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3D extrusion bioprinting of single- and double-network hydrogels containing dynamic covalent crosslinks

机译:包含动态共价交联键的单网络和双网络水凝胶的3D挤出生物打印

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摘要

The fabrication of three-dimensional (3D) scaffolds is indispensable to tissue engineering and 3D printing is emerging as an important approach towards this. Hydrogels are often used as inks in extrusion-based 3D printing, including with encapsulated cells; however, numerous challenging requirements exist, including appropriate viscosity, the ability to stabilize after extrusion, and cytocompatibility. Here, we present a shear-thinning and self-healing hydrogel crosslinked through dynamic covalent chemistry for 3D bioprinting. Specifically, hyaluronic acid was modified with either hydrazide or aldehyde groups and mixed to form hydrogels containing a dynamic hydrazone bond. Due to their shear-thinning and self-healing properties, the hydrogels could be extruded for 3D printing of structures with high shape fidelity, stability to relaxation, and cytocompatibility with encapsulated fibroblasts (>80% viability). Forces for extrusion and filament sizes were dependent on parameters such as material concentration and needle gauge. To increase scaffold functionality, a second photocrosslinkable interpenetrating network was included that was used for orthogonal photostiffening and photopatterning through a thiol-ene reaction. Photostiffening increased the scaffold’s modulus (~300%) while significantly decreasing erosion (~70%), whereas photopatterning allowed for spatial modification of scaffolds with dyes. Overall, this work introduces a simple approach to both fabricate and modify 3D printed scaffolds.
机译:三维(3D)支架的制造对于组织工程学是必不可少的,而3D打印正成为实现此目的的重要方法。水凝胶通常在基于挤出的3D打印中用作墨水,包括封装的单元格;然而,存在许多挑战性要求,包括适当的粘度,挤出后稳定的能力以及细胞相容性。在这里,我们介绍了通过动态共价化学进行3D生物打印交联的剪切稀化和自修复水凝胶。具体而言,用酰肼基或醛基对透明质酸进行改性,并混合以形成含有动态键的水凝胶。由于其剪切稀化和自我修复的特性,可以挤出水凝胶用于3D打印结构,该结构具有高形状保真度,松弛稳定性以及与封装的成纤维细胞(> 80%的活力)的细胞相容性。挤出力和长丝尺寸取决于诸如材料浓度和针规的参数。为了增加支架的功能性,包括了第二个可光交联的互穿网络,该网络用于通过硫醇-烯反应进行正交光增稠和光图案化。光致硬化增加了支架的模量(约300%),而侵蚀却显着降低了(约70%),而光致图案化则使支架可以用染料进行空间修饰。总的来说,这项工作引入了一种简单的方法来制造和修改3D打印支架。

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