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多晶型纳米淀粉介导的生物活性物质组装。

Polymorphic nanostarch-mediated assembly of bioactives.

机构信息

College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou 310058, China.

College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou 310058, China; Innovation Center of Yangtze River Delta, Zhejiang University, Jiashan 314103, China.

出版信息

Carbohydr Polym. 2024 Jan 15;324:121474. doi: 10.1016/j.carbpol.2023.121474. Epub 2023 Oct 10.

Abstract

Starch as an edible, biosafe, and functional biopolymer, has been tailored at nanoscale to deliver bioactive guests. Nanostarches fabricated in various morphologies including nanosphere, nanorod, nanoworm, nanovesicle, nanopolyhedron, nanoflake, nanonetwork etc., enable them to assemble different kinds of bioactives due to structural particularity and green modification. Previous studies have reviewed nanostarch for its preparation and application in food, however, no such work has been done for the potential of delivery system via polymorphic nanostarches. In this review, we focus on the merits of nanostarch empowered by multi-morphology for delivery system, and also conclude the assembly strategies and corresponding properties of nanostarch-based carrier. Additionally, the advantages, limitations, and future perspectives of polymorphic nanostarch are summarized to better understand the micro/nanostarch architectures and their regulation for the compatibility of bioactive molecules. According to the morphology of carrier, nanostarch effectively captures bioactives on the surface and/or inside core to form tight complexes, which maintains their stability in the human microenvironment. It improves the bioavailability of bioactive guests by different assembly approaches of carrier/guest surface combination, guest@carrier embedment, and nanostarch-mediated encapsulation. Targeted release of delivery systems is stimulated by the microenvironment conditions based on the complex structure of nanostarch loaded with bioactives.

摘要

淀粉作为一种可食用、生物安全且具有功能性的生物聚合物,已被精细加工至纳米尺度,用于输送生物活性物质。各种形态的纳米淀粉(包括纳米球、纳米棒、纳米线、纳米囊泡、纳米多面体、纳米片、纳米网络等)已被制备出来,由于其结构特殊性和绿色修饰,它们能够组装不同种类的生物活性物质。先前的研究已经综述了纳米淀粉在食品中的制备和应用,然而,对于通过多晶型纳米淀粉作为给药系统的潜力,尚无此类工作。在这篇综述中,我们重点关注多形态纳米淀粉在给药系统中的优势,并总结了基于纳米淀粉的载体的组装策略和相应的性质。此外,还总结了多晶型纳米淀粉的优点、局限性和未来展望,以更好地理解微/纳米淀粉结构及其对生物活性分子相容性的调控。根据载体的形态,纳米淀粉有效地在表面和/或内部核心捕获生物活性物质,形成紧密的复合物,从而在人体微环境中保持其稳定性。它通过载体/客体表面结合、客体@载体嵌入和纳米淀粉介导的包封等不同的组装方法,提高了生物活性物质的生物利用度。基于负载生物活性物质的纳米淀粉的复杂结构,通过微环境条件的刺激,实现了输送系统的靶向释放。

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