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Highly elastomeric poly(glycerol sebacate)-co-poly(ethylene glycol) amphiphilic block copolymers

机译:高弹性聚(癸二酸甘油酯)-共聚(乙二醇)两亲嵌段共聚物

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摘要

Poly(glycerol sebacate) (PGS), a tough elastomer, has been proposed for tissue engineering applications due to its desired mechanical properties, biocompatibility and controlled degradation. Despite inter- esting physical and chemical properties, PGS shows limited water uptake capacity (w2%), thus con- straining its utility for soft tissue engineering. Therefore, a modification of PGS that would mimic the water uptake and water retention characteristics of natural extracellular matrix is beneficial for enhancing its utility for biomedical applications. Here, we report the synthesis and characterization of highly elastomeric poly(glycerol sebacate)-co-polyethylene glycol (PGS-co-PEG) block copolymers with controlled water uptake characteristics. By tailoring the water uptake property, it is possible to engineer scaffolds with customized degradation and mechanical properties. The addition of PEG results in almost 15-fold increase in water uptake capacity of PGS, and improves its mechanical stability under dynamic loading conditions. PGS-co-PEG polymers show elastomeric properties and can be subjected to serve deformation such as bending and stretching. The Young's modulus of PGS-co-PEG can be tuned from 13 kPa to 2.2 MPa by altering the amount of PEG within the copolymer network. Compared to PGS, more than six-fold increase in elongation was observed upon PEG incorporation. In addition, the rate of degradation increases with an increase in PEG concentration, indicating that degradation rate of PGS can be regulated. PGS-co-PEG polymers also support cell proliferation, and thus can be used for a range of tissue engineering applications
机译:聚癸二酸甘油酯(PGS)是一种坚韧的弹性体,由于其所需的机械性能,生物相容性和受控的降解性能而被提出用于组织工程应用。尽管有趣的物理和化学性质,PGS的吸水能力有限(w2%),因此限制了其在软组织工程中的效用。因此,将模仿天然细胞外基质的吸水和保水特性的PGS的修饰有利于增强其在生物医学应用中的效用。在这里,我们报告了具有高吸水率特性的高弹性聚(癸二酸甘油酯)-共聚乙二醇(PGS-co-PEG)嵌段共聚物的合成和表征。通过调整吸水性能,可以设计具有定制降解和机械性能的脚手架。 PEG的添加使PGS的吸水能力提高了近15倍,并改善了其在动态负载条件下的机械稳定性。 PGS-co-PEG聚合物表现出弹性,可以变形,例如弯曲和拉伸。通过改变共聚物网络中PEG的量,PGS-co-PEG的杨氏模量可以从13 kPa调节到2.2 MPa。与PGS相比,PEG掺入后观察到伸长率增加了六倍以上。另外,降解速率随PEG浓度的增加而增加,表明可以调节PGS的降解速率。 PGS-co-PEG聚合物还支持细胞增殖,因此可用于一系列组织工程应用

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