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首页> 外文期刊>Polymer Degradation and Stability >Synthesis, characterization and in vitro degradation of a novel degradable poly((1,2-propanediol-sebacate)-citrate) bioelastomer
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Synthesis, characterization and in vitro degradation of a novel degradable poly((1,2-propanediol-sebacate)-citrate) bioelastomer

机译:新型可降解聚((1,2-丙二醇-癸二酸酯)-柠檬酸酯)生物弹性体的合成,表征和体外降解

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摘要

Degradable bioelastomers represent a useful class of biomaterials. In this paper, a novel biodegradable network of elastomeric polyesters, poly((1,2-propanediol-sebacate)-citrate) (PPSC), was synthesized by condensation of 1,2-propanediol, sebacic acid and citric acid without any catalyst. An oligomeric diol of 1,2-propanediol-sebacate was first synthesized by carrying out a controlled condensation reaction between 1,2-propanediol and sebacic acid, and then a pre-polymer was synthesized by condensation of the diol and citric acid, whereat the pre-polymer was post-polymerized and simultaneously crosslinked in mold at 120℃. A series of PPSC polymers were prepared at different post-polymerization times and different monomers' ratio. T_g confirms that PPSC is totally amorphous at 37℃. The mechanical properties of PPSC testified that the new polymers are typical elastomers with low hardness and large elongation. The different post-polymerization times and monomers' ratio had strong influence on the degradation rates and mechanical performances. The material was expected to be useful for drug controlled delivery, tissue engineering scaffold and other biomedical applications.
机译:可降解的生物弹性体代表了一类有用的生物材料。在本文中,通过1,2-丙二醇,癸二酸和柠檬酸的缩合,无需任何催化剂,合成了一种新型的可生物降解的弹性体聚酯网络,即聚((1,2-丙二醇-癸二酸酯)-柠檬酸酯)(PPSC)。首先通过在1,2-丙二醇和癸二酸之间进行受控的缩合反应合成1,2-丙二醇-癸二酸酯的低聚二醇,然后通过二醇和柠檬酸的缩合来合成预聚物。预聚物进行后聚合,并同时在120℃的模具中交联。在不同的后聚合时间和不同的单体比例下制备了一系列PPSC聚合物。 T_g证实PPSC在37℃下是完全非晶态的。 PPSC的机械性能证明,这种新型聚合物是低硬度,大伸长率的典型弹性体。不同的后聚合时间和单体比例对降解速率和机械性能有很大影响。预期该材料可用于药物控制递送,组织工程支架和其他生物医学应用。

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