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首页> 外文期刊>RSC Advances >Synthesis of a photocurable acrylated poly(ethylene glycol)-co-poly(xylitol sebacate) copolymers hydrogel 3D printing ink for tissue engineering
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Synthesis of a photocurable acrylated poly(ethylene glycol)-co-poly(xylitol sebacate) copolymers hydrogel 3D printing ink for tissue engineering

机译:用于组织工程的可光固化丙烯酸酯化聚(乙二醇)-共-聚(木糖醇癸二酸酯)共聚物水凝胶3D打印油墨的合成

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Photocurable hydrogel scaffolds for tissue engineering must have excellent biocompatibility, tunable mechanical characteristics, and be biodegradable at a controllable rate. Hydrogels developed as ink for 3D printing require several other properties such as optimal viscosity and shorter photocrosslinking time to ensure continuous extrusion and to avoid untimely collapse of the printed structure. Here, a novel photocurable hydrogel made of acrylated poly(ethylene glycol)- co -poly(xylitol sebacate) (PEXS-A) is developed for tissue engineering and 3D printing applications. Synthesis of PEXS-A hydrogel with equilibrated water content above 90% is achieved via a quick and facile photopolymerization process. Changing the acrylation ratio of the PEXS-A hydrogel has an impact on its crosslinking density, mechanical properties and degradation rate, thus highlighting PEXS-A tunability. PEXS-A could be employed as ink as demonstrated by the 3D printing of a 30-layers cubic grid with high structural integrity. Furthermore, 3T3 fibroblast cells encapsulated into PEXS-A during photocrosslinking maintain a viability of 93.76% after seven days, which showed the good biocompatibility of this novel hydrogel. These results indicate that PEXS-A hydrogel could have multiple applications including as 3D printing ink and as tissue engineering scaffold.
机译:用于组织工程的可光固化水凝胶支架必须具有出色的生物相容性,可调节的机械特性,并且必须以可控的速率生物降解。作为3D打印油墨开发的水凝胶还需要其他一些特性,例如最佳粘度和更短的光交联时间,以确保连续挤出并避免打印结构不合时宜地塌陷。在此,针对组织工程和3D打印应用开发了一种由丙烯酸酯化的聚乙二醇-共聚聚木糖醇癸二酸酯(PEXS-A)制成的新型光固化水凝胶。平衡水含量高于90%的PEXS-A水凝胶的合成是通过快速而简便的光聚合过程完成的。改变PEXS-A水凝胶的丙烯酸化率对其交联密度,机械性能和降解速率有影响,因此突出了PEXS-A的可调性。 PEXS-A可以用作墨水,如3D打印具有高度结构完整性的30层立方网格所证明。此外,在光交联过程中封装到PEXS-A中的3T3成纤维细胞在7天后仍保持93.76%的活力,这表明这种新型水凝胶具有良好的生物相容性。这些结果表明,PEXS-A水凝胶可具有多种应用,包括作为3D打印油墨和组织工程支架。

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