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基于虫胶的多尺度给药系统:从宏观到纳米。

Multiscale Shellac-Based Delivery Systems: From Macro- to Nanoscale.

机构信息

School of Food Science and Engineering, South China University of Technology, Guangzhou 510640, China.

Guangdong Province Key Laboratory for Green Processing of Natural Products and Product Safety, South China University of Technology, Guangzhou 510640, China.

出版信息

ACS Nano. 2021 Dec 28;15(12):18794-18821. doi: 10.1021/acsnano.1c07121. Epub 2021 Nov 22.

Abstract

Delivery systems play a crucial role in enhancing the activity of active substances; however, they require complex processing techniques and raw material design to achieve the desired properties. In this regard, raw materials that can be easily processed for different delivery systems are garnering attention. Among these raw materials, shellac, which is the only pharmaceutically used resin of animal origin, has been widely used in the development of various delivery systems owing to its pH responsiveness, biocompatibility, and degradability. Notably, shellac performs better on encapsulating hydrophobic active substances than other natural polymers, such as polysaccharides and proteins. In addition, specially designed shellac-based delivery systems can also be used for the codelivery of hydrophilic and hydrophobic active substances. Shellac is most widely used for oral administration, as shellac-based delivery systems can form a compact structure through hydrophobic interaction, protecting transported active substances from the harsh environment of the stomach to achieve targeted delivery in the small intestine or colon. In this review, the advantages of shellac in delivery systems are discussed in detail. Multiscale shellac-based delivery systems from the macroscale to nanoscale are comprehensively introduced, including matrix tablets, films, enteric coatings, hydrogels, microcapsules, microparticles (beads/spheres), nanoparticles, and nanofibers. Furthermore, the hotspots, deficiencies, and future perspectives of shellac-based delivery system development are also analyzed. We hoped this review will increase the understanding of shellac-based delivery systems and inspire their further development.

摘要

给药系统在提高活性物质的活性方面起着至关重要的作用;然而,它们需要复杂的加工技术和原料设计来实现所需的性能。在这方面,能够容易地用于不同给药系统的原料受到了关注。在这些原料中,紫胶是唯一一种药用的动物来源的树脂,由于其对 pH 值的响应性、生物相容性和可降解性,已被广泛用于各种给药系统的开发。值得注意的是,紫胶在包封疏水性活性物质方面比其他天然聚合物(如多糖和蛋白质)表现更好。此外,专门设计的紫胶给药系统也可用于亲水性和疏水性活性物质的共递。紫胶最广泛用于口服给药,因为基于紫胶的给药系统可以通过疏水相互作用形成紧凑的结构,保护运输的活性物质免受胃内恶劣环境的影响,从而实现小肠或结肠的靶向递送。在这篇综述中,详细讨论了紫胶在给药系统中的优势。从宏观到纳米尺度的多尺度紫胶给药系统被全面介绍,包括基质片剂、薄膜、肠溶包衣、水凝胶、微胶囊、微球(珠)、纳米颗粒和纳米纤维。此外,还分析了基于紫胶的给药系统发展的热点、缺陷和未来展望。我们希望这篇综述将增加对基于紫胶的给药系统的理解,并激发其进一步发展。

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