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一种新型聚乙二醇-嵌段-聚(天冬氨酸-无规-苯丙氨酸)共聚物的合成显示出形成胶束药物载体的潜力。

Synthesis of a novel PEG-block-poly(aspartic acid-stat-phenylalanine) copolymer shows potential for formation of a micellar drug carrier.

作者信息

Prompruk K, Govender T, Zhang S, Xiong C D, Stolnik S

机构信息

School of Pharmaceutical Sciences, University of Nottingham, Nottingham, NG7 2RD, UK.

出版信息

Int J Pharm. 2005 Jun 13;297(1-2):242-53. doi: 10.1016/j.ijpharm.2005.02.025. Epub 2005 Apr 25.

Abstract

A novel functionalised copolymer with three polymeric components, poly(ethylene glycol)-block-poly(aspartic acid-stat-phenylalanine), PEG-P(asp-phe), was synthesised and investigated for its potential to form micelles via ionic interactions with a model water-soluble drug, diminazene aceturate. Drug-free solutions of structurally related PEG-P(asp-phe) 5:6:4 and PEG-P(asp-phe) 5:4:6 copolymers indicated polymeric aggregation into micellar-type constructs. The size of PEG-P(asp-phe) 5:6:4 micelles was found to be pH and drug content-dependent. The drug-loaded systems existed as discreet units and were fairly uniform in size and shape. More drug could be included in the PEG-P(asp-phe) 5:6:4 micelles as compared to if only interaction with carboxyl groups from aspartic acid units was responsible for micelle formation, indicating the augmentative role of phenylalanine moieties in drug-incorporation. The slower in vitro drug release from PEG-P(asp-phe) 5:6:4 micelles as compared to PEG-Pasp (AB) micelles indicated the role of the phenylalanine moiety in controlling drug release. This study, therefore, confirmed the potential of a novel tri-component copolymer structure, PEG-P(asp-phe), for the formation of polyionic micelles for drug delivery.

摘要

合成了一种具有三种聚合物组分的新型功能化共聚物聚(乙二醇)-嵌段-聚(天冬氨酸-对苯丙氨酸),即PEG-P(asp-phe),并研究了其通过与模型水溶性药物乙酰马嗪进行离子相互作用形成胶束的潜力。结构相关的PEG-P(asp-phe) 5:6:4和PEG-P(asp-phe) 5:4:6共聚物的无药物溶液表明聚合物聚集形成了胶束型结构。发现PEG-P(asp-phe) 5:6:4胶束的大小取决于pH值和药物含量。载药体系以离散单元形式存在,大小和形状相当均匀。与仅天冬氨酸单元的羧基相互作用负责胶束形成相比,PEG-P(asp-phe) 5:6:4胶束可以包含更多药物,这表明苯丙氨酸部分在药物掺入中具有增强作用。与PEG-Pasp (AB)胶束相比,PEG-P(asp-phe) 5:6:4胶束的体外药物释放较慢,这表明苯丙氨酸部分在控制药物释放中发挥了作用。因此,本研究证实了新型三组分共聚物结构PEG-P(asp-phe)在形成用于药物递送的聚离子胶束方面的潜力。

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