以大麻籽油体蛋白和玫瑰精油为原料制备香蕉保存用人工油质体

IF 8.7 1区 化学 Q1 ACOUSTICS
Haoran Zhu , Yuhan Cao , Xinyu Zhang , Qin Hu , Feng Xue
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引用次数: 0

摘要

本研究系统评价了超声、高压均质和高速剪切三种乳化策略在制备大麻籽油体蛋白(OBPs)和玫瑰精油稳定的人工油质体(AOs)中的效果。对比分析表明,与常规方法相比,超声生成的AOs具有优越的物理化学性质,包括平均粒径减小、更高的ζ-电位和表面疏水性增强。这些结构增强与功能性能的改善相关:超声处理的活性氧表现出更低的表观粘度,更高的自由基清除能力和降低的透光率。与其他涂层相比,超声氧化石墨烯涂层表现出优异的阻隔性能,具有更好的抑制水蒸气渗透和减少氧透过的性能。对香蕉的实际验证表明,超声波处理后的果胶膜通过抑制酶促褐变、保持水分和保持可溶性固形物含量来延长保质期。研究结果表明,超声处理是一种可扩展的多功能AOs工程策略,可用于可持续食品保存。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrasonication-mediated fabrication of artificial oleosomes from hemp seed oil-body proteins and rose essential oil for banana preservation
This study systematically evaluates the efficacy of three emulsification strategies (ultrasonication, high-pressure homogenization, and high-speed shearing) in fabricating artificial oleosomes (AOs) stabilized by hemp seed oil body proteins (OBPs) and rose essential oil. Comparative analyses revealed that ultrasonication generated AOs with superior physicochemical attributes, including reduction in mean particle size, higher ζ-potential, and increased surface hydrophobicity compared to conventional methods. These structural enhancements correlated with improved functional performance: ultrasonicated AOs exhibited lower apparent viscosity, higher radical scavenging capacity, and reduction in light transmittance. Coatings derived from ultrasonicated AOs demonstrated exceptional barrier properties, achieving better water vapor permeability inhibition and oxygen transmission reduction relative to other coatings. Practical validation on bananas revealed that ultrasonicated AOs coatings extended shelf life through enzymatic browning suppression, moisture retention and content of soluble solids maintaining. The findings establish ultrasonication as a scalable strategy for engineering multifunctional AOs with applications in sustainable food preservation.
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来源期刊
Ultrasonics Sonochemistry
Ultrasonics Sonochemistry 化学-化学综合
CiteScore
15.80
自引率
11.90%
发文量
361
审稿时长
59 days
期刊介绍: Ultrasonics Sonochemistry stands as a premier international journal dedicated to the publication of high-quality research articles primarily focusing on chemical reactions and reactors induced by ultrasonic waves, known as sonochemistry. Beyond chemical reactions, the journal also welcomes contributions related to cavitation-induced events and processing, including sonoluminescence, and the transformation of materials on chemical, physical, and biological levels. Since its inception in 1994, Ultrasonics Sonochemistry has consistently maintained a top ranking in the "Acoustics" category, reflecting its esteemed reputation in the field. The journal publishes exceptional papers covering various areas of ultrasonics and sonochemistry. Its contributions are highly regarded by both academia and industry stakeholders, demonstrating its relevance and impact in advancing research and innovation.
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