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多孔二氧化硅纳米材料作为生物活性天然多酚的载体:结构和表面改性的影响

Porous Silica Nanomaterials as Carriers of Biologically Active Natural Polyphenols: Effect of Structure and Surface Modification.

作者信息

Trendafilova Ivalina, Popova Margarita

机构信息

Institute of Organic Chemistry with Centre of Phytochemistry, Bulgarian Academy of Sciences, BG-1000 Sofia, Bulgaria.

出版信息

Pharmaceutics. 2024 Jul 29;16(8):1004. doi: 10.3390/pharmaceutics16081004.

Abstract

For centuries, humans have relied on natural products to prevent and treat numerous health issues. However, biologically active compounds from natural sources, such as polyphenols, face considerable challenges, due to their low solubility, rapid metabolism, and instability, which hinder their effectiveness. Advances in the nanotechnologies have provided solutions to overcoming these problems through the use of porous silica materials as polyphenol carriers. These materials possess unique properties, such as a high specific surface area, adjustable particle and pore sizes, and a surface that can be easily and selectively modified, which favor their application in delivery systems of polyphenols. In this review, we summarize and discuss findings on how the pore and particle size, structure, and surface modification of silica materials influence the preparation of efficient delivery systems for biologically active polyphenols from natural origins. The available data demonstrate how parameters such as adsorption capacity, release and antioxidant properties, bioavailability, solubility, stability, etc., of the studied delivery systems could be affected by the structural and chemical characteristics of the porous silica carriers. Results in the literature confirm that by regulating the structure and selecting the appropriate surface modifications, the health benefits of the loaded bioactive molecules can be significantly improved.

摘要

几个世纪以来,人类一直依靠天然产物来预防和治疗众多健康问题。然而,来自天然来源的生物活性化合物,如多酚,由于其低溶解度、快速代谢和不稳定性,面临着相当大的挑战,这些因素阻碍了它们的有效性。纳米技术的进步通过使用多孔二氧化硅材料作为多酚载体,为克服这些问题提供了解决方案。这些材料具有独特的性质,如高比表面积、可调节的颗粒和孔径,以及易于且可选择性修饰的表面,这有利于它们在多酚递送系统中的应用。在这篇综述中,我们总结并讨论了关于二氧化硅材料的孔径和粒径、结构以及表面修饰如何影响从天然来源制备生物活性多酚高效递送系统的研究结果。现有数据表明,所研究的递送系统的吸附容量、释放和抗氧化性能、生物利用度、溶解度、稳定性等参数如何受到多孔二氧化硅载体的结构和化学特性的影响。文献中的结果证实,通过调节结构和选择合适的表面修饰,可以显著提高负载的生物活性分子的健康益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a670/11359489/30023856b274/pharmaceutics-16-01004-g001.jpg

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