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基于天然生物聚合物的胶束药物递送系统

Micellar Drug Delivery Systems Based on Natural Biopolymers.

作者信息

Atanase Leonard Ionut

机构信息

Department of Biomaterials, Faculty of Medical Dentistry, "Apollonia" University of Iasi, Pacurari Street, No. 11, 700511 Iasi, Romania.

出版信息

Polymers (Basel). 2021 Feb 2;13(3):477. doi: 10.3390/polym13030477.

Abstract

The broad diversity of structures and the presence of numerous functional groups available for chemical modifications represent an enormous advantage for the development of safe, non-toxic, and cost-effective micellar drug delivery systems (DDS) based on natural biopolymers, such as polysaccharides, proteins, and peptides. Different drug-loading methods are used for the preparation of these micellar systems, but it appeared that dialysis is generally recommended, as it avoids the formation of large micellar aggregates. Moreover, the preparation method has an important influence on micellar size, morphology, and drug loading efficiency. The small size allows the passive accumulation of these micellar systems via the permeability and retention effect. Natural biopolymer-based micellar DDS are high-value biomaterials characterized by good compatibility, biodegradability, long blood circulation time, non-toxicity, non-immunogenicity, and high drug loading, and they are biodegraded to non-toxic products that are easily assimilated by the human body. Even if some recent studies reported better antitumoral effects for the micellar DDS based on polysaccharides than for commercial formulations, their clinical use is not yet generalized. This review is focused on the studies from the last decade concerning the preparation as well as the colloidal and biological characterization of micellar DDS based on natural biopolymers.

摘要

结构的广泛多样性以及存在众多可用于化学修饰的官能团,对于开发基于天然生物聚合物(如多糖、蛋白质和肽)的安全、无毒且具有成本效益的胶束药物递送系统(DDS)而言,是一个巨大的优势。制备这些胶束系统采用了不同的载药方法,但似乎一般推荐透析法,因为它可避免形成大的胶束聚集体。此外,制备方法对胶束大小、形态和载药效率有重要影响。小尺寸使得这些胶束系统能够通过渗透和滞留效应被动积累。基于天然生物聚合物的胶束DDS是高价值生物材料,其特点是具有良好的相容性、生物降解性、长血液循环时间、无毒、无免疫原性和高载药量,并且它们会被生物降解为易于被人体吸收的无毒产物。即使最近一些研究报告称基于多糖的胶束DDS比市售制剂具有更好的抗肿瘤效果,但其临床应用尚未普及。本综述聚焦于过去十年中有关基于天然生物聚合物的胶束DDS的制备以及胶体和生物学特性的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb90/7867356/d5c830f6e467/polymers-13-00477-g001.jpg

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