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血液相容性与水结构之间的关系——基于丙烯酸2-甲氧基乙酯和甲基丙烯酸2-甲氧基乙酯的无规共聚物的比较研究

Relationship between blood compatibility and water structure--comparative study between 2-methoxyethylacrylate- and 2-methoxyethylmethacrylate-based random copolymers.

作者信息

Hirota Etsuko, Tanaka Masaru, Mochizuki Akira

机构信息

Department of Bio-Medical Engineering, School of High-technology for Human Welfare, University of Tokai, Nishino 317, Numazu, Shizuoka 410-0395, Japan.

出版信息

J Biomed Mater Res A. 2007 Jun 1;81(3):710-9. doi: 10.1002/jbm.a.31113.

Abstract

We have proposed that the excellent blood compatibility of poly(2-methoxyethylacrylate (MEA)) is caused by freezing bound water contained in it on the basis of results on platelet activation (Tanaka and Mochizuki, J Biomed Mater Res A 2004; 68:684-695). To clarify the applicability of this mechanism to other indexes for blood compatibility, the relationship between complement activation and water structure was investigated by using two copolymers, poly(MEA-2-hydroxyethylmethacrylate (HEMA)) and poly(2-methoxyethylmethacrylate (MEMA)-HEMA), where HEMA content was varied from 25 to 90 mol %. ESCA analysis revealed that the surface compositions of these copolymers (dry state) agreed with the compositions determined by (1)H NMR. However, analysis by water contact angle (wet state) showed that their surfaces were quite different. The contact angle of poly(MEMA-HEMA) depended on the monomer composition, whereas the angle of poly(MEA-HEMA) was close to that of polyHEMA regardless of the monomer composition. The effect of HEMA content in the copolymers on complement activation (production of C3a) was investigated in an in vitro test. The activation by poly(MEMA-HEMA) was enhanced according to the HEMA content, while the activation by poly(MEA-HEMA) with 0-40 mol % of HEMA was weak and did not depend on the HEMA content. These properties are discussed from the viewpoints of the water structure observed by DSC and the surface structure.

摘要

基于血小板活化的结果(Tanaka和Mochizuki,《生物医学材料研究杂志A》2004年;68:684 - 695),我们提出聚(2 - 甲氧基乙基丙烯酸酯(MEA))优异的血液相容性是由其所含的冻结结合水引起的。为了阐明该机制对其他血液相容性指标的适用性,通过使用两种共聚物聚(MEA - 甲基丙烯酸2 - 羟乙酯(HEMA))和聚(甲基丙烯酸2 - 甲氧基乙酯(MEMA) - HEMA)研究了补体激活与水结构之间的关系,其中HEMA含量在25至90摩尔%之间变化。ESCA分析表明,这些共聚物(干燥状态)的表面组成与通过(1)H NMR测定的组成一致。然而,通过水接触角(湿润状态)分析表明它们的表面有很大不同。聚(MEMA - HEMA)的接触角取决于单体组成,而聚(MEA - HEMA)的接触角无论单体组成如何都接近聚HEMA的接触角。在体外试验中研究了共聚物中HEMA含量对补体激活(C3a产生)的影响。聚(MEMA - HEMA)的激活随着HEMA含量的增加而增强,而含有0 - 40摩尔%HEMA的聚(MEA - HEMA)的激活较弱且不依赖于HEMA含量。从DSC观察到的水结构和表面结构的角度讨论了这些性质。

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