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液晶芳香族/脂肪族共聚酯的水解和酶促降解

Hydrolytic and enzymatic degradation of liquid-crystalline aromatic/aliphatic copolyesters.

作者信息

Chen Yiwang, Jia Zhihong, Schaper Andreas, Kristiansen Magnus, Smith Paul, Wombacher Ralf, Wendorff Joachim H, Greiner Andreas

机构信息

Philipps-Universität Marburg, FB Chemie und Wissenschaftliches Zentrum für Materialwissenschaften, Hans-Meerwein Strasse, D-35032 Marburg, Germany.

出版信息

Biomacromolecules. 2004 Jan-Feb;5(1):11-6. doi: 10.1021/bm034388c.

Abstract

Aromatic/aliphatic copolyesters containing hydrophilic moieties in the main chain or side chain were synthesized by bulk polycondensation of aromatic monomers without or with solubilizing substituents and aliphatic monomers. Hydrolytic and enzymatic degradation studies were carried out in vitro at 37 degrees C in pH 7.4 phosphate buffer and in Tris-HCl buffer containing proteinase K. The results indicate that liquid-crystalline aromatic/aliphatic copolyesters are degradable hydrolytically as well as enzymatically. The change in composition and morphology of the polyester films were monitored by nuclear magnetic resonance and scanning electron microscopy. The results suggested that aromatic species and aliphatic moieties could be released into aqueous solution during hydrolytic degradation of aromatic/aliphatic copolyesters with ethyleneoxy groups on the side chain. Modifying aromatic species with hydrophilic groups in aromatic/aliphatic copolyesters was an efficient method to improve degradability and biocompatibility due to improved solubility of degradation products in aqueous solution. Mechanical tests indicated that the copolyesters exhibited good mechanical properties prior to degradation, which can be of relevance for bone tissue engineering.

摘要

通过无或有增溶取代基的芳香族单体与脂肪族单体的本体缩聚反应,合成了主链或侧链含有亲水性基团的芳香族/脂肪族共聚酯。在37℃下,于pH 7.4的磷酸盐缓冲液以及含有蛋白酶K的Tris-HCl缓冲液中进行了体外水解和酶降解研究。结果表明,液晶芳香族/脂肪族共聚酯可被水解以及酶解。通过核磁共振和扫描电子显微镜监测聚酯薄膜的组成和形态变化。结果表明,在侧链带有乙氧基的芳香族/脂肪族共聚酯的水解降解过程中,芳香族物质和脂肪族部分可能会释放到水溶液中。在芳香族/脂肪族共聚酯中用亲水性基团修饰芳香族物质是一种提高降解性和生物相容性的有效方法,这是由于降解产物在水溶液中的溶解度提高了。力学测试表明,共聚酯在降解前表现出良好的力学性能,这对于骨组织工程可能具有重要意义。

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