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豌豆蛋白-马铃薯皮淀粉复合凝聚法用于包封生物活性枣籽提取物:生物功能表征及体外释放

Pea protein-potato peel starch complex coacervation for the encapsulation of bioactive date seed extract: Bio-functional characterization and in vitro release.

作者信息

Akram Adiba, Murugan Janaki Senthil, Barathikannan Kaliyan, Tammina Sai Kumar, Sridhar Kandi, Keewan Mohammad, Banat Fawzi

机构信息

Department of Chemical and Petroleum Engineering, Khalifa University of Science and Technology, P. O. Box 127788, Abu Dhabi, United Arab Emirates; Food Security and Technology Center, Khalifa University of Science and Technology, P. O. Box 127788, Abu Dhabi, United Arab Emirates.

Department of Chemical and Petroleum Engineering, Khalifa University of Science and Technology, P. O. Box 127788, Abu Dhabi, United Arab Emirates; Food Security and Technology Center, Khalifa University of Science and Technology, P. O. Box 127788, Abu Dhabi, United Arab Emirates.

出版信息

Int J Biol Macromol. 2025 May;310(Pt 4):143484. doi: 10.1016/j.ijbiomac.2025.143484. Epub 2025 Apr 25.

Abstract

The demand for eco-friendly encapsulation systems has boosted interest in the use of plant protein-polysaccharide coacervates to deliver bioactive compounds. This study investigated the potential of pea protein concentrate (PPC) and gelatinized potato peel starch (GPPS) as wall materials for the complex coacervation of date seed extract. The physicochemical properties, stability, bioactive compound retention, in vitro release, and bio-accessibility of the encapsulated extract were evaluated. The coacervates exhibited high encapsulation efficiency (79.43-83.05 %) and low water activity with varied flow properties. FTIR analysis revealed protein-starch molecular interactions, while the retention of total phenolics was significantly affected by pH and ionic strength. The coacervates exhibited high lipid oxidation resistance and antioxidant activity (74.69-87.20 %). In vitro digestion simulations showed a notable controlled release (69.07-96.92 %) and bio-accessibility of up to 62.69 %. The diffusion-controlled release mechanism was best described by the Weibull and Peppas-Sahlin models, where the release rate was influenced by the type and concentration of the matrix. A balanced interaction between protein and starch composition (PPS) resulted in controlled phenolic release, stability, and enhanced absorption. These findings demonstrate the effectiveness of PPC-GPPS as a sustainable carrier for encapsulating date seed extract, offering controlled release, high antioxidant activity, and enhanced bio-accessibility, highlighting its potential for functional food-nutraceutical applications.

摘要

对环保型包封系统的需求激发了人们对使用植物蛋白-多糖凝聚层来递送生物活性化合物的兴趣。本研究考察了豌豆浓缩蛋白(PPC)和糊化马铃薯皮淀粉(GPPS)作为枣籽提取物复合凝聚的壁材的潜力。对包封提取物的理化性质、稳定性、生物活性化合物保留率、体外释放和生物可及性进行了评估。凝聚层表现出高包封效率(79.43-83.05%)和低水分活度,具有不同的流动特性。傅里叶变换红外光谱(FTIR)分析揭示了蛋白质-淀粉分子间的相互作用,而总酚类物质的保留率受pH值和离子强度的显著影响。凝聚层表现出高抗脂质氧化能力和抗氧化活性(74.69-87.20%)。体外消化模拟显示出显著的控释效果(69.07-96.92%),生物可及性高达62.69%。扩散控制释放机制最好用韦布尔模型和佩帕斯-萨林模型来描述,其中释放速率受基质类型和浓度的影响。蛋白质和淀粉组成(PPS)之间的平衡相互作用导致了酚类物质的控释、稳定性和吸收增强。这些发现证明了PPC-GPPS作为一种可持续载体用于包封枣籽提取物具有有效性,可实现控释、高抗氧化活性和增强的生物可及性,突出了其在功能性食品-营养保健品应用中的潜力。

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