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血清白蛋白在递药系统中的应用:界面行为差异及与多糖的相互作用能力。

Applications of serum albumins in delivery systems: Differences in interfacial behaviour and interacting abilities with polysaccharides.

机构信息

Department of Applied Physics, University of Granada, Avenida de Fuente Nueva, s/n, C.P. 18071 Granada, Spain.

Department of Applied Physics, University of Granada, Avenida de Fuente Nueva, s/n, C.P. 18071 Granada, Spain; Excellence Research Unit "Modeling Nature" (MNat), University of Granada, Avda. del Hospicio, s/n, C.P. 18010 Granada, Spain.

出版信息

Adv Colloid Interface Sci. 2021 Apr;290:102365. doi: 10.1016/j.cis.2021.102365. Epub 2021 Jan 20.

Abstract

One of the major applications of Serum Albumins is their use as delivery systems for lipophilic compounds in biomedicine. Their biomedical application is based on the similarity with Human Serum Albumin (HSA), as a fully biocompatible protein. In general, Bovine Serum Albumin (BSA) is treated as comparable to its human homologue and used as a model protein for fundamental studies since it is available in high amounts and well understood. This protein can act as a carrier for lipophilic compounds or as protective shell in an emulsion-based vehicle. Polysaccharides are generally included in these formulations in order to increase the stability and/or applicability of the carrier. In this review, the main biomedical applications of Albumins as drug delivery systems are first presented. Secondly, the differences between BSA and HSA are highlighted, exploring the similarities and differences between these proteins and their interaction with polysaccharides, both in solution and adsorbed at interfaces. Finally, the use of Albumins as emulsifiers for emulsion-based delivery systems, concretely as Liquid Lipid Nanocapsules (LLNs), is revised and discussed in terms of the differences encountered in the molecular structure and in the interfacial properties. The specific case of Hyaluronic Acid is considered as a promising additive with important applications in biomedicine. The literature works are thoroughly discussed highlighting similarities and differences between BSA and HSA and their interaction with polysaccharides encountered at different structural levels, hence providing routes to control the optimal design of delivery systems.

摘要

血清白蛋白的主要应用之一是将亲脂性化合物作为药物输送系统用于生物医学。其在生物医学上的应用基于与人类血清白蛋白(HSA)的相似性,因为它是一种完全生物相容的蛋白质。通常,牛血清白蛋白(BSA)被视为与其人类同源物相当,并因其大量存在且被充分理解而被用作基础研究的模型蛋白。该蛋白可以作为亲脂性化合物的载体,或者作为乳剂载体中的保护性外壳。通常在这些制剂中加入多糖以提高载体的稳定性和/或适用性。在这篇综述中,首先介绍了白蛋白作为药物输送系统的主要生物医学应用。其次,强调了 BSA 和 HSA 之间的差异,探索了这些蛋白质之间的相似性和差异,以及它们与多糖的相互作用,包括在溶液中和在界面上吸附时的相互作用。最后,讨论了白蛋白作为乳剂输送系统(具体为液体脂质纳米胶囊(LLN))的乳化剂的用途,根据分子结构和界面性质方面的差异进行了讨论。还考虑了透明质酸作为一种有前途的添加剂的特殊情况,其在生物医学中有重要应用。深入讨论了文献工作,突出了 BSA 和 HSA 之间的相似性和差异,以及它们在不同结构水平上与多糖的相互作用,从而为控制药物输送系统的最佳设计提供了途径。

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