pH of 10 (133% and 140%, respectively, as compared to the gel at pH 8 prepared at ambient temperature). The tunability of the mechanical properties using simple aqueous chemistry suggests this novel system of bio-aerogels has potential uses in a range of food and biopharmaceutical applications.
机译:首次描述通过从CANOLA种子膳食(CSM)的蛋白质提取物凝胶化产生的新型生物气凝胶,代表了来自基于植物的生物技术的新类先进材料。通过首先操纵蛋白质溶液以形成凝胶的pH来合成生物气凝胶,然后冷冻干燥以形成气凝胶,其平均孔径和75μm和0.13g cm(-3)的密度。被观察到所得蛋白质的结构使孔尺寸下降到中间尺度。使用静态压缩检测研究了CSM衍生的蛋白质气凝胶的力学行为。气凝胶的平均压缩弹性模和强度分别为0.97 +/- 0.32MPa和0.055 +/- 0.011MPa。 CSM衍生的蛋白质气凝胶具有高达196%的大豆蛋白复合气凝胶的压缩机械性能。还可以通过改变凝胶期间的pH和温度来操纵机械性能。在加工过程中保持环境温度的凝胶被揭示以具有最高的弹性模量(2.0 +/- 0.6MPa)和pH值的压缩强度(0.096 +/- 0.014MPa)。相比之下,在90度下加热的凝胶c与在环境温度下制备的pH8的pH8的凝胶相比,p pH的pH值为10(分别为133%和140%的pH值的最高压缩模量和强度。使用简单的含水化学的机械性能的可调谐性表明了这种生物气凝胶的新型系统在一系列食物和生物制药应用中具有潜在用途。

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