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基于无定形和功能性聚(酯 - 丙烯酸酯)材料的可调降解性能和生物相容性。

Adjustable degradation properties and biocompatibility of amorphous and functional poly(ester-acrylate)-based materials.

作者信息

Undin Jenny, Finne-Wistrand Anna, Albertsson Ann-Christine

机构信息

Department of Fibre and Polymer Technology, School of Chemical Science and Engineering, KTH Royal Institute of Technology , SE-100 44, Stockholm, Sweden.

出版信息

Biomacromolecules. 2014 Jul 14;15(7):2800-7. doi: 10.1021/bm500689g. Epub 2014 Jun 20.

DOI:10.1021/bm500689g
PMID:24915542
Abstract

Tuning the properties of materials toward a special application is crucial in the area of tissue engineering. The design of materials with predetermined degradation rates and controlled release of degradation products is therefore vital. Providing a material with various functional groups is one of the best ways to address this issue because alterations and modifications of the polymer backbone can be performed easily. Two different 2-methylene-1,3-dioxepane/glycidyl methacrylate-based (MDO/GMA) copolymers were synthesized with different feed ratios and immersed into a phosphate buffer solution at pH 7.4 and in deionized water at 37 °C for up to 133 days. After different time intervals, the molecular weight changes, mass loss, pH, and degradation products were determined. By increasing the amount of GMA functional groups in the material, the degradation rate and the amount of acidic degradation products released from the material were decreased. As a result, the composition of the copolymers greatly affected the degradation rate. A rapid release of acidic degradation products during the degradation process could be an important issue for biomedical applications because it might affect the biocompatibility of the material. The cytotoxicity of the materials was evaluated using a MTT assay. These tests indicated that none of the materials demonstrated any obvious cytotoxicity, and the materials could therefore be considered biocompatible.

摘要

针对特定应用调整材料的性能在组织工程领域至关重要。因此,设计具有预定降解速率和可控降解产物释放的材料至关重要。为材料提供各种官能团是解决这一问题的最佳方法之一,因为聚合物主链的改变和修饰可以轻松进行。合成了两种不同进料比的基于2-亚甲基-1,3-二氧六环/甲基丙烯酸缩水甘油酯(MDO/GMA)的共聚物,并将其浸入pH值为7.4的磷酸盐缓冲溶液和37℃的去离子水中长达133天。在不同时间间隔后,测定分子量变化、质量损失、pH值和降解产物。通过增加材料中GMA官能团的含量,材料的降解速率和释放的酸性降解产物的量降低。结果,共聚物的组成极大地影响了降解速率。在降解过程中酸性降解产物的快速释放可能是生物医学应用中的一个重要问题,因为它可能会影响材料的生物相容性。使用MTT法评估材料的细胞毒性。这些测试表明,所有材料均未表现出任何明显的细胞毒性,因此这些材料可被视为具有生物相容性。

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