负载多酚的ε-聚赖氨酸/聚天冬氨酸离子凝胶的制备及性能分析
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(1.渤海大学食品科学与工程学院 生鲜农产品贮藏加工及安全控制技术国家地方联合工程研究中心 辽宁锦州 121013;2.浙江大学宁波科创中心 浙江宁波 315100;3.上海海洋大学食品学院 上海 201306;4.大连东霖食品股份有限公司 辽宁大连 116100)

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国家重点研发计划项目(2018YFD0901106)


Preparation of ε-Polylysine/Polyaspartic Hydrogel Loaded with Polyphenols and Its Performance Analysis
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(1.College of Food Science and Technology, Bohai University, National & Local Joint Engineering Research Center of Storage, Processing and Safety Control Technology for Fresh Agricultural and Aquatic Products, Jinzhou 121013, Liaoning;2.Ningbo Science Innovation Center of Zhejiang University, Ningbo 315100, Zhejiang;3.College of Food Science and Technology, Shanghai Ocean University, Shanghai 201306;4.Dalian DongLin Food Co. Ltd., Dalian 116100, Liaoning)

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    摘要:

    采用离子凝胶化法制备负载不同多酚的ε-聚赖氨酸/聚天冬氨酸水凝胶,并对其进行结构表征和性能分析。结果表明:ε-聚赖氨酸/聚天冬氨酸水凝胶对单宁酸、山奈酚、褐藻多酚和这3种多酚混合物的包埋率均达到80%以上,负载单宁酸的凝胶粒径最大,为2 160.33 nm,不包埋多酚的复合水凝胶热变性温度和焓值分别为137.16 ℃和63.67 J/g,包埋单宁酸后水凝胶的热变性温度和焓值增加,分别为138.45 ℃和86.53 J/g,而包埋山奈酚和褐藻多酚的水凝胶的热变性温度分别降为134.54 ℃和135.32 ℃,焓值分别降为53.75 J/g和59.88 J/g,复合凝胶更适合于水溶性单宁酸的包埋,且单宁酸的加入增进了复合凝胶对山奈酚等疏水性多酚的包埋率。多酚是以非晶态结构存在于复合凝胶中,几种多酚的包埋效果顺序为:单宁酸>3种多酚混合物>褐藻多酚>山奈酚。

    Abstract:

    ε-Polylysine/polyaspartic hydrogel loaded with different polyphenols was prepared by ion gelation method, and structure characterization and performance analysis of complex hydrogel was investigated. The embedding ratio of ε-polylysine/polyaspartic ammonia hydrogel for tannic acid, kaempferol, brown algae polyphenols and three mixed polyphenols were all above 80%. The hydrogel loaded with tannic acid has the largest particle size (2 160.33 nm), the thermal denaturation temperature and enthalpy value of composite hydrogels without polyphenols was 137.16 ℃ and 63.67 J/g, respectively, the thermal denaturation temperature and enthalpy values of the composite hydrogels loaded with tannic acid increased to 138.45 ℃ and 86.53 J/g, respectively, while the thermal denaturing temperature of the hydrogels loaded with kaempferol and brown algae polyphenol decreased to 134.54 ℃ and 135.32 ℃, respectively, and the enthalpy decreased to 53.75 J/g and 59.88 J/g, respectively. Indicating that the compound hydrogel was more suitable for embedding water-soluble tannic acid, and the embedding efficiency of the composite gel to kahanol and other hydrophobic polyphenols was enhanced by the addition of tannic acid. Therefore, polyphenols were coated in ε-polylysine/polyaspartic acid hydrogel with an amorphous structure, and the embedding effect of the these polyphenols was as follow: tannin > tannin / three mixed polyphenols of acid > brown algae polyphenols > kaempferol.

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李秀霞,马莹莹,蔡路昀,励建荣,谢晶,沈琳.负载多酚的ε-聚赖氨酸/聚天冬氨酸离子凝胶的制备及性能分析[J].中国食品学报,2023,23(2):40-47

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  • 收稿日期:2022-02-17
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  • 在线发布日期: 2023-03-22
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