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首页> 外文期刊>International journal of applied mechanics >A novel waterborne polyurethane with biodegradability and high flexibility for 3D printing
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A novel waterborne polyurethane with biodegradability and high flexibility for 3D printing

机译:一种新的水性聚氨酯,具有生物降解性和高柔韧性3D印刷

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Three-dimensional (3D) printing provides a new approach of fabricating implantable products because it permits a flexible manner to extrude complex and customized shapes of the tissue scaffolds. Compared with other printable biomaterials, the polyurethane elastomer has several merits, including excellent mechanical properties and good biocompatibility. However, some intrinsic behavior, especially its high melting point and slow rate of degradation, hampered its application in 3D printed tissue engineering. Herein, we developed a 3D printable amino acid modified biodegradable waterborne polyurethane (WBPU) using a water-based green chemistry process. The flexibility of this material endows better compliance with tissue during implantation and prevents high modulus transplants from scratching surrounding tissues. The histocompatibility experiments show that the WBPU induces no apparent acute rejection or inflammation in vivo. We successfully fabricated a highly flexible WBPU scaffold by deposition 3D printing technology at a low temperature (50 degrees C 70 degrees C), and the printed products could support the adhesion and proliferation of chondrocytes and fibroblasts. The printed blocks possessed controllable degradability due to the different amounts of hydrophilic chain extender and did not cause accumulation of acidic products. In addition, we demonstrated that our WBPU is highly applicable for implantable tissue engineering because there is no cytotoxicity during its degradation. Taken together, we envision that this printable WBPU can be used as an alternative biomaterial for tissue engineering with low temperature printing, biodegradability, and compatibility.
机译:三维(3D)印刷提供了一种制造可植入产品的新方法,因为它允许灵活的方式挤出组织支架的复杂和定制形状。与其他可印刷生物材料相比,聚氨酯弹性体具有多种优点,包括优异的机械性能和良好的生物相容性。然而,一些内在的行为,特别是其高熔点和降解速度慢,阻碍了其在3D印刷组织工程中的应用。在此,我们使用水性绿色化学方法开发了一种3D可印刷氨基酸改性的可生物降解的水性聚氨酯(WBPU)。该材料的灵活性在植入过程中赋予组织更好,并防止高模量移植刮擦周围组织。组织相容性实验表明,WBPU在体内诱导明显的急性排斥或炎症。我们通过沉积3D打印技术在低温下(50摄氏度)(50摄氏度)成功地制造了一种高度灵活的WBPU支架,并且印刷产品可以支持软骨细胞和成纤维细胞的粘附性和增殖。由于不同量的亲水链增量剂,印刷块具有可控降解性,并且不会导致酸性产物的积累。此外,我们证明,我们的WBPU对植入组织工程非常适用,因为在其降解过程中没有细胞毒性。我们设想,这种可打印的WBPU可以用作具有低温印刷,生物降解性和相容性的组织工程的替代生物材料。

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