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用于潜在放射治疗应用的新型可生物降解热响应性聚合物。

New bioerodable thermoresponsive polymers for possible radiotherapeutic applications.

作者信息

Hruby Martin, Kucka Jan, Lebeda Ondrej, Mackova Hana, Babic Michal, Konak Cestmir, Studenovsky Martin, Sikora Antonin, Kozempel Jan, Ulbrich Karel

机构信息

Institute of Macromolecular Chemistry, Academy of Sciences of the Czech Republic, Prague 6, Czech Republic.

出版信息

J Control Release. 2007 May 14;119(1):25-33. doi: 10.1016/j.jconrel.2007.02.009. Epub 2007 Feb 22.

Abstract

A new thermoresponsive system designed for local radiotherapy has been developed. In this system a radionuclide complex is entrapped in a thermoresponsive polymer locally precipitated at body temperature after injection of a polymer-complex solution into the tissue where a therapeutic effect is required. The lifetime of the system is controlled by the rate of polymer hydrolysis, its dissolution and elimination from the body. The thermoresponsive polymer with the cloud temperature (CT) below body temperature is based on copolymers of N-isopropylmethacrylamide with a methacrylamide-type comonomer containing hydrophobic n-alkyls of three different sizes (C(3), C(6) and C(12)) bonded by a hydrolytically labile hydrazone bond. Hydrolysis of hydrazone bond results in a copolymer soluble at body temperature. The copolymer containing 27.5 mole% of the comonomer with the C(6) moiety, which was chosen for further study, has the CT 22 degrees C and its phase separation is complete at 34 degrees C. Polymer dissolution is complete within 48 h at both pH 5.0 or 7.4. The model therapeutic radionuclide, (64)Cu, in the form of its hydrophobic chelate bis(quinolin-8-olato-N,O) [(64)Cu]copper, is efficiently kept hydrophobically entrapped in the phase-separated polymer until the dissolution by hydrolytic degradation is completed.

摘要

一种专为局部放射治疗设计的新型热响应系统已被开发出来。在该系统中,一种放射性核素络合物被包裹在一种热响应聚合物中,在将聚合物 - 络合物溶液注入需要治疗效果的组织后,该聚合物在体温下局部沉淀。该系统的寿命由聚合物水解速率、其溶解以及从体内消除的速率控制。云点温度(CT)低于体温的热响应聚合物基于N - 异丙基甲基丙烯酰胺与含有三种不同尺寸(C(3)、C(6)和C(12))疏水正烷基的甲基丙烯酰胺型共聚单体的共聚物,这些共聚单体通过水解不稳定的腙键相连。腙键的水解导致共聚物在体温下可溶。含有27.5摩尔%带有C(6)部分共聚单体的共聚物被选作进一步研究对象,其CT为22℃,在34℃时相分离完全。在pH 5.0或7.4条件下,聚合物在48小时内完全溶解。模型治疗性放射性核素(64)Cu以其疏水螯合物双(喹啉 - 8 - 醇根合 - N,O)[(64)Cu]铜的形式,在水解降解导致溶解完成之前,有效地被疏水包裹在相分离的聚合物中。

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