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Evaluation of Photocrosslinked Lutrol Hydrogel for Tissue Printing Applications

机译:评价光交联的Lutrol水凝胶在组织印刷中的应用

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Application of hydrogels in tissue engineering and innovative strategies such as organ printing, which is based on layered 3D deposition of cell-laden hydrogels, requires design of novel hydrogel matrices. Hydrogel demands for 3D printing include: 1) preservation of the printed shape after the deposition; 2) maintaining cell viability and cell function and 3) easy handling of the printed construct. In this study we analyze the applicability of a novel, photosensitive hydrogel (Lutrol) for printing of 3D structured bone grafts. We benefit from the fast temperature-responsive gelation ability of thermosensitive Lutrol-F127, ensuring organized 3D extrusion, and the additional stability provided by covalent photocrosslinking allows handling of the printed scaffolds. We studied the cytotoxicity of the hydrogel and osteogenic differentiation of embedded osteogenic progenitor cells. After photopolymerization of the modified Lutrol hydrogel, cells remain viable for up to three weeks and retain the ability to differentiate. Encapsulation of cells does not compromise the mechanical properties of the formed gels and multilayered porous Lutrol structures were successfully printed.
机译:水凝胶在组织工程和创新策略(如器官印刷)中的应用,这种方法基于充满细胞的水凝胶的分层3D沉积,需要设计新型的水凝胶基质。水凝胶对3D打印的要求包括:1)沉积后保留打印形状; 2)维持细胞活力和细胞功能,以及3)易于处理印刷的构建体。在这项研究中,我们分析了一种新型的光敏水凝胶(Lutrol)在打印3D结构骨移植物中的适用性。我们受益于热敏Lutrol-F127的快速温度响应胶凝能力,可确保有组织的3D挤出,并且共价光交联提供的额外稳定性允许处理印刷的脚手架。我们研究了水凝胶的细胞毒性和嵌入式成骨祖细胞的成骨分化。修饰的Lutrol水凝胶光聚合后,细胞可存活长达三周,并保持分化能力。细胞的封装不会损害所形成凝胶的机械性能,并且成功印刷了多层多孔Lutrol结构。

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