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Degradable 3D-Printed Hydrogels Based on Star-Shaped Copolypeptides

机译:基于星形共肽的可降解的3D印刷水凝胶

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We present a star copolypeptide-based hydrogel ink capable of structural microfabrication using 3D extrusion printing. The material comprises an amphiphilic block copolymer structure of poly(benzyl-L-glutamate)-b-oligo(L-valine), which spontaneously forms hydrogels through hydrophobic interactions. The chemical design allows the bulk phase of the hydrogel to remain intact after application of shear due to its self-recovery behavior. It is demonstrated that the composition of the materials is ideally suited for 3D printing with scaffolds capable of maintaining structural cohesion after extrusion. Post extrusion UV-triggered fixation of the printed structures is carried out, resulting in stable hydrogel constructs. The constructs were found to be degradable, exhibited favorable release of encapsulated molecular cargo, and do not appear to affect the metabolic health of the commonly used fibroblastic cell line Balb/3T3 in the absence of the reactive diluent N,N'-methylenebis(acrylamide). The star copolypeptide inks allow for rapid prototyping enabling the fabrication of defined intricate microstructures, providing a platform for complex scaffold development that would otherwise be unattainable with other processing techniques such as molding or casting.
机译:我们介绍一种能够使用3D挤出印刷的结构微生物的基于星形基肽基水凝胶墨水。该材料包括聚(苄基-1-谷氨酸)-B-寡核苷酸(L-缬氨酸)的两亲嵌段共聚物结构,其通过疏水相互作用自发地形成水凝胶。化学设计允许水凝胶的体相施加在施用剪切后保持完整,因为其自恢复行为。证明材料的组成非常适合于能够在挤出后保持结构内聚力的支架的3D印刷。进行后挤出UV触发的印刷结构固定,得到稳定的水凝胶构建体。发现构建体可降解,表现出良好的包封分子货物释放,并且在不存在反应性稀释剂N,N'-甲基上(丙烯酰胺的情况下,常用的成纤维细胞系BALB / 3T3的代谢健康状况不起作用。 )。恒星共肽油墨允许快速原型设计,从而能够制造限定的复杂微结构,为复杂的支架显影提供平台,否则将与其他加工技术(例如模制或铸造)是无法实现的。

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