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由磷酸化紫苏蛋白分离物稳定的高内相比乳液凝胶用于保护疏水性营养素:通过掺入壳聚糖-原儿茶酸缀合物来调节乳液性能。

High internal phase emulsion gels stabilized by phosphorylated perilla protein isolate for protecting hydrophobic nutrients: Adjusting emulsion performance by incorporating chitosan-protocatechuic acid conjugate.

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, China.

State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, China.

出版信息

Int J Biol Macromol. 2023 Jun 1;239:124101. doi: 10.1016/j.ijbiomac.2023.124101. Epub 2023 Mar 21.

Abstract

The delivery vehicles based on protein-polysaccharide-polyphenol are promising methods to encapsulate bioactive components with the aim of improving their solubility and bioavailability. In this study, chitosan-protocatechuic acid (CSPA) conjugate interacted with phosphorylated perilla protein isolate (LZPI) to engineer a composite antioxidant interfacial architecture to delay lipid oxidation and regulate the stability and digestion profiles of β-carotene loaded in high internal phase emulsions (HIPEs). Compared to LZPI, the LZPI-CSPA complexes formed by hydrogen bond and electrostatic interaction showed improved wettability and reduced interfacial tension, which facilitated their adsorption at the interface. Furthermore, the addition of CSPA conjugate promoted the formation of interconnected network structure of LZPI-stabilized HIPEs, thereby endowing them with excellent viscoelasticity and storage stability. Moreover, the denser interfacial film based on LZPI-CSPA complexes effectively decreased the contents of lipid hydroperoxide and malondialdehyde in HIPEs, thus improving their oxidation stability. The encapsulation of β-carotene by LZPI-CSPA complex-stabilized HIPEs could further enhance its retention rate against different environmental stresses. After in vitro simulated digestion, the bioaccessibility of β-carotene also improved, reaching the highest value in HIPEs containing 1.5 % CSPA conjugate. These findings will give a reference for the fabrication of delivery vehicles to enhance the stability and bioaccessibility of bioactive components.

摘要

基于蛋白质-多糖-多酚的递药系统是一种很有前途的方法,可以将生物活性成分包封起来,以提高其溶解度和生物利用度。在这项研究中,壳聚糖-原儿茶酸(CSPA)缀合物与磷酸化紫苏蛋白分离物(LZPI)相互作用,构建了一种复合抗氧化界面结构,以延缓脂质氧化,并调节高内相乳液(HIPE)中负载的β-胡萝卜素的稳定性和消化特性。与 LZPI 相比,通过氢键和静电相互作用形成的 LZPI-CSPA 复合物表现出更好的润湿性和更低的界面张力,这有利于它们在界面上的吸附。此外,CSPA 缀合物的添加促进了 LZPI 稳定的 HIPE 中相互连接的网络结构的形成,从而赋予其优异的粘弹性和储存稳定性。此外,基于 LZPI-CSPA 复合物的更致密的界面膜可以有效降低 HIPE 中脂质氢过氧化物和丙二醛的含量,从而提高其氧化稳定性。LZPI-CSPA 复合稳定的 HIPE 对β-胡萝卜素的包封可以进一步提高其对不同环境应激的保留率。经过体外模拟消化后,β-胡萝卜素的生物利用度也得到了提高,在含有 1.5% CSPA 缀合物的 HIPE 中达到了最高值。这些发现将为制备递药系统提供参考,以提高生物活性成分的稳定性和生物利用度。

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