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纳米大小的褐藻糖胶聚电解质复合物:设计的最新进展及其在生物医学应用中的前景。

Nano-Sized Fucoidan Interpolyelectrolyte Complexes: Recent Advances in Design and Prospects for Biomedical Applications.

机构信息

Institute of Macromolecular Compounds, Russian Academy of Sciences, Bolshoi VO 31, St. Petersburg 199004, Russia.

出版信息

Int J Mol Sci. 2023 Jan 30;24(3):2615. doi: 10.3390/ijms24032615.

Abstract

The marine polysaccharide fucoidan (FUC) is a promising polymer for pharmaceutical research and development of novel drug delivery systems with modified release and targeted delivery. The presence of a sulfate group in the polysaccharide makes FUC an excellent candidate for the formation of interpolyelectrolyte complexes (PECs) with various polycations. However, due to the structural diversity of FUC, the design of FUC-based nanoformulations is challenging. This review describes the main strategies for the use of FUC-based PECs to develop drug delivery systems with improved biopharmaceutical properties, including nanocarriers in the form of FUC-chitosan PECs for pH-sensitive oral delivery, targeted delivery systems, and polymeric nanoparticles for improved hydrophobic drug delivery (e.g., FUC-zein PECs, core-shell structures obtained by the layer-by-layer self-assembly method, and self-assembled hydrophobically modified FUC particles). The importance of a complex study of the FUC structure, and the formation process of PECs based on it for obtaining reproducible polymeric nanoformulations with the desired properties, is also discussed.

摘要

海洋多糖岩藻聚糖硫酸酯 (FUC) 是一种很有前途的聚合物,可用于开发具有改良释放和靶向递送的新型药物传递系统。多糖中硫酸酯基团的存在使 FUC 成为与各种聚阳离子形成聚电解质复合物 (PEC) 的理想候选物。然而,由于 FUC 的结构多样性,基于 FUC 的纳米制剂的设计具有挑战性。本综述描述了使用基于 FUC 的 PEC 开发改善生物制药特性的药物传递系统的主要策略,包括 FUC-壳聚糖 PEC 形式的用于 pH 敏感口服递送的纳米载体、靶向递送系统以及用于改善疏水性药物递送的聚合物纳米颗粒(例如,FUC-玉米醇溶蛋白 PEC、通过层层自组装方法获得的核壳结构和自组装疏水性改性 FUC 颗粒)。还讨论了对 FUC 结构和基于它的 PEC 形成过程进行复杂研究的重要性,以获得具有所需特性的可重现聚合物纳米制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d850/9916530/89bb449c9be7/ijms-24-02615-g001.jpg

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