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基于蛋白质和肽的纳米技术增强花色苷的稳定性、生物活性和递送

Protein and Peptide-Based Nanotechnology for Enhancing Stability, Bioactivity, and Delivery of Anthocyanins.

机构信息

Department of Chemical Engineering and Waterloo Institute for Nanotechnology, University of Waterloo, Waterloo, Ontario, N2L3G1, Canada.

College of Biotechnology, Sericultural Research Institute, Jiangsu University of Science and Technology, Zhenjiang, Jiangsu, 212018, China.

出版信息

Adv Healthc Mater. 2023 Oct;12(25):e2300473. doi: 10.1002/adhm.202300473. Epub 2023 Aug 3.

Abstract

Anthocyanin, a unique natural polyphenol, is abundant in plants and widely utilized in biomedicine, cosmetics, and the food industry due to its excellent antioxidant, anticancer, antiaging, antimicrobial, and anti-inflammatory properties. However, the degradation of anthocyanin in an extreme environment, such as alkali pH, high temperatures, and metal ions, limits its physiochemical stabilities and bioavailabilities. Encapsulation and combining anthocyanin with biomaterials could efficiently stabilize anthocyanin for protection. Promisingly, natural or artificially designed proteins and peptides with favorable stabilities, excellent biocapacity, and wide sources are potential candidates to stabilize anthocyanin. This review focuses on recent progress, strategies, and perspectives on protein and peptide for anthocyanin functionalization and delivery, i.e., formulation technologies, physicochemical stability enhancement, cellular uptake, bioavailabilities, and biological activities development. Interestingly, due to the simplicity and diversity of peptide structure, the interaction mechanisms between peptide and anthocyanin could be illustrated. This work sheds light on the mechanism of protein/peptide-anthocyanin nanoparticle construction and expands on potential applications of anthocyanin in nutrition and biomedicine.

摘要

花色苷是一种独特的天然多酚类物质,广泛存在于植物中,由于其具有出色的抗氧化、抗癌、抗衰老、抗菌和抗炎特性,在生物医药、化妆品和食品工业中得到了广泛应用。然而,花色苷在极端环境(如碱 pH 值、高温和金属离子)中的降解限制了其物理化学稳定性和生物利用度。通过将花色苷包封并与生物材料结合,可以有效地稳定花色苷以进行保护。有前途的是,具有良好稳定性、优异生物容量和广泛来源的天然或人工设计的蛋白质和肽是稳定花色苷的潜在候选物。本综述重点介绍了蛋白质和肽在花色苷功能化和递送方面的最新进展、策略和观点,即配方技术、物理化学稳定性增强、细胞摄取、生物利用度和生物活性开发。有趣的是,由于肽结构的简单性和多样性,可以说明肽与花色苷之间的相互作用机制。这项工作阐明了蛋白质/肽-花色苷纳米颗粒构建的机制,并扩展了花色苷在营养和生物医药中的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7093/11468125/93db6ec4d24c/ADHM-12-2300473-g001.jpg

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