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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Properties of cast films from hemp (Cannabis sativa L.) and soy protein isolates. A comparative study
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Properties of cast films from hemp (Cannabis sativa L.) and soy protein isolates. A comparative study

机译:大麻(大麻)和大豆分离蛋白的铸膜性能比较研究

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摘要

The properties of cast films from hemp protein isolate (HPI) including moisture content (MC) and total soluble mass (TSM), tensile strength (TS) and elongation at the break (EAB), and surface hydrophobicity were investigated and compared to those from soy protein isolate (SPI). The plasticizer (glycerol) level effect on these properties and the interactive force pattern for the film network formation were also evaluated. At some specific glycerol levels, HPI films had similar MC, much less TSM and EAB, and higher TS and surface hydrophobicity (support matrix side), as compared to SPI films. The TS of HPI and SPI films as a function of plasticizer level (in the range of 0.3-0.6 g/g of protein) were well fitted with the exponential equation with coefficient factors of 0.991 and 0.969, respectively. Unexpectedly, the surface hydrophobicity of HPI films (including air and support matrix sides) increased with increasing the glycerol level (from 0.3 to 0.6 g/g of protein). The analyses of protein solubility of film in various solvents and free sulfydryl group content showed that the disulfide bonds are the prominent interactive force in the HPI film network formation, while in the SPI case, besides the disulfide bonds, hydrogen bonds and hydrophobic interactions are also to a similar extent involved. The results suggest that hemp protein isolates have good potential to be applied to prepare protein film with some superior characteristics, e.g., low solubility and high surface hydrophobicity.
机译:研究了大麻蛋白分离物(HPI)的流延膜的特性,包括水分含量(MC)和总可溶性质量(TSM),拉伸强度(TS)和断裂伸长率(EAB)以及表面疏水性,并将其与大豆分离蛋白(SPI)。还评估了增塑剂(甘油)水平对这些性能的影响以及用于形成膜网络的相互作用力模式。与SPI膜相比,在某些特定的甘油水平下,HPI膜的MC相似,TSM和EAB少得多,TS和表面疏水性更高(支持基质一侧)。 HPI和SPI薄膜的TS作为增塑剂含量(在0.3-0.6 g / g蛋白质范围内)的函数,与指数方程的系数系数分别为0.991和0.969完全吻合。出乎意料的是,HPI膜(包括空气和支持基质的一面)的表面疏水性会随着甘油含量的增加(从0.3到0.6 g / g的蛋白质)而增加。薄膜在各种溶剂中的蛋白质溶解度和游离巯基含量的分析表明,二硫键是HPI薄膜网络形成中的主要相互作用力,而在SPI情况下,除二硫键外,氢键和疏水性相互作用也是在类似程度上涉及。结果表明,大麻分离蛋白具有良好的潜力,可用于制备具有某些优异特性的蛋白膜,例如低溶解度和高表面疏水性。

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