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Preparing 3D-printable silk fibroin hydrogels with robustness by a two-step crosslinking method

机译:通过两步交联方法制备具有鲁棒性的3D可打印的丝绸纤维素水凝胶

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Regenerated silk fibroin (RSF) features excellent biocompatibility and high-strength mechanical properties. However, traditional RSF-based materials can hardly be applied in 3D printing, which has shown great potential in producing artificial implants. In this work, we report a 3D printable RSF hydrogel formed by a weak, chemically crosslinked network. After the 3D printing process, the mechanical properties of the above hydrogel can be remarkably improved by a ripening process. The maximum compressive modulus of this RSF hydrogel is 2.5 MPa, reaching the same order of magnitude as natural elastomers such as cartilage. The mechanical properties of this hydrogel are superior to most RSF-based 3D printed hydrogels. The investigation of gelation mechanism reveals that the chemically crosslinked network can constrain the growth of β-sheet structures of RSF to form a dense and uniform physical network. Such a physically crosslinked network endows the high strength and good resilience of RSF hydrogels. With both good biocompatibility and mechanical properties, this double-network hydrogel has potential in producing 3D printed scaffolds for tissue engineering.
机译:再生丝素蛋白(RSF)具有优异的生物相容性和高强度机械性能。然而,传统的基于RSF的材料可以在3D印刷中应用,这在生产人工植入物方面表现出很大的潜力。在这项工作中,我们报告了一种由弱化学交联网络形成的3D可打印RSF水凝胶。在3D打印过程之后,通过熟化过程可以显着提高上述水凝胶的机械性能。该RSF水凝胶的最大压缩模量是2.5MPa,达到与天然弹性体相同的数量级,如软骨。该水凝胶的机械性能优于基于RSF的3D印刷水凝胶。凝胶化机制的研究表明,化学交联网络可以限制RSF的β-片结构的生长,形成密集和均匀的物理网络。这种物理交联网络赋予RSF水凝胶的高强度和良好的韧性。凭借良好的生物相容性和机械性能,这种双网络水凝胶具有生产3D印刷支架的潜力用于组织工程。

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