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杜仲叶提取物自组装纳米载体的筛选、鉴定及其对姜黄素的包埋应用

耿汝意 李超男 李倩倩 王宇慧 张璐璐 马超

现代食品科技2026,Vol.42Issue(5):203-212,10.
现代食品科技2026,Vol.42Issue(5):203-212,10.DOI:10.13982/j.mfst.1673-9078.2026.5.0298

杜仲叶提取物自组装纳米载体的筛选、鉴定及其对姜黄素的包埋应用

Isolation and Identification of Self-assembled Nanocarriers from Eucommia ulmoides Leaf Extract for Curcumin Encapsulation

耿汝意 1李超男 1李倩倩 1王宇慧 1张璐璐 2马超2

作者信息

  • 1. 北京林业大学生物科学与技术学院,林业食品加工与安全北京市重点实验室,北京 100083
  • 2. 北京林业大学生物科学与技术学院,林业食品加工与安全北京市重点实验室,北京 100083||森林食物资源可持续利用与开发河北省重点实验室,河北雄安 070001
  • 折叠

摘要

Abstract

A small-molecule self-assembled nanomaterial(SMSN)-enriched extract from Eucommia ulmoides Oliv.leaves(EuNE)was isolated and purified as an alternative to high-purity SMSNs,with the aim of reducing production costs and facilitating industrial application.A self-assembly performance-guided fractionation strategy was applied to screen and identify functional EuNE components,which were further characterized using chromatographic techniques.The encapsulation efficiency and stability of curcumin loaded into EuNE self-assembled nanoparticles(EuNE NPs)were systematically evaluated.The EuNE fraction obtained via methanol extraction,petroleum ether fractionation,and ethanol precipitation exhibited excellent self-assembly capability.The resulting EuNE NPs showed an average particle size of 232.79 nm and a surface charge of--30.13 mV.Oleanolic acid(38.56 mg·g-1)and ursolic acid(68.35 mg·g-1)were identified as the major carrier components,forming nanoparticles through synergistic hydrogen-bonding and electrostatic interactions.Curcumin encapsulation efficiency in EuNE NPs reached 77.40%,accompanied by markedly improved stability under ultraviolet irradiation,elevated temperatures,different pH conditions,and varying ionic strengths.In simulated gastric fluid,69.34%of curcumin was released within 3 h,while cumulative release in simulated intestinal fluid reached 44.60%over the same period,demonstrating sustained-release behavior.These results indicate that SMSN self-assembly can be achieved without high-purity monomeric components and highlight the potential of Eucommia leaf extracts for the development of cost-effective,high-performance natural nanocarrier systems.

关键词

自组装纳米材料/天然小分子/杜仲叶/生物活性化合物递送

Key words

self-assembled nanomaterials/natural small molecules/Eucommia leaves/bioactive compound delivery

引用本文复制引用

耿汝意,李超男,李倩倩,王宇慧,张璐璐,马超..杜仲叶提取物自组装纳米载体的筛选、鉴定及其对姜黄素的包埋应用[J].现代食品科技,2026,42(5):203-212,10.

基金项目

中央大学基本科研业务费专项(QNTD202302) (QNTD202302)

国家自然科学基金项目(31770614 ()

31901236) ()

北京林业大学5·5工程科研创新团队项目(BLRC2023A01) (BLRC2023A01)

现代食品科技

1673-9078

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