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葡聚糖制剂作为治疗剂的有效传递系统。

Dextran Formulations as Effective Delivery Systems of Therapeutic Agents.

机构信息

Centre of Advanced Research in Bionanoconjugates and Biopolymers, "Petru Poni" Institute of Macromolecular Chemistry, 41A Grigore Ghica Voda Alley, 700487 Iasi, Romania.

The Research Institute of the University of Bucharest (ICUB), 90 Sos. Panduri, 050663 Bucharest, Romania.

出版信息

Molecules. 2023 Jan 21;28(3):1086. doi: 10.3390/molecules28031086.

Abstract

Dextran is by far one of the most interesting non-toxic, bio-compatible macromolecules, an exopolysaccharide biosynthesized by lactic acid bacteria. It has been extensively used as a major component in many types of drug-delivery systems (DDS), which can be submitted to the next in-vivo testing stages, and may be proposed for clinical trials or pharmaceutical use approval. An important aspect to consider in order to maintain high DDS' biocompatibility is the use of dextran obtained by fermentation processes and with a minimum chemical modification degree. By performing chemical modifications, artefacts can appear in the dextran spatial structure that can lead to decreased biocompatibility or even cytotoxicity. The present review aims to systematize DDS depending on the dextran type used and the biologically active compounds transported, in order to obtain desired therapeutic effects. So far, pure dextran and modified dextran such as acetalated, oxidised, carboxymethyl, diethylaminoethyl-dextran and dextran sulphate sodium, were used to develop several DDSs: microspheres, microparticles, nanoparticles, nanodroplets, liposomes, micelles and nanomicelles, hydrogels, films, nanowires, bio-conjugates, medical adhesives and others. The DDS are critically presented by structures, biocompatibility, drugs loaded and therapeutic points of view in order to highlight future therapeutic perspectives.

摘要

葡聚糖是迄今为止最有趣的无毒、生物相容的大分子之一,是由乳酸菌生物合成的一种胞外多糖。它已被广泛用作许多类型药物递送系统(DDS)的主要成分,可以进入下一阶段的体内测试,并可能被提议进行临床试验或药物使用批准。为了保持高 DDS 生物相容性,一个重要的考虑因素是使用通过发酵过程获得的、化学修饰程度最低的葡聚糖。通过进行化学修饰,葡聚糖的空间结构中可能会出现伪影,从而导致生物相容性降低,甚至细胞毒性。本综述旨在根据所用葡聚糖类型和运输的生物活性化合物对 DDS 进行系统分类,以获得所需的治疗效果。到目前为止,已使用纯葡聚糖和改性葡聚糖(如乙酰化、氧化、羧甲基、二乙氨基乙基-葡聚糖和葡聚糖硫酸钠盐)来开发几种 DDS:微球、微球、纳米颗粒、纳米液滴、脂质体、胶束和纳米胶束、水凝胶、薄膜、纳米线、生物缀合物、医用粘合剂等。从结构、生物相容性、负载药物和治疗观点等方面对 DDS 进行了批判性的介绍,以突出未来的治疗前景。

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