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首页> 外文期刊>Biomaterials Science >Formation of highly elastomeric and property-tailorable poly(glycerol sebacate)-co-poly(ethylene glycol) hydrogels through thiol-norbornene photochemistry
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Formation of highly elastomeric and property-tailorable poly(glycerol sebacate)-co-poly(ethylene glycol) hydrogels through thiol-norbornene photochemistry

机译:通过硫醇 - 降冰片烯光化学形成高度弹性和性质 - 可定制的聚(甘油癸二酸酯)-CO-聚(乙二醇)水凝胶

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摘要

Poly(glycerol sebacate) (PGS) is a synthetic biorubber that presents good biocompatibility, excellent elasticity and desirable mechanical properties for biomedical applications; however, the inherent hydrophobicity and traditional thermal curing of PGS restrict its use in the fabrication of hydrogels for advanced bioapplications. Here, we designed a new class of hydrophilic PGS-based copolymers that allow hydrogel formation through thiol-norbornene chemistry. Poly(glycerol sebacate)-co-polyethylene glycol (PGS-co-PEG) macromers were synthesized through a stepwise polycondensation reaction, and then the norbornene functional groups were introduced to the PGS-co-PEG structure to form norbornene-functionalized PGS-co-PEG (Nor_PGS-co-PEG). Nor_PGS-co-PEG macromers can be crosslinked using dithiols to prepare hydrogels in the presence of light and photoinitiators. The mechanical, swelling and degradation properties of Nor_PGS-co-PEG hydrogels can be controlled by altering the crosslinker amount. In particular, the elongation of Nor_PGS-co-PEG hydrogels can be modulated up to 950%. Nor_PGS-co-PEG can be processed using electrospinning and 3D printing techniques to generate microfibrous scaffolds and printed structures, respectively. In addition, the cytocompatibility of Nor_PGS-co-PEG was also demonstrated usingin vitrocellular viability studies. These results indicate that Nor_PGS-co-PEG is a promising biomaterial with definable properties for scaffold manufacturing, presenting a great potential for biomedical applications.
机译:聚(甘油癸二酸酯)(PGS)是一种合成的Biorubber,其具有良好的生物相容性,优异的弹性和理想的生物医学机械性能;然而,PGS的固有疏水性和传统的热固化限制了其在水凝胶的制造中用于先进的生物缺像。在这里,我们设计了一种新的亲水性PGS基共聚物,使水凝胶通过硫醇 - 降冰片烯化学形成。通过逐步的缩聚反应合成聚(甘油癸二酸酯)-Co-聚乙二醇(PGS-Co-PEG)大分子体,然后将降冰片烯官能团引入PGS-Co-PEG结构以形成降冰片烯官能化的PGS-Co -peg(nor_pgs-co-peg)。 NOR_PGS-CO-PEG大分子剂可以使用二硫醇交联,以在光和光引发剂存在下制备水凝胶。可以通过改变交联剂量来控制NOR_PGS-CO-PEG水凝胶的机械,溶胀和降解性能。特别地,NOR_PGS-CO-PEG水凝胶的伸长率可以调节高达950%。可以使用静电纺丝和3D打印技术处理NOR_PGS-CO-PEG以分别产生微纤维支架和印刷结构。此外,还使用玻璃纤毛植物活力研究证明了NOR_PGS-CO-PEG的细胞锁定性。这些结果表明,NOR_PGS-CO-PEG是具有可定义性能的有前途的脚手架制造性的生物材料,呈现了生物医学应用的巨大潜力。

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