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首页> 外文期刊>Biomacromolecules >Poly(caprolactone-co-oxo-crown ether)-Based Poly(urethane)urea for Soft Tissue Engineering Applications
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Poly(caprolactone-co-oxo-crown ether)-Based Poly(urethane)urea for Soft Tissue Engineering Applications

机译:用于软组织工程应用的聚(己内酯 - 共氧杂志醚)基于聚(氨基甲酸酯)尿素

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Random copolymers of epsilon-caprolactone and 2-oxo-12-crown-4 ether,poly(CL-co-OC),were used as soft segments in the synthesis of a set of poly(urethane)urea thermoplastic elastomers.With increasing OC content,the soft segment crystallinity decreased,which influenced the mechanical properties:strain induced crystallization disappeared upon the introduction of OC into poly(CL).The material therefore became weaker,however,without a reduction in strain at break.All polymers showed mechanical properties that are suitable for soft tissue engineering.Degradation studies of poly(CL-co-OC) copolymers revealed a higher intrinsic rate of hydrolysis as compared to poly(CL).When at least two neighboring OC units were present in the soft segment,a jump in the intrinsic hydrolysis rate was observed.From this study we deduced an ideal OC:CL ratio for the thermoplastic elastomer soft segments for soft tissue engineering applications.An in vitro degradation study of these poly(urethane)urea showed an increased weight loss.Combined with the enhanced hydrophilicity and reduced crystallinity,we are confident that this will indeed lead to an increased degradation rate in vivo.
机译:ε-己内酯和2-氧代-12-冠-4醚,聚(Cl-Co-OC)的随机共聚物被用作一组聚(氨基甲酸酯)脲热塑性弹性体的合成中的软链段。随着oc的增加含量,软段结晶度降低,影响机械性能:应变诱导的结晶在引入聚(Cl)时消失。因此,由于破裂的菌株的降低而变弱。所有聚合物显示出机械性能适用于软组织工程的软组织工程。与聚(Cl)相比,聚(Cl-Co-oc)共聚物的副作用揭示了较高的水解速率。在软链段中至少存在两个相邻的OC单元,a观察到内在水解率的跳跃。从本研究中,我们推导了用于软组织工程应用的热塑性弹性体软片段的理想OC:Cl比。这些聚(氨基甲酸酯)尿素的体外降解研究显示随着增强的亲水性和结晶度降低,重量损失增加了,我们相信这确实导致体内的降解率增加。

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