高效负载叶黄素的玉米醇溶蛋白基固体纳米递送系统的最新进展:构建、结构表征及功能特性
Recent Advances in Efficient Lutein-Loaded Zein-Based Solid Nano-Delivery Systems: Establishment, Structural Characterization, and Functional Properties.
作者信息
Han He, Chang Ying, Jiao Yan
机构信息
College of Food and Bioengineering, Qiqihar University, Qiqihar 161006, China.
出版信息
Foods. 2024 Jul 22;13(14):2304. doi: 10.3390/foods13142304.
Plant proteins have gained significant attention over animal proteins due to their low carbon footprint, balanced nutrition, and high sustainability. These attributes make plant protein nanocarriers promising for applications in drug delivery, nutraceuticals, functional foods, and other areas. Zein, a major by-product of corn starch processing, is inexpensive and widely available. Its unique self-assembly characteristics have led to its extensive use in various food and drug systems. Zein's functional tunability allows for excellent performance in loading and transporting bioactive substances. Lutein offers numerous bioactive functions, such as antioxidant and vision protection, but suffers from poor chemical stability and low bioavailability. Nano-embedding technology can construct various zein-loaded lutein nanodelivery systems to address these issues. This review provides an overview of recent advances in the construction of zein-loaded lutein nanosystems. It discusses the fundamental properties of these systems; systematically introduces preparation techniques, structural characterization, and functional properties; and analyzes and predicts the target-controlled release and bioaccessibility of zein-loaded lutein nanosystems. The interactions and synergistic effects between Zein and lutein in the nanocomplexes are examined to elucidate the formation mechanism and conformational relationship of zein-lutein nanoparticles. The physical and chemical properties of Zein are closely related to the molecular structure. Zein and its modified products can encapsulate and protect lutein through various methods, creating more stable and efficient zein-loaded lutein nanosystems. Additionally, embedding lutein in Zein and its derivatives enhances lutein's digestive stability, solubility, antioxidant properties, and overall bioavailability.
由于植物蛋白的低碳足迹、营养均衡和高度可持续性,它们已比动物蛋白获得了更多关注。这些特性使植物蛋白纳米载体在药物递送、营养保健品、功能食品及其他领域具有应用前景。玉米醇溶蛋白是玉米淀粉加工的一种主要副产品,价格低廉且来源广泛。其独特的自组装特性使其在各种食品和药物体系中得到广泛应用。玉米醇溶蛋白的功能可调性使其在装载和运输生物活性物质方面表现出色。叶黄素具有多种生物活性功能,如抗氧化和保护视力,但化学稳定性差且生物利用度低。纳米包埋技术可以构建各种载玉米醇溶蛋白的叶黄素纳米递送系统来解决这些问题。本文综述概述了载玉米醇溶蛋白的叶黄素纳米系统构建的最新进展。讨论了这些系统的基本性质;系统介绍了制备技术、结构表征和功能性质;并分析和预测了载玉米醇溶蛋白的叶黄素纳米系统的靶向控释和生物可及性。研究了纳米复合物中玉米醇溶蛋白与叶黄素之间的相互作用和协同效应,以阐明玉米醇溶蛋白 - 叶黄素纳米颗粒的形成机制和构象关系。玉米醇溶蛋白的物理和化学性质与分子结构密切相关。玉米醇溶蛋白及其改性产物可以通过各种方法包封和保护叶黄素,从而创建更稳定、高效的载玉米醇溶蛋白的叶黄素纳米系统。此外,将叶黄素包埋在玉米醇溶蛋白及其衍生物中可提高叶黄素的消化稳定性、溶解度、抗氧化性能及总体生物利用度。