麝香草乙醇提取物作为蛋白膜配方中的交联剂

Q3 Engineering
Ayten Solak, S. Dyankova
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引用次数: 0

摘要

本研究探讨了烟树(Cotinus coggygria Scop)乙醇提取物(STE)作为天然交联活性成分在胶原蛋白(CL)、明胶(GL)和大豆分离蛋白(SPI)薄膜配方中的潜在应用。在对各自的成膜溶液进行浇铸和干燥后,得到了弹性均匀的薄膜。与对照系列相比,所有添加了 STE 的蛋白质薄膜都有明显的色差(主要是因为黄度增加)。交联度最高的是 CLSTE(60%),其次是 GLSTE(27%)和 SPISTE(18%)。通过 DPPH 自由基清除试验测定的薄膜抗氧化活性在添加 STE 后显著提高。观察到添加 STE 的薄膜的拉伸强度(TS)增加了一倍(CLSTE 和 SPISTE)到 4 倍多(GLSTE)不等。此外,与各自的对照组相比,添加了提取物的薄膜的光阻隔性能有了显著改善,但透明度也降低了 1.5 倍。对厚度、吸湿性和总可溶性物质等物理特性没有明显影响。研究结果表明,STE 可以成功地用作蛋白质薄膜的天然交联剂,从而改善薄膜的光阻隔性能,并提高强度和抗氧化活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COTINUS COGGYGRIA ETHANOL EXTRACT AS CROSSLINKING AGENT IN FORMULATION OF THE PROTEIN FILMS
The study explores the potential application of smoketree (Cotinus coggygria Scop) ethanol extract (STE) as a natural cross-linking and active component in the formulation of films based on collagen (CL), gelatin (GL) and soy protein isolate (SPI). After casting and drying of the respective film-forming solutions, elastic and homogeneous films were obtained. A significant color difference was found for all protein films with added STE compared to the control series (mainly due to an increase in yellowness). The degree of cross-linking was highest in CLSTE (60 %), followed by GLSTE (27 %) and SPISTE (18 %). The antioxidant activity of the films, determined by the DPPH radical scavenging assay, increased significantly after the addition of STE. The observed increase in tensile strength (TS) for the films with STE ranged from double (CLSTE and SPISTE) to more than 4 times (GLSTE). In addition, there was a significant improvement in the light barrier properties of the extract-incorporated films, but also a reduction in their transparency up to 1.5 times compared to their respective controls. No significant influence was observed on physical characteristics such as thickness, moisture absorption and total soluble matter. Research results show that STE can be successfully used as a natural cross-linking agent in protein films, resulting in improved light barrier properties as well as increased strength and antioxidant activity.
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来源期刊
Journal of Chemical Technology and Metallurgy
Journal of Chemical Technology and Metallurgy Engineering-Industrial and Manufacturing Engineering
CiteScore
1.40
自引率
0.00%
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0
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